{"id":4362,"date":"2024-12-03T10:17:59","date_gmt":"2024-12-03T02:17:59","guid":{"rendered":"http:\/\/mpob.gov.my\/layout-04\/?page_id=4362"},"modified":"2025-04-25T07:32:32","modified_gmt":"2025-04-24T23:32:32","slug":"abbc-journals","status":"publish","type":"page","link":"https:\/\/mpob.gov.my\/ms\/abbc-2\/abbc-journals\/","title":{"rendered":"ABBC Journals"},"content":{"rendered":"\t\t<div data-elementor-type=\"wp-page\" data-elementor-id=\"4362\" class=\"elementor elementor-4362\" data-elementor-post-type=\"page\">\n\t\t\t\t<div data-particle_enable=\"false\" data-particle-mobile-disabled=\"false\" class=\"elementor-element elementor-element-9d9dac0 e-flex e-con-boxed e-con e-parent\" data-id=\"9d9dac0\" data-element_type=\"container\" data-settings=\"{&quot;ekit_has_onepagescroll_dot&quot;:&quot;yes&quot;}\">\n\t\t\t\t\t<div class=\"e-con-inner\">\n\t\t\t\t<div class=\"elementor-element elementor-element-535ee94 elementor-widget elementor-widget-shortcode\" data-id=\"535ee94\" data-element_type=\"widget\" data-settings=\"{&quot;ekit_we_effect_on&quot;:&quot;none&quot;}\" data-widget_type=\"shortcode.default\">\n\t\t\t\t<div class=\"elementor-widget-container\">\n\t\t\t\t\t\t\t<div class=\"elementor-shortcode\"><div id=\"footable_parent_4361\"\n         class=\" footable_parent ninja_table_wrapper loading_ninja_table wp_table_data_press_parent semantic_ui \">\n                <table data-ninja_table_instance=\"ninja_table_instance_0\" data-footable_id=\"4361\" data-filter-delay=\"1000\" aria-label=\"ABBC Journals\"            id=\"footable_4361\"\n           data-unique_identifier=\"ninja_table_unique_id_885963191_4361\"\n           class=\" foo-table ninja_footable foo_table_4361 ninja_table_unique_id_885963191_4361 ui table  nt_type_legacy_table selectable striped vertical_centered  footable-paging-right ninja_table_pro\">\n                <colgroup>\n                            <col class=\"ninja_column_0 \">\n                            <col class=\"ninja_column_1 \">\n                            <col class=\"ninja_column_2 \">\n                    <\/colgroup>\n        <thead>\n<tr class=\"footable-header\">\n                                                        <th scope=\"col\"  class=\"ninja_column_0 ninja_clmn_nm_no \">No<\/th><th scope=\"col\"  class=\"ninja_column_1 ninja_clmn_nm_article \">Article<\/th><th scope=\"col\"  class=\"ninja_column_2 ninja_clmn_nm_year \">Year<\/th><\/tr>\n<\/thead>\n<tbody>\n\n        <tr data-row_id=\"16\" class=\"ninja_table_row_0 nt_row_id_16\">\n            <td>230<\/td><td>Amiruddin, N; Chan, P L; Azizi, N; Morris, P E; Chan, K-L; Ong, P W; Rosli, R; Masura, S S; Murphy, D J; Sambanthamurthi, R; Haslam, R P; Chye, M-L; Harwood, J L and Low, E T L (2020) Characterisation of oil palm acyl-CoA-binding proteins and correlation of their gene expression with oil synthesis. Plant Cell Physiol., 61(4): 735-747.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"17\" class=\"ninja_table_row_1 nt_row_id_17\">\n            <td>229<\/td><td>Hanin, A N; Parveez, G K A; Rasid, O A and Masani, M Y A (2020). Biolistic-mediated oil palm transformation with alfalfa glucanase (AGLU1) and rice chitinase (RCH10) genes for increasing oil palm resistance towards Ganoderma boninense. Ind. Crops Prod., 144:112008.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"18\" class=\"ninja_table_row_2 nt_row_id_18\">\n            <td>228<\/td><td>Ismail, M; Juraimi, A S; Idris, A S; Rusli, M H; Omar, R Z R and Naqiuddin, M (2020). Bipolaris sorokiniana: A potential indigenous plant pathogen to control goosegrass (Eleusine indica) in oil palm plantations. J. Oil Palm Res., 32(2): 219-227.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"19\" class=\"ninja_table_row_3 nt_row_id_19\">\n            <td>227<\/td><td>Kushairi, A and Mohd Din, A (2020). Development of new oil palm cultivars in Malaysia. J. Oil Palm Res., DOI:https:\/\/doi.org\/10.21894\/jopr.2020.0037.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"20\" class=\"ninja_table_row_4 nt_row_id_20\">\n            <td>226<\/td><td>Lau, B Y C; Amiruddin, M D and Othman, A (2020). Proteomics analysis on lipid metabolism in Elaeis guineensis and Elaeis oleifera. Data in Brief, 31: 105714.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"21\" class=\"ninja_table_row_5 nt_row_id_21\">\n            <td>225<\/td><td>Morris, P E; Chan, P-L; Ooi, L C L; Ong, P W; Kamaruddin, K; Marjuni, M; Amiruddin, M D; Chan, K-L; Rosli, R; Low, E T L; Singh, R; Shaharuddin, N A; Murphy, D J; Manaf, M A A and Abdullah, S N A (2020). Transcriptome analysis across various mesocarp developmental stages of MPOB-Angola dura. J. Oil Palm Res., DOI:10.21894\/jopr.2020.0034.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"22\" class=\"ninja_table_row_6 nt_row_id_22\">\n            <td>224<\/td><td>Naqiuddin, M; Ma, N L and Ong-Abdullah, M (2020) Potassium nutrition in the oil palm: A molecular perspective. J. Oil Palm Res., 32(1): 139-144.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"23\" class=\"ninja_table_row_7 nt_row_id_23\">\n            <td>223<\/td><td>Ooi S-E; Sarpan, N; Aziz, N A; Nuraziyan, A; Nor Azwani, A B and Ong-Abdullah, M (2020). Transcriptomics of microdissected staminodes and early developing carpels from female inflorescences of Elaeis guineensis. J. Oil Palm Res., DOI:10.21894\/jopr.2020.0036.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"24\" class=\"ninja_table_row_8 nt_row_id_24\">\n            <td>222<\/td><td>Ramli, U S; Tahir, N I; Rozali, N L; Othman, A; Muhammad, N H; Muhammad, S A; Tarmizi, A H A; Hashim, N; Sambanthamurthi, R; Singh, R; Manaf, M A A and Parveez, G K A (2020). Sustainable Palm Oil - The role of screening and advanced analytical techniques for geographical traceability and authenticity verification. Molecules, 25: 2927.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"25\" class=\"ninja_table_row_9 nt_row_id_25\">\n            <td>221<\/td><td>Sarpan, N; Taranenko, E; Ooi, S-E; Low, E-T L; Espinoza, A; Tatarinova, T V and Ong-Abdullah, M (2020). DNA methylation changes in clonally propagated oil palm. Plant Cell Rep., DOI: 10.1007\/s00299-020-02561-9.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"26\" class=\"ninja_table_row_10 nt_row_id_26\">\n            <td>220<\/td><td>Singh, R; Low, E T L; Ooi, L C L; Ong-Abdullah, M; Ting, N-C; Nookiah, R; Ithnin, M; Marjuni, M; Mustaffa, S; Yaakub, Z; Amiruddin, M D; Manaf, M A A; Chan, K-L; Ab Halim, M A; Sanusi, N S N M; Lakey, N; Sachdeva, M; Bacher, B; Garner, P A; Macdonald, J D; Steven, W S; Wischmeyer, C; Budiman, M A; Beil, M; Stroff, C; Reed, J; Brunt, A V; Berg, H; Ordway, J M and Sambanthamurthi, R (2020). Variation for heterodimerization and nuclear localization among known and novel oil palm SHELL alleles. New Phytol., 226(2): 426-440.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"27\" class=\"ninja_table_row_11 nt_row_id_27\">\n            <td>219<\/td><td>Suzana, M; Zulkifli, Y; Marhalil, M; Rajanaidu, N and Ong-Abdullah, M (2020). Principal component and cluster analyses on Tanzania oil palm Elaeis guineensis Jacq. germplasm. J. Oil Palm Res., 32(1): 24-33.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"28\" class=\"ninja_table_row_12 nt_row_id_28\">\n            <td>218<\/td><td>Ting, N-C; Mayes, S; Massawe, F; Sambanthamurthi, R; Chan, K-L, Sritharan, K and Singh R (2020). Candidate genes linked to QTL regions associated with fatty acid composition in oil palm. Biologia, DOI:10.2478\/s11756-020-00563-2.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"29\" class=\"ninja_table_row_13 nt_row_id_29\">\n            <td>217<\/td><td>Zulkifli, Y; Singh, R; Ting, N C, Marhalil, M; Xaviar, A; Rajanaidu, N, Jansen, J; Mohd Din, A; Ong-Abdullah, M; Chie, T Y and Kushairi, A (2020). Quantitative trait loci (QTL) linked to compactness in an interspecific backcross two (BC2) population of oil palm. J. Oil Palm Res., 32(2): 201-210.<\/td><td>2020<\/td>        <\/tr>\n            <tr data-row_id=\"30\" class=\"ninja_table_row_14 nt_row_id_30\">\n            <td>216<\/td><td>Badai, S S; Chan, K L; Chan, P L; Rasid, O A and Parveez, G K A (2019). Identification of genes preferentially expressed in mesocarp tissue of oil palm using in silico analysis of transcripts. J. Oil Palm Res., 31(4): 540-549.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"31\" class=\"ninja_table_row_15 nt_row_id_31\">\n            <td>215<\/td><td>Darkwah, D O; Blay E T; Amoatey, H M; Agyei-Dwarko, D; Sapey, E and Ong-Abdullah, M (2019). Mutagenic effects of gamma irradiation on oil palm (Elaeis guineensis Jacq.) seedling germination and growth. J. Oil Palm Res., 31(2): 212-219.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"32\" class=\"ninja_table_row_16 nt_row_id_32\">\n            <td>214<\/td><td>Dzulkafli, S B; Othman, A; Shahwan, S; Nurazah, Z; Manaf, M A A; Idris, A S; Amiruddin, M D; Tahir, N I and Ramli, U S (2019). Identification of chelidonic acid and asparagine in Ganoderma boninense-inoculated oil palm seedlings. J. Oil Palm Res., 31: 53-66.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"33\" class=\"ninja_table_row_17 nt_row_id_33\">\n            <td>213<\/td><td>Fakhrana, I N; Nurfahisza, A R; Rasid, O A and Parveez, G K A (2019). Minimal inhibitory concentration of hygromycin for selecting transformed oil palm embryogenic calli. J. Oil Palm Res., 31(1): 14-27.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"34\" class=\"ninja_table_row_18 nt_row_id_34\">\n            <td>212<\/td><td>Farah Amira, M P; Sundram, S, Yusof, M T, Angel, L P L, Hashim, A M and Abdullah, S N A (2019). Induced systemic resistance and promotion of plant growth in oil palm seedlings by endophytic Trichoderma virens J. Oil Palm Res., 31(4): 572-581.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"35\" class=\"ninja_table_row_19 nt_row_id_35\">\n            <td>211<\/td><td>Fizree, P M A A; Shaharuddin, N A; Ho, C L; Masura, S S; Manaf, M A A; Parveez, G K A and Masani, M Y A (2019). Evaluation of transient DsRED gene expression in oil palm embryogenic calli. Sci. Horti., 257: 108679.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"36\" class=\"ninja_table_row_20 nt_row_id_36\">\n            <td>210<\/td><td>Hassan, H; Amiruddin, M D; Weckwerth, W and Ramli, U S (2019). Deciphering key proteins of oil palm (Elaeis guineensis Jacq.) fruit mesocarp development by proteomics and chemometrics. Electrophoresis, 40: 254-265.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"37\" class=\"ninja_table_row_21 nt_row_id_37\">\n            <td>209<\/td><td>Khin, A M; Mohd Din, A; Mohd, Y R; Mohd Yusoff, A S; Shairul, I R, Zulkifli, Y and Yusuff, O (2019). Genetic diversity and selection criteria of MPOB-Senegal oil palm (Elaeis guineensis Jacq.) germplasm by quantitative traits. Ind. Crops Prod., 139: 111558.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"38\" class=\"ninja_table_row_22 nt_row_id_38\">\n            <td>208<\/td><td>Kushairi, A; Ong-Abdullah, M; Nambiappan, B; Hishamuddin, E; Bidin, M N I Z; Ghazali, R; Subramaniam, V; Sundram, S and Parveez, G K A (2019). Oil palm economic performance in Malaysia and R&D progress in 2018. J. Oil Palm Res., 31(2): 165-194.