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Items: 1 to 20 of 21

1.

Diurnal biomarkers reveal key photosynthetic genes associated with increased oil palm yield.

Neoh BK, Wong YC, Teh HF, Ng TLM, Tiong SH, Ooi TEK, Md Zain MZ, Ersad MA, Teh CK, Lee HL, Mohd Rais SK, Cheah SS, Chew FT, Kulaveerasingam H, Appleton DR.

PLoS One. 2019 Mar 11;14(3):e0213591. doi: 10.1371/journal.pone.0213591. eCollection 2019.

2.

EgRBP42 from oil palm enhances adaptation to stress in Arabidopsis through regulation of nucleocytoplasmic transport of stress-responsive mRNAs.

Yeap WC, Namasivayam P, Ooi TEK, Appleton DR, Kulaveerasingam H, Ho CL.

Plant Cell Environ. 2019 May;42(5):1657-1673. doi: 10.1111/pce.13503. Epub 2019 Jan 25.

PMID:
30549047
3.

Evaluation of methods and marker Systems in Genomic Selection of oil palm (Elaeis guineensis Jacq.).

Kwong QB, Teh CK, Ong AL, Chew FT, Mayes S, Kulaveerasingam H, Tammi M, Yeoh SH, Appleton DR, Harikrishna JA.

BMC Genet. 2017 Dec 11;18(1):107. doi: 10.1186/s12863-017-0576-5.

4.

Key glycolytic branch influences mesocarp oil content in oil palm.

Ruzlan N, Low YSJ, Win W, Azizah Musa N, Ong AL, Chew FT, Appleton D, Mohd Yusof H, Kulaveerasingam H.

Sci Rep. 2017 Aug 29;7(1):9626. doi: 10.1038/s41598-017-10195-3.

5.

Differential gene expression at different stages of mesocarp development in high- and low-yielding oil palm.

Wong YC, Teh HF, Mebus K, Ooi TEK, Kwong QB, Koo KL, Ong CK, Mayes S, Chew FT, Appleton DR, Kulaveerasingam H.

BMC Genomics. 2017 Jun 21;18(1):470. doi: 10.1186/s12864-017-3855-7.

6.

Characterizing haploinsufficiency of SHELL gene to improve fruit form prediction in introgressive hybrids of oil palm.

Teh CK, Muaz SD, Tangaya P, Fong PY, Ong AL, Mayes S, Chew FT, Kulaveerasingam H, Appleton D.

Sci Rep. 2017 Jun 8;7(1):3118. doi: 10.1038/s41598-017-03225-7.

7.

Genomic Selection in Commercial Perennial Crops: Applicability and Improvement in Oil Palm (Elaeis guineensis Jacq.).

Kwong QB, Ong AL, Teh CK, Chew FT, Tammi M, Mayes S, Kulaveerasingam H, Yeoh SH, Harikrishna JA, Appleton DR.

Sci Rep. 2017 Jun 6;7(1):2872. doi: 10.1038/s41598-017-02602-6.

8.

WRI1-1, ABI5, NF-YA3 and NF-YC2 increase oil biosynthesis in coordination with hormonal signaling during fruit development in oil palm.

Yeap WC, Lee FC, Shabari Shan DK, Musa H, Appleton DR, Kulaveerasingam H.

Plant J. 2017 Jul;91(1):97-113. doi: 10.1111/tpj.13549. Epub 2017 May 8.

9.

Development and Validation of a High-Density SNP Genotyping Array for African Oil Palm.

Kwong QB, Teh CK, Ong AL, Heng HY, Lee HL, Mohamed M, Low JZ, Apparow S, Chew FT, Mayes S, Kulaveerasingam H, Tammi M, Appleton DR.

Mol Plant. 2016 Aug 1;9(8):1132-1141. doi: 10.1016/j.molp.2016.04.010. Epub 2016 Apr 22.

10.

Genome-wide association study identifies three key loci for high mesocarp oil content in perennial crop oil palm.

Teh CK, Ong AL, Kwong QB, Apparow S, Chew FT, Mayes S, Mohamed M, Appleton D, Kulaveerasingam H.

Sci Rep. 2016 Jan 8;6:19075. doi: 10.1038/srep19075.

11.

