NoArticleYear
1Badai, S S; Rasid, O A; Masani, M Y A; Chan, K L; Chan, P L; Fizree, M P M A; Rahmah, A R S; Bakar, N A A; Parveez, G K A and Ho, C L (2025). Functional analysis of a mesocarp-specific MSP-C7 promoter from oil palm (Elaeis guineensis Jacq.) Plant Cell. Tiss. Organ. Cult., 163: 15. DOI: 10.1007/s11240-025-03199-92025
2Hanin, A N; Masani, M Y A; Janna, O A; Rasid, O A and Parveez, G K A (2025). Agrobacterium-Mediated genome modification for improvement of oil palm planting materials. OBM Genetics, 9(2): 1-28. https://doi.org/10.21926/obm.genet.25022922025
3Norfaezah, J; Masani, M Y A; Fizree, M P M A A; Bahariah, B; Shaharuddin, N A; Ho, C L; Rasid, O A and Parveez, G K A (2025). A fast-track system for transgene-free genome editing in oil palm (Elaeis guineensis. Jacq) via biolistic delivery of CRISPR/Cas9 ribonucleoprotein (CRISPR-RNP). 3 Biotech, 15(11): 389. https://doi.org/10.1007/s13205-025-04555-42025
4Yusuf, C Y L; Nawawi, O; Azhari, M F; Hilman, M S; Bai, T; Zhang, C; Yi, H; Ni, Z; Xie, D; Abdullah, M P; Masani, M Y A; Shaharuddin, N A; Abdullah, M P and Abdullah, J O (2025). Functional characterisation of the EgPAL5 promoter from oil palm (Elaeis guineensis Jacq.) reveals its potential roles in plant growth and adaptation to drought. J. Hortic. Sci. Biotechnol., 1–18. https://doi.org/10.1080/14620316.2025.25193302025
5Nurfahisza, A R; Masani, M Y A; Masura, S S; Fizree, M P M A A; Rasid, O A and Parveez, G K A (2025). Optimisation of bombardment parameters in oil palm embryogenic calli based on transient expression of RFP gene. Journal of Oil Palm Research. Article in Press. https://doi.org/10.21894/jopr.2025.00242025
6Nurazah, Z; Ishak, N A; Rozali, N L; Dzulkafli, S B; Nagappan, J; Sundram, S; Idris, A S and Othman, A (2025). GC/Q-TOF-MS-based metabolomics: Unveiling the temporal metabolic pathways in Ganoderma boninense using pathway analysis tools. Journal of Oil Palm Research, DOI: https://doi.org/10.21894/jopr.2025.00192025
7Rozali, N L; Ramli, U S; Singh, R; Syed Jaafar, S N; Weckwerth, W; Azizan, K A and Othman, A (2025) Omics technologies: A strategy to expedite the geographical traceability and authenticity of palm oil. Food Bioprocess Technology 18, 4101-4128. https://doi.org/10.1007/s11947-024-03673-w2025
8Nor Azwani, A B; Zulkifli, Y; Noraziyah, A A S; Marhalil M and Fadila A M. 2025. Genetic performance of 3-way (MPOB-Nigeria × deli) dura × pisifera oil palm.crosses. J. Oil Palm Res. https://doi.org/10.21894/jopr.2025.0028.2025
9Suzana Mustaffa, Zulkifli Yaakub, Norziha Abdullah, Siti Hazirah Zolkafli and Rajinder Singh SNP-based assessment of genetic diversity in MPOB’s Tanzania, Angola and Ghana oil palm germplasm. 3 Biotech, 15:432. https://doi.org/10.1007/s13205-025-04613-x2025
10Hilman, M S; Nawawi, O; Azhari, M F; Bai, T; Zhang, C; Abdullah, M P; Masani, M Y A and Yusuf, C Y L (2025). A Comprehensive Method to Generating and Identifying Transgenic Tobacco Lines with a Single Transgene Integration Locus for Functional Analysis. Pertanika J. Trop. Agric. Sci., 48 (1): 31 – 58.2024
11Bahariah, B; Masani, M Y A; Norfaezah, J; Fizree, M P M A A; Syuhada, W S W N; Rasid O A and Parveez, G K A (2024). Application of CRISPR/Cas9-Mediated genome editing for trait improvement in oil palm. In: Kumar, N. (eds) Industrial Crop Plants. Interdisciplinary Biotechnological Advances. Springer, Singapore. https://doi.org/10.1007/978-981-97-1003-4_82024
12Rasid, O A; Masani, M Y A; Masura, S S; Bahariah, B; Nor Hanin, A; Lim, F H; Fizree, M P M A A and Parveez, G K A (2023). Genetic Engineering of Oil Palm. Advances in Oil Palm Research Second Edition (Ahmad Parveez Ghulam Kadir and Zainab, I eds). MPOB, Bangi. p.91-128.2024