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"39\" class=\"ninja_table_row_23 nt_row_id_39\">\n            <td>207<\/td><td>Lau, B Y C. and Othman, A (2019). Evaluation of sodium deoxycholate as solubilization buffer for oil palm proteomics analysis. PLoS ONE, 14(8): e0221052.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"40\" class=\"ninja_table_row_24 nt_row_id_40\">\n            <td>206<\/td><td>Masura, S S; Parveez, G K A and Rasid, O A (2019). Isolation and characterization of an oil palm constitutive promoter derived from ubiquitin extension protein (uep2) gene. J. Oil Palm Res., 31(1): 28-41.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"41\" class=\"ninja_table_row_25 nt_row_id_41\">\n            <td>205<\/td><td>Muhamad Afiq, A H; Shaharuddin, N A and Zubaidah, R (2019). Identification of reliable reference gene for gene expression studies of oil palm plantlets using normfinder and bestkeeper algorithms. J. Oil Palm Res., 31: 204-211.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"42\" class=\"ninja_table_row_26 nt_row_id_42\">\n            <td>204<\/td><td>Naqiuddin, M and Ong-Abdullah, M (2019) Evaluation of GFP-based system for pre-crystallisation study of EgKUP membrane proteins. J. Oil Palm Res., 31(1): 42-52.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"43\" class=\"ninja_table_row_27 nt_row_id_43\">\n            <td>203<\/td><td>Ooi, L C L; Low, E T L; Ordway, J; Marjun, M; Yaakub, Z; Jiang, N; Smith, S; Bacher, B, Garner, P; Leinenger, M; Sander, N; Chan, P-L; Ong, P W; Ong-Abdullah, M; Rajanaidu, N; Manaf, M A A; Lakey, N; Sambanthamurthi, R and Singh, R (2019). SureSawitTM True-to-Type \u2013 A high throughput universal single nucleotide polymorphism (SNP) panel for DNA fingerprinting, purity testing and origin verification in oil palm. J. Oil Palm Res., 31: 561-571.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"44\" class=\"ninja_table_row_28 nt_row_id_44\">\n            <td>202<\/td><td>Ooi, S-E; Sarpan, N; Abdul Aziz, N; Nuraziyan, A and Ong-Abdullah, M (2019). Differential expression of heat shock and floral regulatory genes in pseudocarpel initials of mantled female inflorescences from Elaeis guineensis Jacq. Plant Reproduction, 32(2): 167-179.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"45\" class=\"ninja_table_row_29 nt_row_id_45\">\n            <td>201<\/td><td>Ong, P W; Chan, P-L; Ooi, L C L and Singh, R (2019). Isolation Of high quality total RNA from various tissues of oil palm (Elaeis guineensis) for reverse transcription quantitative real-time PCR (RT-qPCR). J. Oil Palm Res., 31: 195-203.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"46\" class=\"ninja_table_row_30 nt_row_id_46\">\n            <td>200<\/td><td>Othman, A; Goggin, K A; Tahir, N I; Brodrick, E; Singh, R; Sambanthamurthi, R; Parveez, G K A; Davies, A N; Murad, A J; Muhammad, N H; Ramli, U S and Murphy, D J (2019). Use of headspace-gas chromatography-ion mobility spectrometry to detect volatile fingerprints of palm fibre oil and sludge palm oil in samples of crude palm oil. BMC Research Notes, 12: 229.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"47\" class=\"ninja_table_row_31 nt_row_id_47\">\n            <td>199<\/td><td>Padfield, R; Hansen, S; Davies, Z G; Ehrensperger, A; Slade, E M; Evers, S; Papargyropoulou, E; Bessou, C; Abdullah, N; Page, S; Ancrenaz, M; Aplin, P; Dzulkafli, S B; Barclay, H; Chellaiah, D; Choudhary, S; Conway, S; Cook, S; Copeland, A; Campos-Arceiz, A; Deere, A J; Drew, S; Gilvear, D; Gray, R; Haller, T; Hood, A S-C; Huat, L K; Huynh, N; Kangayatkarasu, N; Koh, L P; Kolandai, S K; Lim, R A H; Yeong, K L; Lucey, J M; Luke, S H; Mitchell, S L; Montefrio, M J; Mullin, K; Nainar, A; Nekaris, K A-I; Nijman, V; Nunes, M; Siti Nurhidayu; O\u2019reilly, P; Puan, C L; Ruppert, N; Salim, H; Schouten, G; Tallontire, A; Smith, T E L; Tao, H-H; Tham, M H; Varkkey, H; Wadey, J; Yule, C M; Azhar, B; Sayok, A K; Vairappan, C; Bicknell, J E And Struebig, M J (2019). Co-producing a research agenda for sustainable palm oil. Frontiers in Forests and Global Change, 2(13): 1-17.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"48\" class=\"ninja_table_row_32 nt_row_id_48\">\n            <td>198<\/td><td>Shahwan, S; Othman, A; Dzulkafli, S, B; Hassan, H; Idris, A S; Amiruddin, M D and Ramli, U S (2019). PP06: Quantitative proteomics analysis of oil palm root during early stages of Ganoderma inoculation in Conference Proceedings \u2013 4th International Conference on Molecular Diagnostics and Biomarker Discovery: Antibody Technology. BMC Proceedings, 13(10): p18.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"49\" class=\"ninja_table_row_33 nt_row_id_49\">\n            <td>197<\/td><td>Sundram, S; Angel, L P L and Sirajuddin, S A (2019). Integrated balanced fertilizer management in soil health rejuvenation for a sustainable oil palm cultivation: A review. J. Oil Palm Res., 31(3): 348-363.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"50\" class=\"ninja_table_row_34 nt_row_id_50\">\n            <td>196<\/td><td>Zatty, S A M S; Fatin, A M A; Abu Bakar, S; Rahman, R N Z R A; Chor, A L T; Latip, W and Ali, M S M (2019). Unravelling protein-organic solvent interaction of organic solvent tolerant elastase from Pseudomonas aeruginosa strain K crystal structure. Int. J. Biol. Macromol., 127: 575-584.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"51\" class=\"ninja_table_row_35 nt_row_id_51\">\n            <td>195<\/td><td>Zulkifli, Y; Ithnin, M, Singh, R; Marhalil, M; Mohd Din, A and Ong-Abdullah, M (2019). An RFLP marker, CB75A, predicts for palmitic acid content across selected oil palm germplasm and interspecific-hybrids. J. Oil Palm Res., 31(2): 315-320.<\/td><td>2019<\/td>        <\/tr>\n            <tr data-row_id=\"52\" class=\"ninja_table_row_36 nt_row_id_52\">\n            <td>194<\/td><td>Gan, S T; Wong, W C; Wong, C K; Soh, A C; Kilian, A; Low, E T L, Massawe, F and Mayes, S (2018). High density SNP and DArT-based genetic linkage maps of two closely related oil palm populations. J. Appl. Genet., 59(1): 23-34.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"53\" class=\"ninja_table_row_37 nt_row_id_53\">\n            <td>193<\/td><td>Jayanthi, N; Foan, C C; Angel, L P L; Cooper, R M; May, S T and Low, E T L (2018). Improved nucleic acid extraction protocols for Ganoderma boninense, G. miniatocinctum and G. tornatum. Biotechnol. Lett., 40(11-12): 1541-1550.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"54\" class=\"ninja_table_row_38 nt_row_id_54\">\n            <td>192<\/td><td>Kushairi, A; Loh, S K; Azman, I; Hishamuddin, E; Ong-Abdullah, M; Bidin, M N I Z; Ghazali, R; Sundram, S and Parveez, G K A (2018). Oil palm economic performance in Malaysia and R&D progress in 2017. J. Oil Palm Res., 30(2): 163-195.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"55\" class=\"ninja_table_row_39 nt_row_id_55\">\n            <td>191<\/td><td>Lau, B Y C; Othman, A and Ramli, U S (2018). Review: Application of proteomics technologies in oil palm research. Protein J., 37(6): 473-499.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"56\" class=\"ninja_table_row_40 nt_row_id_56\">\n            <td>190<\/td><td>Lim, F H; Rasid, O A; Idris, A S and Parveez, G K A (2018). Molecular cloning of Ganoderma boninense Hog1-Type Mitogen-Activated Protein Kinase (MAPK) cDNA and transcriptional response to salinity stress. J. Oil Palm Res., 30(3): 380-389.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"57\" class=\"ninja_table_row_41 nt_row_id_57\">\n            <td>189<\/td><td>Ong, P W; Ithnin, M; Marjuni, M; Rajanaidu, N; Abdullah, N A P; Rafii, M Y; Ooi, L C L; Low, E T L and Singh, R (2018). Association of SNP markers with height increment in MPOB-Angolan natural oil palm populations. J. Oil Palm Res., 30(1): 61-70.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"58\" class=\"ninja_table_row_42 nt_row_id_58\">\n            <td>188<\/td><td>Lee, F-C; Ong-Abdullah M; Ooi, S-E; Ho, C-L and Namasivayam, P (2018). Cloning and characterization of Somatic Embryogenesis Receptor Kinase I (EgSERK I) and its association with callus initiation in oil palm. In Vitro Cell. Dev-Pl., DOI: https:\/\/doi.org\/10.1007\/s11627-018-9942-x.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"59\" class=\"ninja_table_row_43 nt_row_id_59\">\n            <td>187<\/td><td>Madon, M; Arulandoo, X; Sritharan, K; Nordiana, H M N; Muhammad Azwan, Z and Zaki, N M (2018). Short communication: Genomic constitution of oil palm interspecific hybrid crosses monitored by genomic in situ hybridization (GISH). J. Oil Palm Res., 30(2): 338 \u2013 344.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"60\" class=\"ninja_table_row_44 nt_row_id_60\">\n            <td>186<\/td><td>Masani, M Y A; Izawati, A M D; Rasid, O A and Parveez, G K A (2018). Biotechnology of oil palm: Current status of oil palm genetic transformation. Biocatal. Agric. Biotechnol., 15: 335-347.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"61\" class=\"ninja_table_row_45 nt_row_id_61\">\n            <td>185<\/td><td>Naqiuddin, M and Ong-Abdullah, M (2018). Importance of KUP8 for K+ uptake in rooted plantlets of Elaeis guineensis under K+ sufficient conditions. S. Afr. J. Bot., 118: 65-7.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"62\" class=\"ninja_table_row_46 nt_row_id_62\">\n            <td>184<\/td><td>Nurniwalis, A W; Zubaidah, R; Siti Nor Akmar, A; Suhaimi, N and Massawe, F (2018). Isolation and characterization of an ethylene receptor (ERS-Type) cDNA from oil palm mesocarp. J. Oil Palm Res., 30(2): 251-264.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"63\" class=\"ninja_table_row_47 nt_row_id_63\">\n            <td>183<\/td><td>Parveez, G K A and Majid, N A (2018). Green fluorescent protein as a visual selection marker for oil palm transformation. Ind. Crops Prod. 115: 134-145.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"64\" class=\"ninja_table_row_48 nt_row_id_64\">\n            <td>182<\/td><td>Rahman, F; Hassan, M; Rosli, R; Almousally, I; Hanano, A and Murphy, D J (2018) Evolutionary and genomic analysis of the caleosin\/peroxygenase (CLO\/PXG) gene\/protein families in the Viridiplantae. PLoS ONE, 13(5): e0196669.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"65\" class=\"ninja_table_row_49 nt_row_id_65\">\n            <td>181<\/td><td>Rosli, R; Amiruddin, N; Ab Halim, M A; Chan, P L; Chan, K-L; Azizi, N; Morris, P E; Low, E T L; Ong-Abdullah, M; Sambanthamurthi, R; Singh, R and Denis, J (2018). Comparative genomic and transcriptomic analysis of selected fatty acid biosynthesis genes and CNL disease resistance genes in oil palm. PLoS ONE, 13(4): e0194792.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"66\" class=\"ninja_table_row_50 nt_row_id_66\">\n            <td>180<\/td><td>Rosli, R; Chan, P L; Chan, K-L; Amiruddin, N; Low, E T L; Singh, R; John, H and Murphy, D J (2018). In silico characterization and expression profiling of the diacylglycerol acyltransferase gene family (DGAT1, DGAT2, DGAT3 and WS\/DGAT) from oil palm, Elaeis guineensis. Plant Sci., 275: 84-96.