Differential abundance analysis of mesocarp protein from high- and low-yielding oil palms associates non-oil biosynthetic enzymes to lipid biosynthesis.

Ooi TE, Yeap WC, Daim LD, Ng BZ, Lee FC, Othman AM, Appleton DR, Chew FT, Kulaveerasingam H.

Proteome Sci. 2015 Nov 26;13:28. doi: 10.1186/s12953-015-0085-2. eCollection 2015.

12.

TRANSPARENT TESTA GLABRA1 Regulates the Accumulation of Seed Storage Reserves in Arabidopsis.

Chen M, Zhang B, Li C, Kulaveerasingam H, Chew FT, Yu H.

Plant Physiol. 2015 Sep;169(1):391-402. doi: 10.1104/pp.15.00943. Epub 2015 Jul 7.

13.

Comparative proteomic analysis of oil palm leaves infected with Ganoderma boninense revealed changes in proteins involved in photosynthesis, carbohydrate metabolism, and immunity and defense.

Jeffery Daim LD, Ooi TE, Ithnin N, Mohd Yusof H, Kulaveerasingam H, Abdul Majid N, Karsani SA.

Electrophoresis. 2015 Aug;36(15):1699-710. doi: 10.1002/elps.201400608. Epub 2015 Jun 17.

PMID:
25930948
14.

Hormones, polyamines, and cell wall metabolism during oil palm fruit mesocarp development and ripening.

Teh HF, Neoh BK, Wong YC, Kwong QB, Ooi TE, Ng TL, Tiong SH, Low JY, Danial AD, Ersad MA, Kulaveerasingam H, Appleton DR.

J Agric Food Chem. 2014 Aug 13;62(32):8143-52. doi: 10.1021/jf500975h. Epub 2014 Aug 5.

PMID:
25032485
15.

Expression Comparison of Oil Biosynthesis Genes in Oil Palm Mesocarp Tissue Using Custom Array.

Wong YC, Kwong QB, Lee HL, Ong CK, Mayes S, Chew FT, Appleton DR, Kulaveerasingam H.

Microarrays (Basel). 2014 Nov 13;3(4):263-81. doi: 10.3390/microarrays3040263.

16.

Proteomic analysis of the oil palm fruit mesocarp reveals elevated oxidative phosphorylation activity is critical for increased storage oil production.

Loei H, Lim J, Tan M, Lim TK, Lin QS, Chew FT, Kulaveerasingam H, Chung MC.

J Proteome Res. 2013 Nov 1;12(11):5096-109. doi: 10.1021/pr400606h. Epub 2013 Oct 7.

PMID:
24083564
17.

Differential metabolite profiles during fruit development in high-yielding oil palm mesocarp.

Teh HF, Neoh BK, Hong MP, Low JY, Ng TL, Ithnin N, Thang YM, Mohamed M, Chew FT, Yusof HM, Kulaveerasingam H, Appleton DR.

PLoS One. 2013 Apr 11;8(4):e61344. doi: 10.1371/journal.pone.0061344. Print 2013.

18.

Profiling of metabolites in oil palm mesocarp at different stages of oil biosynthesis.

Neoh BK, Teh HF, Ng TL, Tiong SH, Thang YM, Ersad MA, Mohamed M, Chew FT, Kulaveerasingam H, Appleton DR.

J Agric Food Chem. 2013 Feb 27;61(8):1920-7. doi: 10.1021/jf304561f. Epub 2013 Feb 18.

PMID:
23384169
19.

EgRBP42 encoding an hnRNP-like RNA-binding protein from Elaeis guineensis Jacq. is responsive to abiotic stresses.

Yeap WC, Ooi TE, Namasivayam P, Kulaveerasingam H, Ho CL.

Plant Cell Rep. 2012 Oct;31(10):1829-43. doi: 10.1007/s00299-012-1297-x. Epub 2012 Jun 15.

PMID:
22699852
20.

Analysis and functional annotation of expressed sequence tags (ESTs) from multiple tissues of oil palm (Elaeis guineensis Jacq.).

Ho CL, Kwan YY, Choi MC, Tee SS, Ng WH, Lim KA, Lee YP, Ooi SE, Lee WW, Tee JM, Tan SH, Kulaveerasingam H, Alwee SS, Abdullah MO.

BMC Genomics. 2007 Oct 22;8:381.

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