13Hanin, A N; Masani, M Y A; Rasid, O A and Parveez, G K A (2024). Vector construction and transient evaluation in oil palm calli via Agrobacterium-mediated transformation. J. Oil Palm Res., 36(2): 210-223. Doi:  https://doi.org/10.21894/jopr.2023.00162024
14Masani, M Y A; Norfaezah, J; Bahariah, B; Fizree, M P M A; Sulaiman, W N S W; Shaharuddin, N A; Rasid, O A and Parveez G K A (2024). Towards DNA-free CRISPR/Cas9 genome editing for sustainable oil palm improvement. 3 Biotech. 14 (6):166. DOI: 10.1007/s13205-024-04010-w.2024
15Nagappan, J; Ooi, S-E; Chan, K-L; Kadri, F; Nurazah, Z; Halim, M A A; Angel, L P L; Sundram, S; Chin, C-F; May, S T and Low, E T L (2024). Transcriptional effects of carbon and nitrogen starvation on Ganoderma boninense, an oil palm phytopathogen. Molecular Biology Reports. 2024 Jan 25;51(1):212. doi: 10.1007/s11033-023-09054-4.2024
16Low, E-T L; Chan, K-L; Zaki, N M; Taranenko, E; Ordway, M; Wischmeyer, C; Buntjer, J; Halim, M A A; Sanusi, N S N M; Nagappan, J; Rosli, R; Bondar, E; Amiruddin, N; Sarpan, N; Ting, N-C; Chan, P-L; Ong-Abdullah, M; Marjuni, M; Mustaffa, S; Abdullah, N; Azizi, N; Bacher, B; Lakey, N; Tatarinova, T V; Manaf, M A A; Sambanthamurti, R and Singh, R (2024). Chromosome-scale Elaeis guineensis and E. oleifera assemblies: Comparative genomics of oil palm and other Arecaceae. G3 Genes|Genomes|Genetics. 14(9): jkae135. https://doi.org/10.1093/g3journal/jkae1352024
17Othman, A; Lau, B Y C; Nurazah, Z; Shahwan, S; Rusli, M H; Singh, R., Ong, M A; Marjuni, M; Yaakub, Z; Sundram, S; Manaf, M A A and Ramli, U S (2024). Comparative proteomic and metabolomic studies between partial resistant and susceptible oil palm reveal the molecular mechanism associated with Ganoderma boninense infection. Physiological and Molecular Plant Pathology, 129: 1021982024
18Hassan, H; Tahir, N I; Rozali, N L; Lau, B Y C; Othman, A; Weckwerth, W and Ramli, U S (2024) Integrative tissue-resolved proteomics and metabolomics analysis of oil palm (Elaeis guineensis Jacq.) fruit provides insights into stilbenoid biosynthesis at the interface of primary and secondary metabolism. Biocatalysis and Agricultural Biotechnology, 60, 103308.2024
19Fadila, A M; Noraziyah, A A S; Mohd Din, A; Marhalil, M and Zulkifli, Y (2024). Development of new high-yielding planting material based on performance of 38 oil palm (Elaeis guineensis Jacq.) Dura?×?Pisifera families. Euphytica 220, 73 (2024). https://doi.org/10.1007/s10681-024-03333-2. 2024
20Fadila, A M; Liew, K W; Zulkifli, Y and Ooi, S E (2024). Impact of recurrent intermittent flooding on the yield and growth of Elaeis guineensis. Ann. Appl. Biol. 185(3): 333-344. https://doi.org/10.1111/aab.12925. 2024
21Fadila, A M; Marjuni, M; Zulkifli, Y; Noraziyah, A A S and Oyebamiji, Y O (2024). Genetic variability of oil palm (Elaeis guineensis Jacq.) Deli dura inter-crosses population in the MPOB Research Station Hulu Paka, Terengganu, Malaysia. Malays. Appl. Biol. 53(2): 125-133. https://doi.org/10.55230/mabjournal.v53i2.2975. 2024
22Fatin Mohd Nasir; Suzana Mustaffa; Marhalil Marjuni; Wan Nor Salmiah Tun Mohd Salim and Zulkifli Yaakub (2024). Genetic Diversity of MPOB-Zaire Oil Palm (Elaeis Guineensis Jacq.) Germplasm Population by Multivariate Analysis. J. Oil Palm Res.doi.org/10.21894/jopr.2024.00502024
23Norziha, A; Zamri, Z; Zulkifli, Y; Fadila, A M; Marhalil, M and Mohd Din, A (2024). Performance of selfed and intercrossed oil palm Deli Ulu Remis progenies based on selected agronomic traits. J. Oil Palm Res., 36(2): 380 – 392. https://doi.org/10.21894/jopr.2023.00232024
24Norziha, A; Zamri, Z; Zulkifli, Y; Fadila, A M and Marhalil, M (2024). Selection Criteria of MPOB-Angola Germplasm Collection for Yield Improvement of the Oil Palm. Oil Crop Science, 9(1): 20 - 28. https://doi.org/10.1016/j.ocsci.2023.12.0032024