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"67\" class=\"ninja_table_row_51 nt_row_id_67\">\n            <td>179<\/td><td>Sanusi, N S N M; Rosli, R; Ab Halim, M A; Chan, K-L; Jayanthi, N; Azizi, N; Amiruddin, N; Tatarinova, V T and Low, E T L (2018). PalmXplore: oil palm gene database. Database, 2018: 1-9.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"68\" class=\"ninja_table_row_52 nt_row_id_68\">\n            <td>178<\/td><td>Sarpan, N; Ong-Abdullah, M and Ooi, S-E (2018). Optimisation of a chromatin immunoprecipitation (ChIP) protocol for histone modification in oil palm. J. Oil Palm Res., 30(2): 242-250.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"69\" class=\"ninja_table_row_53 nt_row_id_69\">\n            <td>177<\/td><td>Ting, N-C; Mayes, S; Massawe, F; Sambanthamurthi, R; Jansen, J; Sharifah Shahrul, R S A; Seng, T-Y, Ithnin, M and Singh, R (2018). Putative regulatory candidate genes for QTL linked to fruit traits in oil palm (Elaeis guineensis Jacq.). Euphytica, 214: 214<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"70\" class=\"ninja_table_row_54 nt_row_id_70\">\n            <td>176<\/td><td>Zubaidah, R; Nurniwalis, A W; Chan, P L; Masura, S S; Siti Nor Akmar, A and Parveez, G K A (2018). Tissue-specific promoters: the importance and potential application for genetic engineering in oil palm. J. Oil Palm Res., 30(1): 1-12.<\/td><td>2018<\/td>        <\/tr>\n            <tr data-row_id=\"71\" class=\"ninja_table_row_55 nt_row_id_71\">\n            <td>175<\/td><td>Angel, L P L; Yusof, M T; Ismail, I S; Tay, Y P B; Mohamed Azni and Sundram, S (2017). Profiling of antifungal activity of Trichoderma virens 159c involved in biocontrol against Ganoderma boninense. J. Oil Palm Res., 30: 83-93.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"72\" class=\"ninja_table_row_56 nt_row_id_72\">\n            <td>174<\/td><td>Arolu, W I; Rafii, M Y; Marhalil, M; Mohamed, M H; Zulkefly, S; Harun A R; Mohd Isa Z A; Mohd Din, A; Kushairi, A and Rajanaidu, N. (2017). Breeding of high yielding and dwarf oil palm planting materials using Deli dura \u00d7 Nigerian pisifera population. Euphytica, 213(7).<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"73\" class=\"ninja_table_row_57 nt_row_id_73\">\n            <td>173<\/td><td>Bahariah, B; Masani, M Y A; Rasid, O A and Parveez, G K A (2017). Construction of a vector containing hygromycin (HPT) gene driven by double 35S (2XCAMV35S) promoter for oil palm transformation. J. Oil Palm Res., 29(4): 469-486.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"74\" class=\"ninja_table_row_58 nt_row_id_74\">\n            <td>172<\/td><td>Chan, K-L; Rosli, R; Tatarinova, T V; Hogan, M; Firdaus-Raih, M and Low, E T L (2017). Seqping: gene prediction pipeline for plant genomes using self-training gene models and transcriptomic data. BMC Bioinformatics, 18:1-7.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"75\" class=\"ninja_table_row_59 nt_row_id_75\">\n            <td>171<\/td><td>Chan, K-L; Tatiana, V T; Rosli, R; Amiruddin, N; Azizi, N; Ab Halim, M A; Sanusi, N S N M; Jayanthi, N; Ponomarenko, P; Triska, M; Solovyev, V; Firdaus-Raih, M; Sambanthamurthi, R; Murphy, D and Low, E T L (2017). Evidence-based gene models for structural and functional annotations of the oil palm genome. Biol. Direct, 12:21.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"76\" class=\"ninja_table_row_60 nt_row_id_76\">\n            <td>170<\/td><td>Ho, H; Gudimella, R; Ong-Abdullah, M and Harikrishna, J A (2017). Expression of microRNAs during female inflorescence development in African oil palm (Elaeis guineensis Jacq.) Tree Genet. Genomes, 13:35.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"77\" class=\"ninja_table_row_61 nt_row_id_77\">\n            <td>169<\/td><td>Ithnin, M; Xu, Y; Marjuni, M; Serdari, M N; Amiruddin, M D; Low, E T L; Tan, Y C; Yap, S J; Ooi, L C L; Rajanaidu, N; Singh, R and Xu, S (2017). Multiple locus genome-wide association studies for important economic traits of oil palm. Tree Genetic & Genomes, 13: 103.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"78\" class=\"ninja_table_row_62 nt_row_id_78\">\n            <td>168<\/td><td>Ithnin, M; Teh, C K and Ratnam, W (2017). Genetic diversity of Elaeis oleifera (HBK) Cortes populations using cross species SSRs: implication\u2019s for germplasm utilization and conservation. BMC Genetics, 18: 37.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"79\" class=\"ninja_table_row_63 nt_row_id_79\">\n            <td>167<\/td><td>Izawati, A M D; Masani, M Y A; Parveez, G K A and Ismanizan, I (2017). 2-deoxyglucose selection system for Agrobacterium-mediated transformation of Solanum lycopersicon and Nicotiana tabacum plants. Aust. J. Crop Sci., 11(7): 813-820.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"80\" class=\"ninja_table_row_64 nt_row_id_80\">\n            <td>166<\/td><td>Kushairi, A; Singh, R and Ong-Abdullah, M (2017). The oil palm industry in Malaysia: Thriving with transformation technologies. J. Oil Palm Res., 29(4): 431-439.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"81\" class=\"ninja_table_row_65 nt_row_id_81\">\n            <td>165<\/td><td>Lau, B Y C; James, D M; Deb-Choudhury, S; Dyer, J M; Ramli, U S and Clerens, S (2017). Differential expression analysis of oil palm fatty acid biosynthesis enzymes with gel-free quantitative proteomics. J. Oil Palm Res., 29(1): 23-34.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"82\" class=\"ninja_table_row_66 nt_row_id_82\">\n            <td>164<\/td><td>Lim, F H; Fakhrana, I N; Rasid, O A; Idris, A S; Ho, C L; Shaharuddin, N A and Parveez, G K A (2017). Molecular cloning and expression analysis of Ganoderma boninense cyclophilins at different growth and infection stages. Physiol. Mol. Plant P., 99: 31-40.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"83\" class=\"ninja_table_row_67 nt_row_id_83\">\n            <td>163<\/td><td>Low, E T L, Jayanthi, N; Chan, K-L; Sanusi, N S N M; Ab Halim, M A; Rosli, R; Azizi, N; Amiruddin, N; Angel, L P L; Ong-Abdullah, M; Singh, R; Abd Manaf, M A; Sambanthamurti, R; Ghulam Kadir, A P and Kushairi, A (2017). The oil palm genome revolution. J. Oil Palm Res., 29(4): 456-468.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"84\" class=\"ninja_table_row_68 nt_row_id_84\">\n            <td>162<\/td><td>Masura, S S; Tahir, N I; Rasid, O A; Umi, S R; Abrizah, O; Masani, M Y A; Parveez, G K A and Kushairi, A (2017). Post-genomic technology for the advancement of oil palm research. J. Oil Palm Res., 29(4): 469-486.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"85\" class=\"ninja_table_row_69 nt_row_id_85\">\n            <td>161<\/td><td>Midin, M R; Loke, K K; Madon, M; Nordin, M S; Goh, H H and Noor, M N (2017). MRT sequencing data for Garcinia mangostana L. variety Mesta. Genomics Data, 12: 134-135.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"86\" class=\"ninja_table_row_70 nt_row_id_86\">\n            <td>160<\/td><td>Norziha, A; Marhalil, M; Fadila, A M; Zulkifli, Y; Ithnin, M; Mohd Din, A; Rajanaidu, N and Kushairi, A (2017). Long-term storage of oil palm germplasm zygotic embryo using Cryopreservation. J. Oil Palm Res., 29(4): 541-547.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"87\" class=\"ninja_table_row_71 nt_row_id_87\">\n            <td>159<\/td><td>Nurazah, Z; Abu Seman, I; Kushairi, M; Amiruddin, M D; Othman, A and Ramli, U S (2017). Metabolomics unravel differences between Cameron Dura and Deli Dura oil palm (Elaeis guineensis Jacq.) genetic backgrounds against basal stem rot. J. Oil Palm Res., 29(2): 227-241.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"88\" class=\"ninja_table_row_72 nt_row_id_88\">\n            <td>158<\/td><td>Rozali, N L; Yarmo, M A; Idris, A S; Kushairi, A and Ramli, U S (2017). Metabolomics differentiation of oil palm (Elaeis guineensis Jacq.) spear leaf with contrasting susceptibility to Ganoderma boninense. Plant Omics, 10: 45.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"89\" class=\"ninja_table_row_73 nt_row_id_89\">\n            <td>157<\/td><td>Tahir, N I; Shaari, K; Abas, F; Ishak, Z; Hashim, A T; Amiruddin, M D; Parveez, G K A and Ramli, U S (2017). Metabolome analysis of oil palm clone P325 of different planting trials. J. Oil Palm Res., 28: 431-441.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"90\" class=\"ninja_table_row_74 nt_row_id_90\">\n            <td>156<\/td><td>Tan, H S; Jacoby, R P; Ong-Abdullah, M; Taylor, N L; Liddell, S; Wong, W C and Chin, C F (2017). Proteomic profiling of mature leaves from oil palm (Elaeis guineensis Jacq.). Electrophoresis, 38(8): 1147-1153.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"91\" class=\"ninja_table_row_75 nt_row_id_91\">\n            <td>155<\/td><td>Zaki, N M; Singh, R; Nordiana, H M N; Muhammad Azwan, Z; Steven, W S; Schwarzacher, T; Madon, M and Heslop-Harrison, J S (2017). Short communication: Towards development of Elaeis guineensis chromosome-arm specific markers and their utility across the Elaeis genus. J. Oil Palm Res., 29(4): 594-599.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"92\" class=\"ninja_table_row_76 nt_row_id_92\">\n            <td>154<\/td><td>Zubaidah, R; Nurniwalis, A W; Siti Nor Akmar, A and Parveez, G K A (2017). The use of Arabidopsis thaliana model system for testing oil palm promoter case study on oil palm MT3-A promoter. J. Oil Palm Res., 29 (2): 189-196.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"93\" class=\"ninja_table_row_77 nt_row_id_93\">\n            <td>153<\/td><td>Zulkifli, Y; Norziha, A; Naqiuddin, M; Fadila, A M; Nor Azwani, A B; Suzana, M; Samsul, K R; Ong-Abdullah, M; Singh, R; Parveez, G K A and Kushairi, A (2017). Designing the oil palm of the future. J. Oil Palm Res., 29(4): 440-455.<\/td><td>2017<\/td>        <\/tr>\n            <tr data-row_id=\"94\" class=\"ninja_table_row_78 nt_row_id_94\">\n            <td>152<\/td><td>Angel, L P L; Yusof, M T; Ismail, I S; Tay, Y P B; Mohamed Azni, I N A; Kamarudin, N and Sundram, S (2016). An In vitro study of the antifungal activity of Trichoderma virens 7b and a profile of its non-polar antifungal components released against Ganoderma boninense. J. Microbiol., 54(11):732-744.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"95\" class=\"ninja_table_row_79 nt_row_id_95\">\n            <td>151<\/td><td>Arolu, W I; Marhalil, M; Rafii, M Y; Mohamed, M H; Mohd Isa Z A; Kazem, O; Zulkefly, S; Harun A R; Mohd Din, A; Kushairi, A and Rajanaidu, N. (2016). Genetic variability analysis and selection of pisifera palms for commercial production of high yielding and dwarf oil palm planting materials. Ind. Crop Prod., 90: 135-141.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"96\" class=\"ninja_table_row_80 nt_row_id_96\">\n            <td>150<\/td><td>Chai, S-K; Namasivayam, P; Ho, C-L; Norazlin, A A; Ong-Abdullah, M and Ooi, S-E (2016). RNA from fresh frozen cryosections of oil palm inflorescences is superior to FFPE sections. J. Oil Palm Res., 28(2): 154-160.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"97\" class=\"ninja_table_row_81 nt_row_id_97\">\n            <td>149<\/td><td>Fadila, A M; Norziha, A; Mohd Din, A; Rajanaidu, N and Kushairi, A (2016) Evaluation of bunch index in MPOB oil palm (Elaeis guineensis Jacq.) germplasm collection. J. Oil Palm Res., 28(4): 442-451.