Global analysis of gene expression profiles in developing physic nut (Jatropha curcas L.) seeds

Physic nut (Jatropha curcas L.) is an oilseed plant species with high potential utility as a biofuel. Furthermore, following recent sequencing of its genome and the availability of expressed sequence tag (EST) libraries, it is a valuable model plant for studying carbon assimilation in endosperms of...

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Veröffentlicht in:PloS one 2012-05, Vol.7 (5), p.e36522-e36522
Hauptverfasser: Jiang, Huawu, Wu, Pingzhi, Zhang, Sheng, Song, Chi, Chen, Yaping, Li, Meiru, Jia, Yongxia, Fang, Xiaohua, Chen, Fan, Wu, Guojiang
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container_title PloS one
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creator Jiang, Huawu
Wu, Pingzhi
Zhang, Sheng
Song, Chi
Chen, Yaping
Li, Meiru
Jia, Yongxia
Fang, Xiaohua
Chen, Fan
Wu, Guojiang
description Physic nut (Jatropha curcas L.) is an oilseed plant species with high potential utility as a biofuel. Furthermore, following recent sequencing of its genome and the availability of expressed sequence tag (EST) libraries, it is a valuable model plant for studying carbon assimilation in endosperms of oilseed plants. There have been several transcriptomic analyses of developing physic nut seeds using ESTs, but they have provided limited information on the accumulation of stored resources in the seeds. We applied next-generation Illumina sequencing technology to analyze global gene expression profiles of developing physic nut seeds 14, 19, 25, 29, 35, 41, and 45 days after pollination (DAP). The acquired profiles reveal the key genes, and their expression timeframes, involved in major metabolic processes including: carbon flow, starch metabolism, and synthesis of storage lipids and proteins in the developing seeds. The main period of storage reserves synthesis in the seeds appears to be 29-41 DAP, and the fatty acid composition of the developing seeds is consistent with relative expression levels of different isoforms of acyl-ACP thioesterase and fatty acid desaturase genes. Several transcription factor genes whose expression coincides with storage reserve deposition correspond to those known to regulate the process in Arabidopsis. The results will facilitate searches for genes that influence de novo lipid synthesis, accumulation and their regulatory networks in developing physic nut seeds, and other oil seeds. Thus, they will be helpful in attempts to modify these plants for efficient biofuel production.
doi_str_mv 10.1371/journal.pone.0036522
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Furthermore, following recent sequencing of its genome and the availability of expressed sequence tag (EST) libraries, it is a valuable model plant for studying carbon assimilation in endosperms of oilseed plants. There have been several transcriptomic analyses of developing physic nut seeds using ESTs, but they have provided limited information on the accumulation of stored resources in the seeds. We applied next-generation Illumina sequencing technology to analyze global gene expression profiles of developing physic nut seeds 14, 19, 25, 29, 35, 41, and 45 days after pollination (DAP). The acquired profiles reveal the key genes, and their expression timeframes, involved in major metabolic processes including: carbon flow, starch metabolism, and synthesis of storage lipids and proteins in the developing seeds. The main period of storage reserves synthesis in the seeds appears to be 29-41 DAP, and the fatty acid composition of the developing seeds is consistent with relative expression levels of different isoforms of acyl-ACP thioesterase and fatty acid desaturase genes. Several transcription factor genes whose expression coincides with storage reserve deposition correspond to those known to regulate the process in Arabidopsis. The results will facilitate searches for genes that influence de novo lipid synthesis, accumulation and their regulatory networks in developing physic nut seeds, and other oil seeds. Thus, they will be helpful in attempts to modify these plants for efficient biofuel production.</abstract><cop>United States</cop><pub>Public Library of Science</pub><pmid>22574177</pmid><doi>10.1371/journal.pone.0036522</doi><oa>free_for_read</oa></addata></record>
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subjects Accumulation
Agriculture
Analysis
Arabidopsis
Arabidopsis thaliana
Biofuels
Biology
Biomass
Biomass energy
Breakdowns
Carbohydrate metabolism
Carbohydrates
Carbon
Desaturase
Developmental biology
DNA sequencing
Endosperm
Enzymes
Expressed sequence tags
Expressed Sequence Tags - metabolism
Fatty acid composition
Fatty acids
Fatty Acids - biosynthesis
Fuels
Gene expression
Gene Expression Profiling
Gene sequencing
Genes
Genes, Plant - genetics
Genetic research
Genomes
Genomics
Isoforms
Jatropha - genetics
Jatropha - growth & development
Jatropha - metabolism
Jatropha curcas
Laboratories
Lipid metabolism
Lipids
Metabolism
Nucleotide sequence
Nuts (Food)
Oil
Phosphates - metabolism
Plants (botany)
Pollination
Proteins
Seeds
Seeds - genetics
Seeds - growth & development
Seeds - metabolism
Sequence Analysis
Starch
Starch - metabolism
Storage
Sucrose - metabolism
Synthesis
Technology assessment
Thioesterase
Transcription (Genetics)
Transcription factors
Transcription Factors - metabolism
title Global analysis of gene expression profiles in developing physic nut (Jatropha curcas L.) seeds
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