25Fadila, A M; Liew, K-W; Yaakub, Z and Ooi, S-E (2024) Impact of recurrent intermittent flooding on the yield and growth of Elaeis guineensis. Annals App. Biol., 185(3): 333-344. Doi: 10.1111/aab.129252024
26Ata, N; Halim, M A A; Syarif, M N Y; Mohamad, S A; Nasir, M D M; Ooi, S-E and Ong-Abdullah, M (2024) Genome survey and preliminary genomic characterization of a key oil palm pollinator, Elaeidobius kamerunicus. J. Oil Palm Res., Doi: 10.21894/jopr.2024.0039.2024
27Ooi, S-E; Choo, C-N; Sarpan, N; Wong, C-K; Wong, W-C (2024) Karma-EgDEF1 methylation in Elaeis guineensis clonal mother palms that produced high mantling rates in the second clonal generation. In Vitro Cell. Dev. Biol. – Plant, 60:176-182. Doi: 10.1007/s11627-023-10394-w2024
28Lim, F-H; Rasid, O A; Idris, A S; As’wad, A W M; Vadamalai, G; Parveez, G K A and Wong, M-Y (2024). Gene silencing of Ganoderma boninense Lanosterol 14?-demethylase (GBERG11) affects ergosterol biosynthesis and pathogenicity towards oil palm. Sci. Hortic., 332: 113198. https://doi.org/10.1016/j.scienta.2024.113198. 2023
29Masura, S S; Shaharuddin, N A; Masani, M Y A; Abdullah, M P; Azzeme, A M; Chan, K-L; Low, E T L; Chan, P-L; Rahmah, A R S; Nadzirah, A and Parveez, G K A and Rasid, O A (2024). Functional analysis of root-preferential oil palm metallothionein promoter in tobacco. Transgenic Res., 33:383-397. https://doi.org/10.1007/s11248-024-00396-8.2023
30Norfaezah, J; Masani, M Y A; Fizree, M P M A A; Bahariah, B; Shaharuddin, N A; Ho, C L; Rasid, O A and Parveez, G K A (2024). DNA-free CRISPR/Cas9 genome editing system for oil palm protoplasts using multiple ribonucleoproteins (RNPs) complexes. Ind Crops Prod., 208:117795. https://doi.org/10.1016/j.indcrop.2023.1177952023
31Bahariah, B; Masani, M Y A; Fizree, M P M A A; Rasid, O A and Parveez, G K A (2023). Multiplex CRISPR/Cas9 gene-editing platform in oil palm targeting mutations in EgFAD2 and EgPAT genes. Journal of Genetic Engineering and Biotechnology, 21(1):32023
32Fizree, M P M A A; Masani, M Y A; Shaharuddin, N A; Chai Ling, H; Manaf, M A A and Parveez, G K A (2023). Efficient PEG-mediated transformation of oil palm mesophyll protoplasts and its application in functional analysis of oil palm promoters. South African Journal of Botany. 155. pp. 187-195.2023
33Lim, F-H; Rasid, O A; Idris, A S; As’wad, A W M; Vadamalai, G; Parveez, G K A and Wong, M-Y (2023). Induced expression of Ganoderma boninense Lanosterol 14?-Demethylase (ERG11) during interaction with oil palm. Mol. Biol. Rep., 50:2367–2379. https://doi.org/10.1007/s11033-022-08131-4. 2023
34Rozali, N L; Azizan, K A; Singh, R; Syed Jaafar, S N; Othman, A; Weckwerth, W and Ramli, U S (2023) Fourier transform infrared (FTIR) spectroscopy approach combined with discriminant analysis and prediction model for crude palm oil authentication of different geographical and temporal origins. Food Control 146, 109509. https://doi.org/10.1016/j.foodcont.2022.1095092023
35Dzulkafli, S B; Othman, A; Lau, B Y C; Nurazah, Z; Nagappan, J; Ramli, U S; Karsani, S A (2023) Understanding the effects of carbon and nitrogen starvation on the comparative secretomes of Ganoderma boninense and Ganoderma tornatum. Physiological and Molecular Plant Pathology, 127:102084.2023
36Tahir, N I; Ishak, A N; Sin, T S; Othman, A and Ramli, U S (2023). Chemical profiling of palm oil and other selected plant oils by proton nuclear magnetic resonance combined with chemometrics. Journal of Oil Palm Research, 35(4): 738-746. https://doi.org/10.21894/jopr.2023.00212023
37Ishak, N A; Tahir, N I; Rozali, N L; Nurazah, Z; Rahim, N R A; Othman, A and Ramli, U S (2023). Cross-validation and receiver operating characteristic analyses for oil palm leaf metabolome dataset. Journal of Oil Palm Research. 35 (2): 376-384. doi: https://doi.org/10.21894/jopr.2022.00462023