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"98\" class=\"ninja_table_row_82 nt_row_id_98\">\n            <td>148<\/td><td>Hanin, A N; Masani, M Y A and Parveez, G K A (2016). Evaluation of oil palm leaf-specific promoter (LSP1) activity for expressing PHB genes in Arabidopsis thaliana. J. Oil Palm Res., 28(1): 1-9.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"99\" class=\"ninja_table_row_83 nt_row_id_99\">\n            <td>147<\/td><td>Lau, B Y C; James, D M; Deb-Choudhury, S; Dyer, J M; Ramli, U S and Clerens, S (2016). Application of a mass spectrometric approach to detect the presence of oil palm fatty acid biosynthetic phosphopeptides. Protein J., 35(2): 163-170.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"100\" class=\"ninja_table_row_84 nt_row_id_100\">\n            <td>146<\/td><td>Majid, N A and Parveez, G K A (2016). Regeneration of transgenic oil palm carrying GFP gene used as a visual selectable marker. J. Oil Palm Res., 28(4): 415-430.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"101\" class=\"ninja_table_row_85 nt_row_id_101\">\n            <td>145<\/td><td>Mohd Nasriq Hafizee, A R; Ong-Abdullah, M; Shaharuddin, N A; Nurniwalis, A W; Roberts, J A and Zubaidah, R (2016). Impact of paclobutrazol on the growth and development of nursery grown clonal oil palm (Elaeis guineensis Jacq.). J. Oil Palm Res., 28(4): 404-414.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"102\" class=\"ninja_table_row_86 nt_row_id_102\">\n            <td>144<\/td><td>Ng, C H; Lee, S L; Tnah, L H; Ng K K S; Lee, C T and Madon, M (2016). Genome size variation and evolution in Dipterocarpaceae. Plant Eco. & Div., 9(5-6): 437-446.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"103\" class=\"ninja_table_row_87 nt_row_id_103\">\n            <td>143<\/td><td>Nurfahisza, A R; Rafiqah, M A; Parveez, G K A and Rasid, O A (2016). Comparison of the effectiveness of basta, bialaphos and glufosinate ammonium for selecting transformed oil palm tissues. J. Oil Palm Res., 28(3): 247-255.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"104\" class=\"ninja_table_row_88 nt_row_id_104\">\n            <td>142<\/td><td>Ooi, L C L; Low, E T L; Ong-Abdullah, M; Rajanaidu, N; Ting, N-C; Jayanthi, N; Manaf, M A A , Chan, K-L; Ab Halim, M A; Azizi, N; Omar, W; Murad, A J; Lakey, N; Jared, M O; Anthony, F; Muhammad Arif, B; Andrew, V B; Melissa, B; Leininger, M T; Nan, J; Steven, W S; Clyde, R B; Alex, C S K; Shabani, B; O-Connor, A H; Nguyen, A Y; Chaudhari, H G; Shah, S A; Choo, Y M; Sambanthamurthi, R and Singh, R (2016). Non-tenera contamination and the economic impact of SHELL genetic testing in the Malaysian independent oil palm industry. Front. Plant Sci., 7: 771.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"105\" class=\"ninja_table_row_89 nt_row_id_105\">\n            <td>141<\/td><td>Ooi, S E; Ramli, Z; Syed Alwee, S S R; Kulaveerasingam, H and Ong-Abdullah, M (2016). EgHOX1, a HD-Zip II gene, is highly expressed during early oil palm (Elaeis guineensis Jacq.) somatic embryogenesis. Plant Gene, 8: 16-25.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"106\" class=\"ninja_table_row_90 nt_row_id_106\">\n            <td>140<\/td><td>Roslan, N D; Ong-Abdullah, M; Mohamed-Azni I-N A; Idris, A S and Sundram, S (2016). Comparison of RNA extraction methods for RT-PCR detection of Coconut cadang-cadang viroid variant in orange spotting oil palm leaves. Can. J. Plant Pathol., 38(3): 382-388.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"107\" class=\"ninja_table_row_91 nt_row_id_107\">\n            <td>139<\/td><td>Tan, H S; Liddell, S; Ong-Abdullah, M; Wong, W C and Chin, C F (2016). Differential proteomic analysis of embryogenic lines in oil palm (Elaeis guineensis Jacq). J. Proteomics, 143: 334-345.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"108\" class=\"ninja_table_row_92 nt_row_id_108\">\n            <td>138<\/td><td>Ting, N-C; Yaakub, Z; Kamaruddin, K; Mayes, S; Massawe, F; Sambanthamurthi, R; Jansen, J; Low, E T L; Ithnin, M; Kushairi, A; Arulandoo, X; Rosli, R; Chan, K-L; Amiruddin, N; Sritharan, K; Lim, C C; Rajanaidu, N; Amiruddin, M D and Singh, R (2016). Fine-mapping and cross-validation of QTLs associated with fatty acid composition in multiple independent interspecific crosses of oil palm. BMC Genomics, 17:289.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"109\" class=\"ninja_table_row_93 nt_row_id_109\">\n            <td>137<\/td><td>Wan Nur Syuhada, W S; Rasid, O A and Parveez, G K A (2016). Evaluation on the effects of culture medium on regeneration of oil palm plantlets from immature embryos (IE). J. Oil Palm Res., 28(2): 234-239.<\/td><td>2016<\/td>        <\/tr>\n            <tr data-row_id=\"110\" class=\"ninja_table_row_94 nt_row_id_110\">\n            <td>136<\/td><td>Izawati, A M D; Masani, M Y A; Ismanizan, I and Parveez, G K A (2015). Evaluation on the effectiveness of 2-deoxyglucose-6-phosphate phosphatase (DOGR1) gene as a selectable marker for oil palm (Elaeis guineensis Jacq.) embryogenic calli transformation mediated by Agrobacterium tumefaciens. Front. Plant Sci., 6: 727.<\/td><td>2015<\/td>        <\/tr>\n            <tr data-row_id=\"111\" class=\"ninja_table_row_95 nt_row_id_111\">\n            <td>135<\/td><td>Kok, S-Y; Ong-Abdullah, M; Ee, G C-L and Namasivayam, P (2015). A histological study of oil palm (Elaeis guineensis) endosperm during seed development. J. Oil Palm Res., 27(2): 107-112.<\/td><td>2015<\/td>        <\/tr>\n            <tr data-row_id=\"112\" class=\"ninja_table_row_96 nt_row_id_112\">\n            <td>134<\/td><td>Lau, B Y C; Deb-Choudhury, S; Morton, J D; Dyer, J M ; Ramli, U S and Clerens, S (2015). Method developments to extract oil palm chromoplast proteins for proteomic analysis. SpringerPlus, 4(1): 791.<\/td><td>2015<\/td>        <\/tr>\n            <tr data-row_id=\"113\" class=\"ninja_table_row_97 nt_row_id_113\">\n            <td>133<\/td><td>Mohd Din, A; Rajanaidu, N, Jalani, S and Zakri, A H (2015). Genetic variation and heritability estimates for bunch yield, bunch components and vegetative traits in oil palm interspecific hybrids. J. Agric. Sci. Technol. A., 2015: 162-173.<\/td><td>2015<\/td>        <\/tr>\n            <tr data-row_id=\"114\" class=\"ninja_table_row_98 nt_row_id_114\">\n            <td>132<\/td><td>Nurniwalis, A W; Zubaidah, R; Siti Nor Akmar, A; Zulkifli, H; Manaf, M A; Massawe, F J; Chan, K L and Parveez, G K A (2015). Genomic structure and characterization of a lipase class 3 gene and promoter from oil palm. Biol. Plant., 59(2): 227-236.<\/td><td>2015<\/td>        <\/tr>\n            <tr data-row_id=\"115\" class=\"ninja_table_row_99 nt_row_id_115\">\n            <td>131<\/td><td>Ong-Abdullah, M; Ordway, J M; Jiang, N; Ooi, S-E; Kok, S-Y; Sarpan, N; Nuraziyan, A; Tarmizi, A H; Zamzuri, I; Samsul, K R; Fadila, A M; Nor Azwani, A B; Marhalil, M; Norziha, A; Zulkifli, Y; Mohd Din, A; Rajanaidu, N; Singh, R; Low, E-T L; Chan, K-L; Azizi , N; Smith, S W; Bacher, B; Budiman, M A, Brunt, A V; Wischmeyer, C; Beil, M; Hogan, M; Lakey, N; Lim, C-C; Arulandoo, X; Wong C-K; Choo, C-N; Wong, W-C; Kwan, Y-Y; Syed Alwee, S S R; Sambanthamurthi, R and Martienssen, R A (2015). Loss of Karma transposon methylation underlies the mantled somaclonal variant of oil palm. Nature, 525: 533-537.<\/td><td>2015<\/td>        <\/tr>\n            <tr data-row_id=\"116\" class=\"ninja_table_row_100 nt_row_id_116\">\n            <td>130<\/td><td>Parveez, G K A; Bahariah, B; Hanin, A N; Masani, M Y A; Rasid, O A; Tarmizi, A H and Ishak, Z (2015). Production of polyhydroxybutyrate in oil palm (Elaeis guineensis Jacq.) mediated by microprojectile bombardment of PHB biosynthesis genes into embryogenic calli. Front. Plant Sci., 6: 598.<\/td><td>2015<\/td>        <\/tr>\n            <tr data-row_id=\"117\" class=\"ninja_table_row_101 nt_row_id_117\">\n            <td>129<\/td><td>Parveez, G K A; Rasid, O A; Masani, M Y A and Sambanthamurthi, R (2015). Biotechnology of oil palm: strategies towards manipulation of lipid content and composition. Plant. Cell Rep. 34(4): 533-543.<\/td><td>2015<\/td>        <\/tr>\n            <tr data-row_id=\"118\" class=\"ninja_table_row_102 nt_row_id_118\">\n            <td>128<\/td><td>Sarpan, N; Kok, S-Y; Chai, S-K; Fitrianto, A; Nuraziyan, A; Zamzuri, I; Ong-Abdullah, M and Ooi, S-E (2015). A model to predict floral development stage of Inflorescences from Elaeis guineensis Jacq. J. Oil Palm Res., 27(4): 315-325.<\/td><td>2015<\/td>        <\/tr>\n            <tr data-row_id=\"119\" class=\"ninja_table_row_103 nt_row_id_119\">\n            <td>127<\/td><td>Suzana, M; Rahimah, A R; Ithnin, M and Singh, R (2015). A simple and rapid protocol for isolation of genomic DNA from oil palm leaf tissue. J. Oil Palm Res., 27(3): 282-287.<\/td><td>2015<\/td>        <\/tr>\n            <tr data-row_id=\"120\" class=\"ninja_table_row_104 nt_row_id_120\">\n            <td>126<\/td><td>Bahariah, B; Parveez, G K A; Masani, M Y A and Norzulaani, K (2014). The use of mannose selection system for gene transfer in tobacco plants (Nicotiana tabacum l.), a model plant for oil palm transformation. J. Oil Palm Res., 26(2): 154-162.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"121\" class=\"ninja_table_row_105 nt_row_id_121\">\n            <td>125<\/td><td>Chan, P-L; Rose, R J; Abdul Murad, A M; Zainal, Z; Low, E T L; Ooi, L C L; Ooi, S E; Yahya, S and Singh, R (2014). Evaluation of reference genes for quantitative real-time PCR in oil palm elite planting materials propagated by tissue culture. PLoS ONE, 9(6):e99774.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"122\" class=\"ninja_table_row_106 nt_row_id_122\">\n            <td>124<\/td><td>Hassan, H; Lau, B Y C and Ramli, U S (2014). Extraction methods for analysis of oil palm leaf and root proteins by two-dimensional gel electrophoresis. J. Oil Palm Res., 26(1): 54-61.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"123\" class=\"ninja_table_row_107 nt_row_id_123\">\n            <td>123<\/td><td>Latif, N M; Zaki, N M; Nordiana, H N M; Marjuni, M; Che Radziah, C M Z and Madon, M (2014). Correlation of microspore nuclear development with male inflorescence morphology in Elaeis oleifera, Elaeis guineensis and the OxG hybrid. J. Oil Palm Res., 26(1):104-108.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"124\" class=\"ninja_table_row_108 nt_row_id_124\">\n            <td>122<\/td><td>Lim, F H; Fakhrana, I N; Rasid, O A; Idris, A S; Parveez, G K A; Ho, C L and Shaharuddin, N A (2014). Isolation and selection of reference genes for Ganoderma boninense gene expression study using quantitative real-time PCR (qPCR). J. Oil Palm Res., 26(2): 170-181.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"125\" class=\"ninja_table_row_109 nt_row_id_125\">\n            <td>121<\/td><td>Low, E T L; Jayanthi, N; Ab Halim, M A; Azizi, N; Chan, K-L; Nauman, J M; Paul, M; Rudi, B; Alan, M; Roger, M; Ong-Abdullah, M and Singh, R (2014). Analyses of hypomethylated oil palm gene space. PLoS ONE, 9(1): e86728.