Please use this identifier to cite or link to this item: https://doi.org/10.1186/s12864-017-3855-7
Title: Differential gene expression at different stages of mesocarp development in high- and low-yielding oil palm
Authors: Wong, Y.C
Teh, H.F
Mebus, K
Ooi, T.E.K
Kwong, Q.B
Koo, K.L
Ong, C.K
Mayes, S
Chew, F.T 
Appleton, D.R
Kulaveerasingam, H
Keywords: 3 oxoacyl acyl carrier protein reductase
3 oxoacyl acyl carrier protein synthase
3 oxoacyl acyl carrier protein synthase 1
3 oxoacyl acyl carrier protein synthase 3
adenosine triphosphate citrate synthase
beta fructofuranosidase
phosphatase
pyruvate dehydrogenase
sucrose
sucrose phosphatase 2
sucrose synthase
sucrose synthase 2
tricarboxylic acid
unclassified drug
fatty acid
transcription factor
Article
down regulation
Elaeis
fatty acid synthesis
gene
gene control
gene expression
gene ontology
genetic improvement
genetic transcription
glycolysis
microarray analysis
nonhuman
sucrose metabolism
upregulation
Arecaceae
biosynthesis
citric acid cycle
fruit
gene expression profiling
genetics
growth, development and aging
lipid metabolism
Arecaceae
Citric Acid Cycle
Fatty Acids
Fruit
Gene Expression Profiling
Glycolysis
Lipid Metabolism
Transcription Factors
Issue Date: 2017
Citation: Wong, Y.C, Teh, H.F, Mebus, K, Ooi, T.E.K, Kwong, Q.B, Koo, K.L, Ong, C.K, Mayes, S, Chew, F.T, Appleton, D.R, Kulaveerasingam, H (2017). Differential gene expression at different stages of mesocarp development in high- and low-yielding oil palm. BMC Genomics 18 (1) : 470. ScholarBank@NUS Repository. https://doi.org/10.1186/s12864-017-3855-7
Rights: Attribution 4.0 International
Abstract: Background: The oil yield trait of oil palm is expected to involve multiple genes, environmental influences and interactions. Many of the underlying mechanisms that contribute to oil yield are still poorly understood. In this study, we used a microarray approach to study the gene expression profiles of mesocarp tissue at different developmental stages, comparing genetically related high- and low- oil yielding palms to identify genes that contributed to the higher oil-yielding palm and might contribute to the wider genetic improvement of oil palm breeding populations. Results: A total of 3412 (2001 annotated) gene candidates were found to be significantly differentially expressed between high- and low-yielding palms at at least one of the different stages of mesocarp development evaluated. Gene Ontologies (GO) enrichment analysis identified 28 significantly enriched GO terms, including regulation of transcription, fatty acid biosynthesis and metabolic processes. These differentially expressed genes comprise several transcription factors, such as, bHLH, Dof zinc finger proteins and MADS box proteins. Several genes involved in glycolysis, TCA, and fatty acid biosynthesis pathways were also found up-regulated in high-yielding oil palm, among them; pyruvate dehydrogenase E1 component Subunit Beta (PDH), ATP-citrate lyase, β- ketoacyl-ACP synthases I (KAS I), β- ketoacyl-ACP synthases III (KAS III) and ketoacyl-ACP reductase (KAR). Sucrose metabolism-related genes such as Invertase, Sucrose Synthase 2 and Sucrose Phosphatase 2 were found to be down-regulated in high-yielding oil palms, compared to the lower yield palms. Conclusions: Our findings indicate that a higher carbon flux (channeled through down-regulation of the Sucrose Synthase 2 pathway) was being utilized by up-regulated genes involved in glycolysis, TCA and fatty acid biosynthesis leading to enhanced oil production in the high-yielding oil palm. These findings are an important stepping stone to understand the processes that lead to production of high-yielding oil palms and have implications for breeding to maximize oil production. © 2017 The Author(s).
Source Title: BMC Genomics
URI: https://scholarbank.nus.edu.sg/handle/10635/181268
ISSN: 14712164
DOI: 10.1186/s12864-017-3855-7
Rights: Attribution 4.0 International
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