38Suzana, M; Siti Hazirah, Z; Zulkifli, Y; Marhalil, M and Singh, R (Eds.) SNP-based assessment of genetic diversity in MPOB-Tanzania oil palm germplasm. eISSN 2600-9595. Transaction of Malaysian Society of Plant Physiology, Vol 30. Selangor.2023
39Chai, S-K; Ooi, S-E; Ho, C-L; Chan, K-L; Fitrianto, A; Ong-Abdullah, M and Namasivayam, P (2023) Transcriptomic analysis reveals suppression of photosynthesis and chlorophyll synthesis following gibberellic acid treatment on oil palm (Elaies guineensis). J. Plant Growth Regul., 42: 5683-5699. Doi: 10.1007/s00344-023-10950-z2023
40Lim, C-C; Wong, F-H; Ooi, S-E (2023). Reproducibility of somatic embryogenesis upon resampling of oil palm ortets. The Planter, 99(1169): 507-514. Doi: 10.56333/tp.2023.0252023
41Mohd Rodzik, F F; Sudirman, N A; Teh, C-K; Ong, A-L; Heng, H-Y; Yaakop, S; Mohd-Assaad, N; Ong-Abdullah, M; Ata, N; Amit, S; Saragih, B; Appleton, D R and Kulaveerasingam, H (2023). Development of nuclear DNA markers for applications in genetic diversity study of oil palm-pollinating weevil populations. Insects, 14: 157. Doi:10.3390/insects140201572023
42Ooi, S-E; Sarpan, N; Taranenko, E; Feshah, I; Nuraziyan, A; Roowi, S H; Burhan, M N; Jayanthi, N; Rahmah, A R S; Teh, O-K; Ong-Abdullah, M and Tatarinova, T V (2023). Small RNAs and Karma methylation in Elaeis guineensis mother palms are linked to high clonal mantling. Plant Mol. Biol., 111(4-5): 345-363. Doi: 10.1007/s11103-022-01330-42023
43Ooi, S-E; Nuraziyan, A; Sarpan, N; Ata, N; Ong-Abdullah, M (2023). Strategies for oil palm crop improvement in countering environmental stresses. In: Advances in Oil Palm Research 2nd edition, Vol. I. pp.165-1942023
44Zubaidah, R and Zatty, S A M (2022). Exploiting gibberellin in oil palm height control: Strategies and way forward. Transactions of the Malaysian Society of Plant Physiology Conference, volume 29.2022
45Zaki, N M; Singh, R; Muhammad Azwan, Z; Nordiana, H M N and Chan, P-L (2022). An update of oil palm haploid technology: MPOB’s Experience. Oil Palm Bulletin 84: 1-92022
46Abu Bakar, N A; Ahmad Malike, F; Amiruddin, M and Meilina Ong A (2022). Genetic variability and performance of MPOB-Nigeria dura x AVROS pisifera planting materials. International Journal of Oil Palm, 5(1): 26-38.2022
47Yaakub, Z; Marjuni, M; Mustaffa, S; Salim, W N S T M; N A A; Nasir; Abdullah, N; Amiruddin, M D; Nookiah, R; Kushairi, A and Ong-Abdullah, M. (2022). Phenotypic variability of Elaeis Oleifera germplasm revealed by principal component and cluster analyses. J. Oil Palm Res., doi.org/10.21894/jopr.2022.00542022
48Sarpan, N; Tatarinova, T V; Low, E-T L; Ong-Abdullah, M; Sapian, I S and Ooi, S-E (2022). Histone modification marks improve identification of oil palm transcription start sites. J. Oil Palm Res., 34(1): 35-45.2022
49Sanusi, N S N M; Rosli, R; Chan, K L; Ab-Halim, M A; Ting, N-C; Singh, R and Low, E T L (2022). Integrated consensus genetic map and genomic scaffold re-ordering of oil palm (Elaeis guineensis) genome. Comput Biol Chem, Vol. 102: https://doi.org/10.1016/j.compbiolchem.2022.107801.2022
50Salim, W N S T M; Yaakub, Z; Mustaffa, S; Bakar, N A A; Nasir, F M; Marjuni, M; Amiruddin, M D and Ong-Abdullah, M. (2022). Genetic variability of MPOB-Cameroon oil palm germplasm based on morphological traits using multivariate analysis. J. Oil Palm Res., 35(3): 476-490.2022
51Rosli, R; Ab-Halim, M A; Ngoot-Chin, T; Zaki, N M; Jayanthi, N; Singh, R; Low, E T L; Mohamed-Hussein, Z A (2021). Oil Palm SSR Resource Interface (OPSRI) – Web-based Bioinformatics Analysis Pipeline for SSR Mining. J. Oil Palm Res., 34(4): 643-6562022