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"126\" class=\"ninja_table_row_110 nt_row_id_126\">\n            <td>120<\/td><td>Masani, M Y A; Noll, G; Parveez, G K A; Sambanthamurthi, R and Pr\u00fcfer, D (2014). Efficient transformation of oil palm protoplasts by PEG-mediated transfection and DNA microinjection. PLoS ONE, 9(5): e96831.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"127\" class=\"ninja_table_row_111 nt_row_id_127\">\n            <td>119<\/td><td>Nurfahisza, A R; Rafiqah, M A; Masani, M Y A; Hanin, A N; Rasid, O A; Parveez, G K A and Ismanizan, I (2014). Molecular analysis of transgenic oil palm to detect the presence of transgenes. J. Oil Palm Res., 26(1): 96-103.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"128\" class=\"ninja_table_row_112 nt_row_id_128\">\n            <td>118<\/td><td>Noh, A; Rafii, M Y; Mohd Din, A; Kushairi, A; Norziha, A; Rajanaidu, N; Latif, M A and Malek, M A (2014). Variability and performance evaluation of introgressed Nigerian dura x Deli dura oil palm progenies. Genet. Mol. Res., 13(2): 2426-2437.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"129\" class=\"ninja_table_row_113 nt_row_id_129\">\n            <td>117<\/td><td>Nordiana, H M N; Ting, N-C; Clyde, M M; Singh, R and Madon, M. (2014) Evaluation of inter-simple sequence repeat (ISSR) markers for genetic mapping of an oil palm interspecific hybrid mapping population (Elaeis oleifera \u00d7 E. guineensis). J. Oil Palm Res., 26(3): 214-223.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"130\" class=\"ninja_table_row_114 nt_row_id_130\">\n            <td>116<\/td><td>Ramachandran, V; Ong-Abdullah, M; Ho, C-L; Syed Alee, S S R and Namasivayam, P (2014). Modified RNA in situ hybridization protocol for oil palm (Elaeis guineensis Jacq.) fruit and inflorescence. J. Oil Palm Res., 26(4): 300-307.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"131\" class=\"ninja_table_row_115 nt_row_id_131\">\n            <td>115<\/td><td>Rasid, O A; Lim, F H; Fakhrana, I N; Idris, A S and Parveez, G K A (2014). Isolation of a partial cDNA clone coding for Ganoderma boninense pde. J. Oil Palm Res., 26(3): 265-269.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"132\" class=\"ninja_table_row_116 nt_row_id_132\">\n            <td>114<\/td><td>Rasid, O A; Wan Nur Syuhada, W S; Hanin, A N; Masura, S S and Parveez, G K A (2014). Molecular cloning and regulation of oil palm (Elaeis guineensis Jacq.) phyteone desaturase in developing mesocarp tissues. J. Oil Palm Res., 26(1): 37-46.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"133\" class=\"ninja_table_row_117 nt_row_id_133\">\n            <td>113<\/td><td>Singh, R; Low, E T L; Ooi, L C L; Ong-Abdullah, M; Rajanaidu, N; Ting, N-C; Marjuni, M; Chan, P-L; Ithnin, M; Manaf, M A A; Jayanthi, N; Chan, K L; Rosli, R; Ab Halim, M A; Norazah, A; Budiman, M A; Lakey, N; Bacher, B; Van Brunt, A; Wang, C; Hogan, M; He, D; Macdonald, J D; Smith, S W; Ordway, J M; Martienssen, R A and Sambanthamurthi, R (2014). The oil palm VIRESCENS gene controls fruit colour and encodes a R2R3-MYB. Nature Communications, 5: 4106.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"134\" class=\"ninja_table_row_118 nt_row_id_134\">\n            <td>112<\/td><td>Ting, N-C; Jansen, J; Mayes, S; Massawe, F; Sambanthamurthi, R; Ooi, L C L; Chin, C W; Arulandoo, X; Seng, T-Y; Sharifah Shahrul, R S A; Ithnin, M and Singh, R (2014). High density SNP and SSR-based genetic maps of two independent oil palm hybrids. BMC Genomics, 15:309.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"135\" class=\"ninja_table_row_119 nt_row_id_135\">\n            <td>111<\/td><td>Zulkifli, Y; Singh, R; Mohd Din, A; Ting, N C; Rajanaidu, N; Kushairi, A; Musa, B; Mohamad, O and Ismanizan, I (2014). Inheritance of SSR and SNP loci in an oil palm interspecific hybrid backross (BC2) population. J. Oil Palm Res., 26(3): 203-213.<\/td><td>2014<\/td>        <\/tr>\n            <tr data-row_id=\"136\" class=\"ninja_table_row_120 nt_row_id_136\">\n            <td>110<\/td><td>Bahariah, B; Parveez, G K A; Masani, M Y A; Masura, S S; Norzulaani K and Rofina, O Y (2013). Biolistic transformation of oil palm using the phosphomannose isomerase (pmi) gene as a positive selectable marker. Biocatal. Agric. Biotechnol., 2(4): 295-304.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"137\" class=\"ninja_table_row_121 nt_row_id_137\">\n            <td>109<\/td><td>Ho, W K; Ooi, S-E; Mayes, S; Namasivayam, P; Ong-Abdullah, M and Chin, C F (2013). Methylation levels of a novel genetic element, EgNB3 as a candidate biomarker associated with the embryogenic competency of oil palm. Tree Genet. Genomes, 9: 1099-1107.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"138\" class=\"ninja_table_row_122 nt_row_id_138\">\n            <td>108<\/td><td>Jayanthi, N; Rosli, R; Ting, N C; Ooi, L C L; Low, E T L and Singh, R (2013). Exploiting synteny between oil palm and rice to find markers more closely linked to selected trait. J. Oil Palm Res., 25(2):180-187.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"139\" class=\"ninja_table_row_123 nt_row_id_139\">\n            <td>107<\/td><td>Kok, S-Y; Namasivayam, P; Ee, G C L and Ong-Abdullah, M (2013). Biochemical characterization during seed development of oil palm (Elaeis guineensis). J. Plant Res., 126(4): 539-547.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"140\" class=\"ninja_table_row_124 nt_row_id_140\">\n            <td>106<\/td><td>Marhalil, M; Rafii, M Y; Afizi M M A; Arolu, I W; Noh, A; Mohd Din, A; Kushairi, A; Norziha, N; Rajanaidu, N, Latif, M A; and Malek, M A (2013) Genetic variability in yield and vegetative traits in elite germplasm of MPOB-Nigerian Dura \u00d7 AVROS Pisifera progenies. J. Food Agric, Environ., 11(2): 515-519.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"141\" class=\"ninja_table_row_125 nt_row_id_141\">\n            <td>105<\/td><td>Masani, M Y A; Noll, G; Parveez, G K A; Sambanthamurthi, R and Pr\u00fcfer, D (2013). Regeneration of viable oil palm plants from protoplasts by optimizing media components, growth regulators and cultivation procedures. Plant Science, 210: 118-127.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"142\" class=\"ninja_table_row_126 nt_row_id_142\">\n            <td>104<\/td><td>Midin, M R; Samsul, K R; Tarmizi, H A; Nulit, R and Madon, M (2013). Analysis of oil palm clones, their suspension calli and regenerants via flow cytometry (FCM) and rDNA fluorescence in situ hybridisation (rDNA-FISH). J. Oil Palm Res., 25(3):357-367.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"143\" class=\"ninja_table_row_127 nt_row_id_143\">\n            <td>103<\/td><td>Noor Ai\u2019shah, O; Tharek, M; Keyeo, F; Keng, C L; Zamzuri, I, Ahmad Ramli, M Y and Amir, H G (2013). Influence of indole-3-acetic acid (IAA) produced by diazotrophic bacteria on root development and growth of in vitro oil palm shoots (Elaeis guineensis Jacq.). J. Oil Palm Res., 25(1): 100-107.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"144\" class=\"ninja_table_row_128 nt_row_id_144\">\n            <td>102<\/td><td>Nurazah, Z; Idris, A S; Kushairi, A and Ramli, U S (2013). Metabolite profiling of oil palm towards understanding basal stem rot (BSR) disease. J. Oil Palm Res., 25(1): 58-71.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"145\" class=\"ninja_table_row_129 nt_row_id_145\">\n            <td>101<\/td><td>Ooi, S-E; Choo, C-N; Zamzuri, I and Ong-Abdullah, M (2013). Candidate hormone-responsive markers for callogenesis of oil palm (Elaeis guineensis Jacq.) J. Oil Palm Res., 25(1): 9-21.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"146\" class=\"ninja_table_row_130 nt_row_id_146\">\n            <td>100<\/td><td>Ooi, S-E; Nov\u00e1k, O; Dole\u017eal, K; Zamzuri, I and Ong-Abdullah, M (2013). Cytokinin differences in in vitro cultures and inflorescences from normal and mantled oil palm (Elaeis guineensis Jacq.) J. Plant Growth Regul. 32: 865-874.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"147\" class=\"ninja_table_row_131 nt_row_id_147\">\n            <td>99<\/td><td>Sarpan, N; Ooi, S-E; Ong-Abdullah, M; Ho, C-L; Chin, C F and Namasivayam, P (2013). Representational Difference Analysis (RDA) for the identification of DNA marker associated with tissue culture amenity in oil palm. J. Oil Palm Res., 25(3): 305-313.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"148\" class=\"ninja_table_row_132 nt_row_id_148\">\n            <td>98<\/td><td>Singh, R; Low, E T L; Ooi, L C L; Ong-Abdullah, M; Ting, N-C; Jayanthi, N, Rajanaidu, N; Amiruddin, M D; Rosli, R; Manaf, M A A; Chan, K-L; Ab Halim, M A; Azizi, N; Lakey, N; Steven, W S; Budiman, M A; Hogan, M; Bacher, B; Brunt, A V; Wang, C; Ordway, J M; Sambanthamurthi, R and Martienssen, R A (2013). The oil palm SHELL gene controls oil yield and encodes a homologue of SEEDSTICK. Nature, 500(7462): 340-344.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"149\" class=\"ninja_table_row_133 nt_row_id_149\">\n            <td>97<\/td><td>Singh, R; Ong-Abdullah, M; Low, E T L; Manaf, M A A; Rosli, R; Rajanaidu, N; Ooi, L C L; Ooi, S E; Chan, K-L; Ab Halim, M A; Azizi, N; Jayanthi, N; Bacher, B; Lakey, N; Steven, W S; He, D; Hogan, M; Budiman, M A; Lee, E K; Desalle, R; Kudrna, D; Goicoechea, J L; Wing, R A; Wilson, R K; Fulton, R S; Ordway, J M; Martienssen, R A and Sambanthamurthi, R (2013). Oil palm genome sequences reveals divergence of interfertile species in old and new worlds. Nature, 500(7462): 335-339.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"150\" class=\"ninja_table_row_134 nt_row_id_150\">\n            <td>96<\/td><td>Sue-Sean, T; Yung-Chie, T; Faridah, A; Ong-Abdullah, M and Ho, C-L (2013). Transcriptome of oil palm (Elaeis guineensis Jacq.) roots treated with Ganoderma boninense. Tree Genet. Genomes, 9: 377-386.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"151\" class=\"ninja_table_row_135 nt_row_id_151\">\n            <td>95<\/td><td>Syahanim, S; Abrizah, O; Manaf, M A A; Idris, A S and Mohd Din, A (2013). Identification of differentially expressed proteins in oil palm seedlings artificially infected with Ganoderma: A proteomics approach. J. Oil Palm Res., 25: 298-304.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"152\" class=\"ninja_table_row_136 nt_row_id_152\">\n            <td>94<\/td><td>Tahir, N I; Kozhirah, S; Faridah, A; Parveez, G K A; Tarmizi, H A and Ramli, U S (2013). Identification of oil palm (E. guineensis) spear leaf metabolites using Mass Spectrometry and Neutral Loss Analysis. J. Oil Palm Res., 25: 72-83.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"153\" class=\"ninja_table_row_137 nt_row_id_153\">\n            <td>93<\/td><td>Ting, N-C; Jansen, J; Jayanthi, N; Ishak, Z; Chin, C W; Tan, S G; Cheah S C; And Singh, R (2013). Identification of QTLs associated with callogenesis and embryogenesis in oil palm using genetic linkage maps improved with SSR markers. PLoS ONE, 8(1): e53076.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"154\" class=\"ninja_table_row_138 nt_row_id_154\">\n            <td>92<\/td><td>Thuc, L V; Geelen, D; Ky, H; Ooi, S-E; Napis, S; Sinniah, U R and Namasivayam, P (2013). Overexpression of the oil palm (Elaeis guineensis Jacq.) TAPETUM DEVELOPMENT1-like Eg707 in rice affects cell division and differentiation and reduces fertility. Mol. Biol. Reports, 40: 1579-1590.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"155\" class=\"ninja_table_row_139 nt_row_id_155\">\n            <td>91<\/td><td>Yeoh, K A; Othman, S; Meon, F; Abdullah and Ho, C L (2013). Sequence analysis and gene expression of putative oil palm chitinase and chitinase-like proteins in response to colonization of Ganoderma boninense and Trichoderma harzianum. Mol. Biol Rep., 40: 147-158.<\/td><td>2013<\/td>        <\/tr>\n            <tr data-row_id=\"156\" class=\"ninja_table_row_140 nt_row_id_156\">\n            <td>90<\/td><td>Bahariah, B; Parveez, G K A; Masani, M Y A and Norzulaani, K (2012). Construction of phosphomannose isomerase (PMI) transformation vectors and evaluation of the effectiveness of vectors in tobacco (Nicotiana tabacum L). Bioinformation Journal, 8(3):151-157.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"157\" class=\"ninja_table_row_141 nt_row_id_157\">\n            <td>89<\/td><td>Bahariah, B; Parveez, G K A and Norzulaani, K (2012). Determination of optimal concentration of mannose as a selection agent for selecting transformed oil palm cells using the Phosphomannose Isomerase (pmi) gene as the positive selectable marker. J. Oil Palm Res., 24: 1250-1259.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"158\" class=\"ninja_table_row_142 nt_row_id_158\">\n            <td>88<\/td><td>Habib, S H; Ooi, S-E; Nov\u00e1k, O; Tarkowsk\u00e1, D; Rol\u010d\u00edk, J; Dole\u017eal, K; Syed Alwee, S S R; Ho, C-L and Namasivayam, P (2012). Comparative mineral and hormonal analyses of wild type and TLS somaclonal variant derived from oil palm (Elaeis guineensis Jacq. var. tenera) tissue culture. Plant Growth Regul., 68: 313-317.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"159\" class=\"ninja_table_row_143 nt_row_id_159\">\n            <td>87<\/td><td>Izawati, A M D; Parveez, G K A and Ismanizan, I (2012). Optimisation of 2-deoxyglucose concentration for identifying the sensitivity level for oil palm embryogenic calli. J. Oil Palm Res., 24: 1296-1302.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"160\" class=\"ninja_table_row_144 nt_row_id_160\">\n            <td>86<\/td><td>Madon, M; Heslop-Harrison, J S; Schwarzacher, T and Tarmizi, H A (2012). Analysis of oil palm calli and regenerants using flow and image cytometry and 18s-25s ribosomal DNA fluorescence in situ hybridisation (FISH). J. Oil Palm Res. 24(1): 1318-1329.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"161\" class=\"ninja_table_row_145 nt_row_id_161\">\n            <td>85<\/td><td>Myint, K S A; Rafii, M Y; Sheikh-Abdullah, S A; Lwin, N M; Mohd Din, A and Latif, M A (2012). Determination of the optimum pollen germination medium for different fruit forms of oil palm (Elaeis guineensis). J. Anim. Plant Sc., 14(1): 1855-1865.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"162\" class=\"ninja_table_row_146 nt_row_id_162\">\n            <td>84<\/td><td>Noh, A; Rafii, M Y; Saleh, G; Kushairi, A and Latif, M A (2012). Genetic performance and general combining ability of oil palm Deli dura x AVROS pisifera tested on inland soils. Sci. World J., 2012: 1-8.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"163\" class=\"ninja_table_row_147 nt_row_id_163\">\n            <td>83<\/td><td>Ooi, S-E; Choo, C-N; Zamzuri, I and Ong-Abdullah, M (2012). A candidate auxin-responsive expression marker gene, EgIAA9, for somatic embryogenesis in oil palm (Elaeis guineensis Jacq.) Plant Cell Tiss. Org. Cult., 110(2): 201-212.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"164\" class=\"ninja_table_row_148 nt_row_id_164\">\n            <td>82<\/td><td>Ooi, S-E; Lee, F-C and Ong-Abdullah, M (2012). A rapid and sensitive in situ RNA hybridisation method for oil palm tissues. J. Oil Palm Res., 24: 1235-1239.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"165\" class=\"ninja_table_row_149 nt_row_id_165\">\n            <td>81<\/td><td>Samsul, K R; Rohani, O; Singh, R and Mohd-Nazir, B (2012). Mutation induction using gamma irradiation on oil palm (Elaeis guinensis) cultures. J. Oil Palm Res., 24: 1448-1458.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"166\" class=\"ninja_table_row_150 nt_row_id_166\">\n            <td>80<\/td><td>Tahir, N I; Kozhirah, S; Faridah, A; Parveez, G K A; Ishak, Z and Ramli, U S (2012). Characterization of Apigenin and Luteolin derivatives from oil palm (Elaeis guineensis Jacq.) leaf using LC-ESI-MS\/MS. J. Agric. Food Chem., 60(45): 11201-11210.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"167\" class=\"ninja_table_row_151 nt_row_id_167\">\n            <td>79<\/td><td>Yeoh, K. A; Othman, A; Meon, S; Abdullah, F and Ho, C. L. (2012). Sequence analysis and gene expression of putative exo- and endo-glucanases from oil palm (Elaeis guineensis) during fungal infection. J. Plant Physiol., 169: 1565-1570.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"168\" class=\"ninja_table_row_152 nt_row_id_168\">\n            <td>78<\/td><td>Yusoff, N F M; Namasivayam, P; Ong-Abdullah, M; Ho, C-L and Syed Alwee, S S R (2012). A time course anatomical analysis on callogenesis of young leaf explants of Elaeis guineensis (Arecaceae). J. Oil Palm Res., 24: 1330-1341.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"169\" class=\"ninja_table_row_153 nt_row_id_169\">\n            <td>77<\/td><td>Zaki, N M; Singh, R; Rosli, R and Ismail, I (2012). Elaeis oleifera genomics-SSR markers: exploitation in oil palm germplasm diversity and cross-amplification in Arecaceae. Int. J. Mol. Sc., 13(4): 4069-4088.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"170\" class=\"ninja_table_row_154 nt_row_id_170\">\n            <td>76<\/td><td>Zulkifli, Y; Ithnin, M and Singh, R (2012). Evaluation of MPOB oil palm germplasm (Elaeis guineensis) collections using EST-SSR. J. Oil Palm Res., 24: 1368-1377.<\/td><td>2012<\/td>        <\/tr>\n            <tr data-row_id=\"171\" class=\"ninja_table_row_155 nt_row_id_171\">\n            <td>75<\/td><td>Habib, S H; Syed-Alwee, S S R; Ho, C-L; Ong-Abdullah, M; Sinniah, U R and Namasivayam, P (2011). Morpho-histological characterization of truncated leaf syndrome seedlings: an oil palm (E. guineensis Jacq.) somaclonal variant. Acta. Physiol. Plant, 34: 17-28.<\/td><td>2011<\/td>        <\/tr>\n            <tr data-row_id=\"172\" class=\"ninja_table_row_156 nt_row_id_172\">\n            <td>74<\/td><td>Koehn, H; Lau, B Y C; Clerens, S; Plowman, J E; Dyer, J M; Ramli, U S and Deb-Choudhury, S (2011). Combination of acid labile detergent and C18 Empore disks for improved identification and sequence coverage of in-gel digested proteins. Anal. Bioanal. Chem., 400: 415-421.<\/td><td>2011<\/td>        <\/tr>\n            <tr data-row_id=\"173\" class=\"ninja_table_row_157 nt_row_id_173\">\n            <td>73<\/td><td>Kok, S-Y; Ong-Abdullah, M; Ee, G C and Namasivayam, P (2011). Comparison of nutrient composition in kernel of tenera and clonal materials of oil palm (Elaeis guineensis Jacq.). Food Chem., 129: 1343-1347.<\/td><td>2011<\/td>        <\/tr>\n            <tr data-row_id=\"174\" class=\"ninja_table_row_158 nt_row_id_174\">\n            <td>72<\/td><td>Kutty, P C; Parveez, G K A and Huyop, F (2011). Improved Post Agro-infection Strategies for Greater Transgenic Events Recovery in Nicotiana tabacum. Int. J. Agric. Res., 6(2): 119-133.<\/td><td>2011<\/td>        <\/tr>\n            <tr data-row_id=\"175\" class=\"ninja_table_row_159 nt_row_id_175\">\n            <td>71<\/td><td>Lim, F H; Fakhrana, I N; Shaharuddin, N A; Rasid, O A; Idris, A S and Parveez, G K A (2011). A partial-length cyclophilin-encoding (cyp) cDNA isolated from Ganoderma boninense. J. Oil Palm Res., 23: 1115-1120.<\/td><td>2011<\/td>        <\/tr>\n            <tr data-row_id=\"176\" class=\"ninja_table_row_160 nt_row_id_176\">\n            <td>70<\/td><td>Masura, S S; Parveez, G K A and Low, E T L (2011). Isolation and characterization of an oil palm constitutive promoter from a translationally control tumor protein (TCTP) gene. Plant Physiol. Biochem., 40: 701-708.<\/td><td>2011<\/td>        <\/tr>\n            <tr data-row_id=\"177\" class=\"ninja_table_row_161 nt_row_id_177\">\n            <td>69<\/td><td>Norziha, A; Rafii, M Y; Ithnin, M; Saleh, G and Latif, M A (2011). Genetic variability of oil palm parental genotypes and performance of its\u2019 progenies as revealed by molecular markers and quantitative traits. C. R. Biol., 334: 290-299.<\/td><td>2011<\/td>        <\/tr>\n            <tr data-row_id=\"178\" class=\"ninja_table_row_162 nt_row_id_178\">\n            <td>68<\/td><td>Seng, T Y; Siti Hawa, M S; Chin, C W; Ting, N-C; Singh, R; Faridah, Q Z; Tan, S G; and Sharifah Shahrul, R S A (2011). Genetic linkage map of a high yielding FELDA Deli x Yangambi oil palm cross. PLoS ONE, 6(11): e26593.<\/td><td>2011<\/td>        <\/tr>\n            <tr data-row_id=\"179\" class=\"ninja_table_row_163 nt_row_id_179\">\n            <td>67<\/td><td>Teh, O K and Ramli, U S (2011). Cloning and characterization of a KCS-like KASII-encoding cDNA from Jessenia bataua that elongates saturated and monounsaturated stearic acids in Arabidopsis thaliana. Mol. Biotechnol., 48: 97-108.<\/td><td>2011<\/td>        <\/tr>\n            <tr data-row_id=\"180\" class=\"ninja_table_row_164 nt_row_id_180\">\n            <td>66<\/td><td>Thuc, L V; Sarpan, N; Ky, H; Ooi, S-E; Napis, S; Ho, C-L; Ong-Abdullah, M; Chin, C F and Namasivayam, P (2011). A novel transcript of oil palm (Elaeis guineensis Jacq.), Eg707, is specifically upregulated in tissues related to totipotency. Mol. Biotechnol., 48(2): 156-64.<\/td><td>2011<\/td>        <\/tr>\n            <tr data-row_id=\"181\" class=\"ninja_table_row_165 nt_row_id_181\">\n            <td>65<\/td><td>Billotte, N; Jourjon, M F; Marseillac, N; Berger, A; Flori, A; Asmady, H; Adon, B; Singh, R; Nouy, B; Potier, F; Cheah, S C; Rohde, W; Ritter, E; Courtois, B; Charrier, A and Mangin, B (2010). QTL detection by multipatrent linkage mapping in oil palm (Elaeis guineensis Jacq.). Theor. Appl. Genet., 120(8): 1673-1687.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"182\" class=\"ninja_table_row_166 nt_row_id_182\">\n            <td>64<\/td><td>Chan, P-L; Ma, L S; Low, E T L; Shariff, E M; Ooi, L C L; Cheah, S C and Singh, R (2010). Normalized embryoid cDNA library of oil palm (Elaeis guineensis). Elec. J. Biotech., 13(1): 14.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"183\" class=\"ninja_table_row_167 nt_row_id_183\">\n            <td>63<\/td><td>Faridah, S; Huyop, F and Parveez, G K A (2010). Biolistics transformation of Citrullus vulgaris Schrad (Watermelon). Biotechnol., 9(2): 119-130.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"184\" class=\"ninja_table_row_168 nt_row_id_184\">\n            <td>62<\/td><td>Faridah, S; Huyop, F and Parveez, G K A (2010). Cotyledon with hypocotyl segment as an explant for the production of transgenic Citrullus vulgaris Schrad (Watermelon) mediated by Agrobacterium. Biotechnol., 9(2): 106-118.