52Nurniwalis, A W; Zubaidah, R; Mohamad Arif, A M and Parveez, G K A (2022). Oil palm MSP2 promoter isolation, in silico analysis and functional characterization. J. Oil Palm Res., DOI: https://doi.org/10.21894/jopr.2022.00492022
53Nizan, I E F; Kamaruddin, K; Ong, P-W; Ramli, Z; Singh, R; Rose, R J and Chan, P-L (2022). Overexpression of Oil Palm Early Nodulin 93 Protein Gene (EgENOD93) Enhances In Vitro Shoot Regeneration in Arabidopsis thaliana. Molecular Biotechnology 64(7): 743-7572022
54Masura, S S; Rasid, O A; Shaharuddin, N A; Masani, M Y A; Chan, K-L; Low, E T L; Badai, S S; Hanin, A N; Rahmah, A R S; Abdullah, M P; Azzeme, A M; Parveez, G K A (2022). Identification of oil palm root-specific genes through mining of RNA-Seq data and RT-qPCR analysis. J. Oil Palm Res., Vol. 34 (2): 261-275. DOI: https://doi.org/10.21894/jopr.2021.00362022
55Lee, A P L; Abu Bakar, D and Sundram, S (2022). A non-invasive tissue culture system for performing artificial pathogenicity assays of Ganoderma boninense. Australas. Plant Pathol. 51(1): 39-422022
56Jamaludin, N; Bahariah, B; Shaharudin, N A; Ho, C L; Rasid O A; Parveez, G K A and Masani, M Y A (2022). Designing gRNAs targeting oil palm Phytoene desaturase gene and construction of vectors for oil palm CRISPR/Cas9 study. J. Oil Palm Res., DOI: https://doi.org/10.21894/jopr.2022.00322022
57Amiruddin, N; Pek-Lan, C; Kuang-Lim, C; Ong, P W; Morris, P E; Ong-Abdullah, M; Masura, S S and Eng-Ti, L L (2022). Determination of reliable reference genes for reverse transcription quantitative real-time PCR from oil palm transcriptomes. J. Oil Palm Res., doi.org/10.21894/jopr.2022.00022022
58Ab-Halim, M A; Rosli, R; Low, E T L; Mohamed-Hussein, Z A and Singh, R (2022). Molecular screening of Basal Stem Rot Resistance Genes in Oil Palm. J. Oil Palm Res., doi.org/10.21894/jopr.2022.00782022
59Masani, M Y A; Parveez, G K A; Noll, G A; Fizree, M P M A.A; Sambanthamurthi, R and Prufer, D (2023). Protoplast isolation and transformation in oil palm. In Kan Wang and Feng Zhang (Eds.), Protoplast Technology: Methods and Protocols. New York: Springer.2022
60Norfaezah, J; Bahariah, B; Shaharudin, N A; Ho, C L; Rasid, O A; Parveez, G K A and Masani, M Y A (2023). Designing gRNAs targeting oil palm phytoene desaturase gene and construction of vectors for oil palm CRISPR/Cas9 study. J. Oil Palm Res., 35(1): 133-146. https://doi.org/10.21894/jopr.2022.00322022
61Rasid, O A; Masani, M Y A; Masura, S S; Bahariah, B; Hanin, A N; Lim, F-H; Fizree, M P M A A and Parveez, G K A (2023). Genetic engineering of oil palm. In Parveez, G.K.A. and Idris, Z. (Eds.), Advances in Oil Palm Research: Second Edition. Selangor: MPOB Press.2022
62Tahir, N I; Rozali, N L; Rahmah, A R S; Amiruddin, M D; Hwa, L F; Othman, A; Parveez, G K A; Ramli, U S (2022). Metabolome study of oil palm (Elaeis guineensis Jacq.) planted in different environment conditions. Trop. Plant Biol., 15:211-232. https://doi.org/10.1007/s12042-022-09318-62022
63Ramli, U S; Othman, A; Lau, B Y C; Hassan, H; Ishak, N A; Nurazah, Z; Rozali, N L; Tahir, N I M; Shahwan, S; Dzulkafli, S B; Singh, R; Abd Rasid, O; Sambanthamurthi, R; Abd Manaf, M A and Parveez, G K A (2022) Omics platform technologies for discovery and understanding the systems biology of oil palm. Journal of Oil Palm Research, 34 (1), 1-25.2022
64Shahwan, S; Abrizah, O; Zain, N; Nurul Liyana, R and Umi Salamah, R (2022). All-in-one comprehensive extraction of metabolites, proteins and ribonucleic acid for the rapid analysis of oil palm systems biology. Journal of Oil Palm Research, 34 (2): 234-247.2022
65Tahir, N I; Rozali, N L; Rahmah, A R S; Amiruddin, M D; Lim, F H; Shaari, K; Abas, F; Othman, A; Parveez, G K A and Ramli, U S (2022). Metabolome study of oil palm (Elaeis guineensis Jacq.) planted in different environment conditions. Tropical Plant Biology, 15(2):1-222022