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"185\" class=\"ninja_table_row_169 nt_row_id_185\">\n            <td>61<\/td><td>Ismail, A H; Marhaban, M H; Mohd Noor, S B and Tarmizi, A H (2010). Feature extraction of oil palm in vitro shoot images. J. Oil Palm Res., 22: 765-773.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"186\" class=\"ninja_table_row_170 nt_row_id_186\">\n            <td>60<\/td><td>Kutty, P C; Parveez, G K A and Huyop, F (2010). An easy method for Agrobacterium tumefaciens-mediated gene transfer of Nicotiana tabacum cv. TAPM26. J. Biol. Sci., 10(6): 480-489.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"187\" class=\"ninja_table_row_171 nt_row_id_187\">\n            <td>59<\/td><td>Masura, S S; Parveez, G K A and Ismanizan, I (2010). Isolation and characterization of oil palm constitutive promoter derived from ubiquitin extension protein (uep1) gene. New Biotechnol., 27: 289-299.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"188\" class=\"ninja_table_row_172 nt_row_id_188\">\n            <td>58<\/td><td>Noh, A; Rafii, M Y; Saleh, G and Kushairi, A (2010). Genetic performance of 40 Deli dura x AVROS pisifera Full-Sib families. J. Oil Palm Res., 22: 781-795.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"189\" class=\"ninja_table_row_173 nt_row_id_189\">\n            <td>57<\/td><td>Ooi, S-E; Ishak, F and Ong-Abdullah, M (2010). Cloning and in silico analysis of promoters of highly expressed genes in oil palm embryogenic cultures. J. Oil Palm Res., 22: 856-868.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"190\" class=\"ninja_table_row_174 nt_row_id_190\">\n            <td>56<\/td><td>Parveez, G K A; Abrizah, O; Nurhafizah, R and Bahariah, B (2010). Functional analysis of oil palm palmitoyl-acyl-ACP thioesterase (FatB) gene via down-regulation in a model plant: Arabidopsis thaliana. J. Oil Palm Res., 22: 803-813.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"191\" class=\"ninja_table_row_175 nt_row_id_191\">\n            <td>55<\/td><td>Roowi, S H; Ho, C-L; Syed Alwee, S S R; Ong-Abdullah, M and Napis, S (2010). Isolation and characterization of differentially expressed transcripts from the suspension cells of oil palm (Elaeis guineensis Jacq.) in response to different concentration of auxins. Mol. Biotechnol., 46(1): 1-19.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"192\" class=\"ninja_table_row_176 nt_row_id_192\">\n            <td>54<\/td><td>Zaki, N M; Ismanizan, I; Rosli, R; Ting, N-C; and Singh, R (2010). Development and characterization of Elaeis oleifera microsatellite markers. Sains Malaysiana, 39(6): 909-9.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"193\" class=\"ninja_table_row_177 nt_row_id_193\">\n            <td>53<\/td><td>Ting, N-C; Zaki, N M; Rosli, R; Low, E T L; Ithnin, M; Cheah, S C; Tan, S G and Singh, R (2010). SSR mining in oil palm EST database: application in oil palm germplasm diversity studies. J. Genet., 89(2): 135-145.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"194\" class=\"ninja_table_row_178 nt_row_id_194\">\n            <td>52<\/td><td>Zubaidah, R and Siti Nor Akmar, A (2010). Functional characterisation of the oil palm type 3 Metallothionine-like gene (MT3-B) promoter. Plant Mol. Biol. Rep., 28: 531-541.<\/td><td>2010<\/td>        <\/tr>\n            <tr data-row_id=\"195\" class=\"ninja_table_row_179 nt_row_id_195\">\n            <td>51<\/td><td>Aishah, T; Alina, W; Hamidah, G; Huyop, F and Parveez, G K A (2009). In vitro regeneration of garden balsam Impatiens balsamina using cotyledons derived from seedlings. Biotechnol., 8(1): 44-52.<\/td><td>2009<\/td>        <\/tr>\n            <tr data-row_id=\"196\" class=\"ninja_table_row_180 nt_row_id_196\">\n            <td>50<\/td><td>Aishah, T; Hamidah, G A W; Huyop, F and Parveez, G K A (2009). Optimization of parameters for transformation of Impatiens balsamina through biolistics. Biotechnol., 8(1): 1-12.<\/td><td>2009<\/td>        <\/tr>\n            <tr data-row_id=\"197\" class=\"ninja_table_row_181 nt_row_id_197\">\n            <td>49<\/td><td>Izawati, A M D; Masani, M Y A and Parveez, G K A (2009). Transformation of oil palm using Agrobacterium tumefaciens. J. Oil Palm Res., 21: 643-652.<\/td><td>2009<\/td>        <\/tr>\n            <tr data-row_id=\"198\" class=\"ninja_table_row_182 nt_row_id_198\">\n            <td>48<\/td><td>Ky, H; Thuc, L V; Ooi, S-E; Zamzuri, I; Namasivayam, P and Napis, S (2009). Sequence and expression analysis of EgSAPK, a putative member of the Serine\/Threonine protein Kinases in oil palm (Elaeis guineensis Jacq.) Int. J. Bot., 5(1): 76-84.<\/td><td>2009<\/td>        <\/tr>\n            <tr data-row_id=\"199\" class=\"ninja_table_row_183 nt_row_id_199\">\n            <td>47<\/td><td>Masani, M Y A; Parveez, G K A; Izawati, A M D; Chan, P L and Siti Nor Akmar, A (2009). Construction of PHB and PHBV multiple-gene vectors driven by an oil palm leaf-specific promoter. Plasmid, 62: 191-200.<\/td><td>2009<\/td>        <\/tr>\n            <tr data-row_id=\"200\" class=\"ninja_table_row_184 nt_row_id_200\">\n            <td>46<\/td><td>Ramli, U S; Salas, J J; Quant, P A and Harwood, J L (2009). Use of metabolic control analysis to give quantitative information on control of lipid biosynthesis in the important oil crop, Elaeis guineensis (oil palm). New Phytologist, 184: 330-339.<\/td><td>2009<\/td>        <\/tr>\n            <tr data-row_id=\"201\" class=\"ninja_table_row_185 nt_row_id_201\">\n            <td>45<\/td><td>Rasid, O A; Ho, C L; Parveez, G K A; Sambanthamurthi, R and Napis, S (2009). Plant carotenoids: genetic engineering for high value-added products. J. Oil Palm Res., 21: 588-601.<\/td><td>2009<\/td>        <\/tr>\n            <tr data-row_id=\"202\" class=\"ninja_table_row_186 nt_row_id_202\">\n            <td>44<\/td><td>Singh, R; Tan, S G; Panandam, J M; Rahman, R A; Ooi L C L; Low, E T L, Sharma, M; Jansen, J and Cheah, S C (2009). Mapping quantitative trait loci (QTLs) for fatty acid composition in an interspecific cross of oil palm. BMC Plant Biol., 9: 114.<\/td><td>2009<\/td>        <\/tr>\n            <tr data-row_id=\"203\" class=\"ninja_table_row_187 nt_row_id_203\">\n            <td>43<\/td><td>Chan, P-L; Siti Nor Akmar, A and Roohaida, O (2008). Light-harvesting chlorophyll a\/b binding protein (LHCB) promoter for targeting specific expression in oil palm leaves. J. Oil Palm Res., (Special Issue-July 2008): 21-29.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"204\" class=\"ninja_table_row_188 nt_row_id_204\">\n            <td>42<\/td><td>Low, E T L; Alias, H; Boon, S H; Shariff, E M; Tan, C Y A; Ooi, L C L; Cheah, S C; Raha, A R; Wan, K L and Singh, R (2008). Oil palm (Elaeis guineensis Jacq.) tissue culture ESTs: Identifying genes associated with callogenesis and embryogenesis. BMC Plant Biol., 8:62.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"205\" class=\"ninja_table_row_189 nt_row_id_205\">\n            <td>41<\/td><td>Madon, M; Phoon, L Q; Clyde, M M and Amiruddin, M D (2008). Application of flow cytometry for estimation of nuclear DNA content in Elaeis. J. Oil Palm Res., 20: 447-52.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"206\" class=\"ninja_table_row_190 nt_row_id_206\">\n            <td>40<\/td><td>Masani, M Y A and Parveez, G K A (2008). Development of transformation vectors for the production of high oleate transgenic oil palm. Electron. J. Biotechn., 11: 3.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"207\" class=\"ninja_table_row_191 nt_row_id_207\">\n            <td>39<\/td><td>Masani, M Y A; Parveez, G K A and Ho, C L (2008). Transgenic plants producing polyhydroxyalkanoates. APJMBB., 16(1): 1-10.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"208\" class=\"ninja_table_row_192 nt_row_id_208\">\n            <td>38<\/td><td>Masani, M Y A; Ho, C L and Parveez, G K A (2008). Construction of PHB and PHBV transformation vectors for bioplastics production in oil palm. J. Oil Palm Res., Special Issue 2: 37-55.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"209\" class=\"ninja_table_row_193 nt_row_id_209\">\n            <td>37<\/td><td>Norziha, A; Rafii, M Y; Ithnin, M and Ghizan, S (2008). Genetic variation among parent genotypes and their progenies based on microsatellite markers. J. Oil Palm Res., 20: 533-541.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"210\" class=\"ninja_table_row_194 nt_row_id_210\">\n            <td>36<\/td><td>Nurniwalis, A W; Suhaimi, N; Akmar, A S N; Aminah, S and Arif, M A M (2008). Gene discovery via expressed sequence tags from the oil palm (Elaeis guineensis Jacq.) mesocarp. J. Oil Palm Res., Special Issue 2: 87-96.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"211\" class=\"ninja_table_row_195 nt_row_id_211\">\n            <td>35<\/td><td>Omar, W S W; Willis, L B; Rha, C K; Sinskey, A J; Ramli, U S; Masani, M Y A; Parveez, G K A and Sambanthamurthi, R (2008). Isolation and utilization of ACCase from oil palm mesocarp. J. Oil Palm Res., Special Issue 2: 97-107.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"212\" class=\"ninja_table_row_196 nt_row_id_212\">\n            <td>34<\/td><td>Ooi, S-E; Harikrishna, K and Ong-Abdullah, M (2008). Isolation and characterization of a putative Serine\/Threonine Kinase expressed during oil palm tissue culture. J. Oil Palm Res., 1: 14-22<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"213\" class=\"ninja_table_row_197 nt_row_id_213\">\n            <td>33<\/td><td>Parveez, G K A; Bahariah, B; Hanin, A N; Masani, M Y A; Omar, A R; Tarmizi, A H; Zamzuri, I; Manaf, M A; Kushairi, D A; Gregory, Y; Yeong, B J and Anthony, J S (2008). Transformation of PHB and PHBV genes driven by maize ubiquitin promoter into oil palm for the production of biodegradable plastics. J. Oil Palm Res., Special Issue 2: 77-86.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"214\" class=\"ninja_table_row_198 nt_row_id_214\">\n            <td>32<\/td><td>Parveez, G K A and Majid, N A (2008). Factors affecting green fluorescence protein (GFP) gene expression in oil palm after microprojectile bombardment mediated transformation. J. Oil Palm Res., 20: 495-507.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"215\" class=\"ninja_table_row_199 nt_row_id_215\">\n            <td>31<\/td><td>Rasid, O A; Parveez, G K A; Ho, C L; Suhaimi, N and Sambanthamurthi, R (2008). Plant carotenoids: Genetic engineering for high value-added products. J. Oil Palm Res., 21: 588-601.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"216\" class=\"ninja_table_row_200 nt_row_id_216\">\n            <td>30<\/td><td>Rasid, O A; Wan Nur Syuhada, W S; Hanin, A N; Masura, S S; Zulqarnain, M; Ho, C L; Suhaimi, N and Sambanthamurthi, R (2008). RT-PCR amplification and cloning of partial DNA sequence coding for oil palm (Elaeis oleifera) phytoene synthase gene. APJMBB., 16(1): 17-24.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"217\" class=\"ninja_table_row_201 nt_row_id_217\">\n            <td>29<\/td><td>Shariff, E M; Low, E T L; Halimah, A; Cheah, S C and Singh, R (2008). Identification of gene expressed in the embryoid tissue of oil palm (Elaeis guineensis Jacq.) tissue culture via expressed sequence tag analysis. J. Oil Palm Res., 1: 51-63.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"218\" class=\"ninja_table_row_202 nt_row_id_218\">\n            <td>28<\/td><td>Singh, R; Tan, S G; Panandam, J; Rahimah, A R and Cheah, S C (2008). Identification of cDNA-RFLP markers and their use for molecular mapping in oil palm (Elaeis guineensis). Asia Pacific J. Mol. Biol. & Biotech., 16(3): 53-63.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"219\" class=\"ninja_table_row_203 nt_row_id_219\">\n            <td>27<\/td><td>Singh, R; Zaki , N M; Ting, N-C; Rosli, R; Tan, S G; Low, E T L; Ithnin, M and Cheah, S C (2008). Exploiting an oil palm EST database for the development of gene-derived SSR markers and their exploitation for assessment of genetic diversity. Biologia, 63(2): 227-235.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"220\" class=\"ninja_table_row_204 nt_row_id_220\">\n            <td>26<\/td><td>Siti Nor Akmar, A and Zubaidah, R (2008). Mesocarp-specific metallothionein-like gene promoter for genetic engineering of oil palm. J. Oil Palm Res., Special Issue 2: 1-8.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"221\" class=\"ninja_table_row_205 nt_row_id_221\">\n            <td>25<\/td><td>Tarmizi, A H; Samsul, K R; Zaiton, R and Rosli, M Y (2008). Multiplication of oil palm liquid cultures in bioreactors. J. Oil Palm Res., 1: 44-5.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"222\" class=\"ninja_table_row_206 nt_row_id_222\">\n            <td>24<\/td><td>Teen, Y J; Masani, M Y A; Parveez, G K A and Sambanthamurthi, R (2008). Activity studies, gene characterization and manipulation of 3-ketothiolase of oil palm (Elaeis guineensis Jacq.) mesocarp. J. Oil Palm Res., Special Issue 2: 118-133.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"223\" class=\"ninja_table_row_207 nt_row_id_223\">\n            <td>23<\/td><td>Thuc, L V; Ky, H; Ooi, S-E; Napis, S; Zamzuri, I and Namasivayam, P (2008). Molecular characterization of an unknown protein (Acc. No. EU795363) from the ESTs of oil palm (Elaeis guineensis Jacq.) cell suspension culture. Pertanika J. Sci. Technol., 16: 189-199.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"224\" class=\"ninja_table_row_208 nt_row_id_224\">\n            <td>22<\/td><td>Willis, L B; York, G M; Lessard, P A; Jo, Y B; Rasid, O A; Manaf M A A; Park, C and Sinskey, A J (2008). Reagents for generation and analysis of bioplastic producing plants. J. Oil Palm Res., Special Issue 2: 56-68.<\/td><td>2008<\/td>        <\/tr>\n            <tr data-row_id=\"225\" class=\"ninja_table_row_209 nt_row_id_225\">\n            <td>21<\/td><td>Azlin, C O; Amir, H G; Keng, C L and Zamzuri, I (2007). Effect of plant growth-promoting Rhizobacteria on on root formation and growth of tissue cultured oil palm (Elaeis guineensis Jacq.). Biotechnol., 6: 549-554.<\/td><td>2007<\/td>        <\/tr>\n            <tr data-row_id=\"226\" class=\"ninja_table_row_210 nt_row_id_226\">\n            <td>20<\/td><td>Ho, C-L; Kwan, Y-Y; Choi, M-C; Tee, S-S; Ng, W-H; Lim, K-A; Lee, Y-P; Ooi, S-E; Lee, W-W; Tee, J-M; Tan, S-H; Kulaveerasingam, H; Syed Alwee, S S R and Ong-Abdullah, M (2007). Analysis and functional annotation of expressed sequence tags (ESTs) from multiple tissues of oil palm (Elaeis guineensis Jacq.). BMC Genomics, 8:381.<\/td><td>2007<\/td>        <\/tr>\n            <tr data-row_id=\"227\" class=\"ninja_table_row_211 nt_row_id_227\">\n            <td>19<\/td><td>Majid, N A and Parveez, G K A (2007). Evaluation of green fluorescence protein (GFP) as a selectable marker for oil palm transformation via transient expression. APJMBB, 15(1):1-8.<\/td><td>2007<\/td>        <\/tr>\n            <tr data-row_id=\"228\" class=\"ninja_table_row_212 nt_row_id_228\">\n            <td>18<\/td><td>Parveez, G K A; Majid, N A; Alizah, Z and Rasid, O A (2007). Determination of minimal inhibitory concentration of selection agents for selecting transformed immature embryos of oil palm. APJMBB., 15(3): 133-146.<\/td><td>2007<\/td>        <\/tr>\n            <tr data-row_id=\"229\" class=\"ninja_table_row_213 nt_row_id_229\">\n            <td>17<\/td><td>Singh, R; Tan, S G; Panandam, J; Sharma, M and Cheah, S C (2007). Preliminary analysis of quantitative trait loci associated with oil quality in an interspecific cross of oil palm. Pertanika J. Trop. Agri. Sc., 30(1): 31-44.<\/td><td>2007<\/td>        <\/tr>\n            <tr data-row_id=\"230\" class=\"ninja_table_row_214 nt_row_id_230\">\n            <td>16<\/td><td>Singh, R; Jayanthi, N; Tan, S G; Panandam, J M and Cheah, S C (2007). Development of simple sequence repeat (SSR) markers for oil palm and their application in genetic mapping and fingerprinting of tissue culture clones. Asia Pacific J. Mol. Biol. & Biotech., 15: 121-131.<\/td><td>2007<\/td>        <\/tr>\n            <tr data-row_id=\"231\" class=\"ninja_table_row_215 nt_row_id_231\">\n            <td>15<\/td><td>Tarmizi, A H and Zaiton, R (2007). Development of the MPOB Fast Transfer Technique (MoFaTT) for maintenance and maturation of oil palm culture aggregates. J. Oil Palm Res., 19(2): 435-439.<\/td><td>2007<\/td>        <\/tr>\n            <tr data-row_id=\"232\" class=\"ninja_table_row_216 nt_row_id_232\">\n            <td>14<\/td><td>Janna, O A; Marziah, M; Parveez, G K A and Saleh, K (2006). Factors affecting delivery and transient expression of glucuronidase gene in Dendrobium Sonia protocorm-like-body. Afr. J., 5(2): 88-94<\/td><td>2006<\/td>        <\/tr>\n            <tr data-row_id=\"233\" class=\"ninja_table_row_217 nt_row_id_233\">\n            <td>13<\/td><td>Low, E T L; Tan, J S; Chan, P L; Boon, S H; Wong, Y L; Rosli, R; Ooi, L C L; Ma, L S; Ong-Abdullah, M; Cheah, S C and Rajinder, S (2006). Developments towards the application of DNA chip technology in oil palm tissue culture. J. Oil Palm Res., Vol. special issue: 87-98.<\/td><td>2006<\/td>        <\/tr>\n            <tr data-row_id=\"234\" class=\"ninja_table_row_218 nt_row_id_234\">\n            <td>12<\/td><td>Ramli, U S; Salas, J J; Quant, P A and Harwood, J L (2005). Metabolic control analysis reveals an important role for diacylglycerol acyltransferase in olive but not in oil palm lipid accumulation. FEBS Journal, 272: 5764-5770.<\/td><td>2006<\/td>        <\/tr>\n            <tr data-row_id=\"235\" class=\"ninja_table_row_219 nt_row_id_235\">\n            <td>11<\/td><td>Syed Alwee, S S R; Van der Linden, C G; Van der Schoot, J; de Folter, S; Angenent, G C; Cheah, S-C and Smulders, M J M (2006). Characterization of oil palm MADS box genes in relation to the mantled flower abnormality. Plant Cell Tiss. Org. Cult., 85: 331-344.<\/td><td>2006<\/td>        <\/tr>\n            <tr data-row_id=\"236\" class=\"ninja_table_row_220 nt_row_id_236\">\n            <td>10<\/td><td>Ting, N-C; Cheah, S C; Zamzuri, I; Tan, S G; Faridah, Q Z; Ithnin, M and Singh, R (2006). Statistical mapping of quantitative trait loci controlling the time to first callusing in oil palm (Elaeis guineensis Jacq.) tissue culture. Pertanika J. Trop. Agri. Sc., 29(1&2): 35-45.<\/td><td>2006<\/td>        <\/tr>\n            <tr data-row_id=\"237\" class=\"ninja_table_row_221 nt_row_id_237\">\n            <td>9<\/td><td>Gorret, N; Samsul, K R; Oppenheim, S F; Willis, L B; Lessard, P A; Rha, C and Sinskey, A J (2004). Bioreactor culture of oil palm (Elaeis guineensis Jacq.) and effects of nitrogen source, inoculum size, and conditioned medium on biomass production. J. Biotechnol., 108(3): 253-263.<\/td><td>2004<\/td>        <\/tr>\n            <tr data-row_id=\"238\" class=\"ninja_table_row_222 nt_row_id_238\">\n            <td>8<\/td><td>Tarmizi, A H; Norjihan, M A and Zaiton, R (2003). Multiplication of oil palm suspension cultures in a bench-top (2-litre) bioreactor. J. Oil Palm Res., 16(2): 44-49.<\/td><td>2003<\/td>        <\/tr>\n            <tr data-row_id=\"239\" class=\"ninja_table_row_223 nt_row_id_239\">\n            <td>7<\/td><td>Ramli, U S; Baker, D S; Quant, P A and Harwood, J L (2002). Control mechanisms operating for lipid biosynthesis differ in oil palm (Elaeis guineensis Jacq.) and olive (Olea europaea L.) callus cultures. Biochem. J., 364: 385-391.<\/td><td>2002<\/td>        <\/tr>\n            <tr data-row_id=\"240\" class=\"ninja_table_row_224 nt_row_id_240\">\n            <td>6<\/td><td>Ramli, U S; Baker, D S; Quant, P A and Harwood, J L (2002). Use of control analysis to study the regulation of plant lipid biosynthesis. Biochem. Soc., 30(6): 1043 \u2013 1046.<\/td><td>2002<\/td>        <\/tr>\n            <tr data-row_id=\"241\" class=\"ninja_table_row_225 nt_row_id_241\">\n            <td>5<\/td><td>Namasivayam, P; Ong-Abdullah, M and Kulaveerasingam, H (2001). Sequence analysis and characterization of an oil palm (Elaeis guineensis Jacq.) cDNA encoding calmodulin. APJMBB., 9(1): 45-51.<\/td><td>2001<\/td>        <\/tr>\n            <tr data-row_id=\"242\" class=\"ninja_table_row_226 nt_row_id_242\">\n            <td>4<\/td><td>Janna, O A; Marziah, M and Parveez, G K A. (2000). Potential selective agents for orchid transformation. APJMBB., 8: 85-93.<\/td><td>2000<\/td>        <\/tr>\n            <tr data-row_id=\"243\" class=\"ninja_table_row_227 nt_row_id_243\">\n            <td>3<\/td><td>Mohd Din, A; Rajanaidu, N and Jalani, B S (2000). Performance of Elaeis oleifera from Panama, Costa Rica, Colombia and Honduras in Malaysia. J. Oil Palm Res., 12(1): 71-80.<\/td><td>2000<\/td>        <\/tr>\n            <tr data-row_id=\"244\" class=\"ninja_table_row_228 nt_row_id_244\">\n            <td>2<\/td><td>Othman, A; Lazarus, C; Fraser, T and Stobart, K (2000). Cloning of a palmitoyl-acyl carrier protein thioesterase from oil palm. Biochem Soc Trans., 28(6): 619\u2013622.<\/td><td>2000<\/td>        <\/tr>\n            <tr data-row_id=\"245\" class=\"ninja_table_row_229 nt_row_id_245\">\n            <td>1<\/td><td>Tarmizi, A H and Marziah, M (2000). Studies towards understanding proline accumulation in oil palm (Elaeis guineensis Jacq.) polyembryogenic cultures. J. Oil Palm Res., 12(1): 8-13.<\/td><td>2000<\/td>        <\/tr>\n    <\/tbody><!--ninja_tobody_rendering_done-->\n    <\/table>\n    \n    \n    \n<\/div>\n<\/div>\n\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t","protected":false},"excerpt":{"rendered":"","protected":false},"author":4,"featured_media":0,"parent":1197,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-4362","page","type-page","status-publish"],"_links":{"self":[{"href":"https:\/\/mpob.gov.my\/ms\/wp-json\/wp\/v2\/pages\/4362","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/mpob.gov.my\/ms\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/mpob.gov.my\/ms\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/mpob.gov.my\/ms\/wp-json\/wp\/v2\/users\/4"}],"replies":[{"embeddable":true,"href":"https:\/\/mpob.gov.my\/ms\/wp-json\/wp\/v2\/comments?post=4362"}],"version-history":[{"count":19,"href":"https:\/\/mpob.gov.my\/ms\/wp-json\/wp\/v2\/pages\/4362\/revisions"}],"predecessor-version":[{"id":9053,"href":"https:\/\/mpob.gov.my\/ms\/wp-json\/wp\/v2\/pages\/4362\/revisions\/9053"}],"up":[{"embeddable":true,"href":"https:\/\/mpob.gov.my\/ms\/wp-json\/wp\/v2\/pages\/1197"}],"wp:attachment":[{"href":"https:\/\/mpob.gov.my\/ms\/wp-json\/wp\/v2\/media?parent=4362"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}