66Dzulkafli, S B; Othman, A; Lau, B Y C; Ramli, U S and Karsani, S A (2022). Comparative proteome analysis of mycelial proteins from G. boninense vs G. tornatum: Identification of proteins potentially involved in the pathogenicity of G. boninense. Physiological and Molecular Plant Pathology, 117: 101736.2022
67Lau, B Y C; Othman, A and Ramli, U S (2022). Antifungal and antioxidant peptides from oil palm mesocarps. Journal of Oil Palm Research, 34 (3): 453-4642022
68Bakar, N.A.A., Malike, F.A. and Amiruddin, M. Genetic Variability and Performance of MPOB-Nigeria Dura x AVROS Pisifera Planting Materials. 2022. International Journal of Oil Palm, 5(1), pp.26-38.2022
69Masani, M Y A; Bahariah, B; Fizree, P M A A and Parveez, G K A (2021). Genome editing for oil palm improvement. The Planter 97(1141): 211-213.2021
70Zolkafli, S H; Ithnin, M; Chan, K L; Zainol Abidin, M I; Ismail, I; Ting, N-C; Ooi, L C-L and Singh, R (2021). Optimal set of microsatellite markers required to detect illegitimate progenies in selected oil palm (Elaeis guineensis Jacq.) breeding crosses. Breeding Science 71: 253-2602021
71Zolkafli, S H; Ting, N-C; Nik Mohd Sanusi, N S; Ithnin, M; Mayes, S; Massawe, F; Sambanthamurthi, R; Ismail, I; Zainol Abidin, M I; Roowi, S H; Lee, Y P; Hanafi, N F F and Singh, R (2021). Comparison of quantitative trait loci (QTLs) associated with yield components in two commercial Dura x Pisifera breeding crosses. Euphytica 217: 104.2021
72Zaki, N M; Schwarzacher, T; Singh, R; Madon, M; Wischmeyer, C; Nordiana, H M N, Muhammad Azwan, Z and Heslop-Harrison, J S (2021). Chromosome identification in oil palm (Elaeis guineensis) using in situ hybridization with massive pool of single copy oligonucleotides and transferability across Arecaceae species. Chromosome Research 29(3):373-3902021
73Wan Nur Syuhada, W S; Rasid, O A and Parveez, G K A (2021). Molecular cloning of Elaeis guineensis phytoene synthase (Egpsy) and its expression in mesocarp tissues. J. Oil Palm Res., 33 (3): 447-457.2021
74Ting, N-C; Zulkifli, M A; van de Weg, E; Zaki, N M; Serdari, N M; Mustaffa, S; Abidin, M I Z; Sanusi, N S N M; Smulders, M J; Low, E T L and Ithnin, M (2021). Detection of ploidy and chromosomal aberrations in commercial oil palm using high-throughput SNP markers. Planta 253(2): 1-172021
75Singh, R; Ooi, L C-L; Ting, N-C; Low, L E-T; Ong-Abdullah, M; Nookiah, R; Marjuni, M; Mustaffa, S; Abdul Manaf, M A; Garner, P; Reed, J; Wischmeyer, C; Beil, M; Bacher B; Lakey, N D; Ordway J M and Sambanthamurthi R (2021). A genetic platform for predicting and reducing non-tenera contamination in oil palm (Elaeis guineensis) seed supply. Tree Genetics and Genomes 17: 45 doi.org/10.1007/s11295-021-01527-62021
76Shin, M G; Ithnin, M; Vu, W T; Kamaruddin, K; Chin, T N; Yaakub, Z; Chang, P L; Sritharan, K; Nuzhdin, S and Singh, R (2021). Association mapping analysis of oil palm interspecific hybrid populations and predicting phenotypic values via machine learning algorithms. Plant Breeding 140(6): 1150-11652021
77Said, Z S A M; Wahab, N A; Ramli, Z (2021). Isolation and characterisation of gibberellin 2-oxidase 6 gene from oil palm (Elaeis guineensis jacq.). J. Oil Palm Res., 33 (2): 235-247.2021
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245Marhalil, 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 × AVROS Pisifera progenies. J. Food Agric, Environ., 11(2): 515-519.2013
246Kok, 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): 539-547.2013
247Jayanthi, 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):180-187.2013
248Ho, 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: 1099-1107.2013
249Bahariah, 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): 295-304.2013
250Zulkifli, Y; Ithnin, M and Singh, R (2012). Evaluation of MPOB oil palm germplasm (Elaeis guineensis) collections using EST-SSR. J. Oil Palm Res., 24: 1368-1377.2012
251Zaki, 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): 4069-4088.2012
252Yusoff, 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: 1330-1341.2012
253Yeoh, 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: 1565-1570.2012
254Tahir, 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): 11201-11210.2012
255Samsul, 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: 1448-1458.2012
256Ooi, 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: 1235-1239.2012
257Ooi, 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.)Â Plant Cell Tiss. Org. Cult., 110(2): 201-212.2012
258Noh, 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: 1-8.2012
259Myint, 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): 1855-1865.2012
260Madon, 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): 1318-1329.2012
261Izawati, 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: 1296-1302.2012
262Habib, S H; Ooi, S-E; Novák, O; Tarkowská, D; Rolčík, J; Doležal, 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: 313-317.2012
263Bahariah, 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: 1250-1259.2012
264Bahariah, 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):151-157.2012
265Thuc, 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): 156-64.2011
266Teh, 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: 97-108.2011
267Seng, 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): e26593.2011
268Norziha, A; Rafii, M Y; Ithnin, M; Saleh, G and Latif, M A (2011). Genetic variability of oil palm parental genotypes and performance of its’ progenies as revealed by molecular markers and quantitative traits. C. R. Biol., 334: 290-299.2011
269Masura, 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: 701-708.2011
270Lim, 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: 1115-1120.2011
271Kutty, 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): 119-133.2011
272Kok, 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: 1343-1347.2011
273Koehn, 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: 415-421.2011
274Habib, 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: 17-28.2011
275Zubaidah, 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: 531-541.2010
276Ting, 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): 135-145.2010
277Zaki, 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): 909-9.2010
278Roowi, 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): 1-19.2010
279Parveez, 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: 803-813.2010
280Ooi, 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: 856-868.2010
281Noh, 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: 781-795.2010
282Masura, 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: 289-299.2010
283Kutty, 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): 480-489.2010
284Ismail, 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: 765-773.2010
285Faridah, 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): 106-118.2010
286Faridah, S; Huyop, F and Parveez, G K A (2010). Biolistics transformation of Citrullus vulgaris Schrad (Watermelon). Biotechnol., 9(2): 119-130.2010
287Chan, 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): 14.2010
288Billotte, 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): 1673-1687.2010
289Singh, 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: 114.2009
290Rasid, 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: 588-601.2009
291Ramli, 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: 330-339.2009
292Masani, 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: 191-200.2009
293Ky, 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): 76-84.2009
294Izawati, 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: 643-652.2009
295Aishah, 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): 1-12.2009
296Aishah, 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): 44-52.2009
297Willis, 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: 56-68.2008
298Thuc, 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: 189-199.2008
299Teen, 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: 118-133.2008
300Tarmizi, 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: 44-5.2008
301Siti 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: 1-8.2008
302Singh, 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): 227-235.2008
303Singh, 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): 53-63.2008
304Shariff, 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: 51-63.2008
305Rasid, 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): 17-24.2008
306Rasid, 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: 588-601.2008
307Parveez, 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: 495-507.2008
308Parveez, 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: 77-86.2008
309Ooi, 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: 14-222008
310Omar, 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: 97-107.2008
311Nurniwalis, 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: 87-96.2008
312Norziha, 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: 533-541.2008
313Masani, 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: 37-55.2008
314Masani, M Y A; Parveez, G K A and Ho, C L (2008). Transgenic plants producing polyhydroxyalkanoates. APJMBB., 16(1): 1-10.2008
315Masani, 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: 3.2008
316Madon, 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: 447-52.2008
317Low, 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., 8:62.2008
318Chan, 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): 21-29.2008
319Tarmizi, 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): 435-439.2007
320Singh, 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: 121-131.2007
321Singh, 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): 31-44.2007
322Parveez, 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): 133-146.2007
323Majid, 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):1-8.2007
324Ho, 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, 8:381.2007
325Azlin, 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: 549-554.2007
326Ting, 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): 35-45.2006
327Syed 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: 331-344.2006
328Ramli, 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: 5764-5770.2006
329Low, 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: 87-98.2006
330Janna, 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): 88-942006
331Gorret, 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): 253-263.2004
332Tarmizi, 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): 44-49.2003
333Ramli, 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 – 1046.2002
334Ramli, 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: 385-391.2002
335Namasivayam, 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): 45-51.2001
336Tarmizi, 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): 8-13.2000
337Othman, 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): 619–622.2000
338Mohd 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): 71-80.2000
339Janna, O A; Marziah, M and Parveez, G K A. (2000). Potential selective agents for orchid transformation. APJMBB., 8: 85-93.2000
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