Mining the bitter melon (<it>momordica charantia </it>l.) seed transcriptome by 454 analysis of non-normalized and normalized cDNA populations for conjugated fatty acid metabolism-related genes

<p>Abstract</p> <p>Background</p> <p>Seeds of <it>Momordica charantia </it>(bitter melon) produce high levels of eleostearic acid, an unusual conjugated fatty acid with industrial value. Deep sequencing of non-normalized and normalized cDNAs from developing...

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Main Authors: Shipp Matthew J, Li Xiangjun, Yang Peizhen, Shockey Jay M, Cahoon Edgar B
Format: Article
Language:English
Published: BMC 2010-11-01
Series:BMC Plant Biology
Online Access:http://www.biomedcentral.com/1471-2229/10/250
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spelling doaj-76f9209e0aad4bae94d252826d20728d2020-11-25T01:58:30ZengBMCBMC Plant Biology1471-22292010-11-0110125010.1186/1471-2229-10-250Mining the bitter melon (<it>momordica charantia </it>l.) seed transcriptome by 454 analysis of non-normalized and normalized cDNA populations for conjugated fatty acid metabolism-related genesShipp Matthew JLi XiangjunYang PeizhenShockey Jay MCahoon Edgar B<p>Abstract</p> <p>Background</p> <p>Seeds of <it>Momordica charantia </it>(bitter melon) produce high levels of eleostearic acid, an unusual conjugated fatty acid with industrial value. Deep sequencing of non-normalized and normalized cDNAs from developing bitter melon seeds was conducted to uncover key genes required for biotechnological transfer of conjugated fatty acid production to existing oilseed crops. It is expected that these studies will also provide basic information regarding the metabolism of other high-value novel fatty acids.</p> <p>Results</p> <p>Deep sequencing using 454 technology with non-normalized and normalized cDNA libraries prepared from bitter melon seeds at 18 DAP resulted in the identification of transcripts for the vast majority of known genes involved in fatty acid and triacylglycerol biosynthesis. The non-normalized library provided a transcriptome profile of the early stage in seed development that highlighted the abundance of transcripts for genes encoding seed storage proteins as well as for a number of genes for lipid metabolism-associated polypeptides, including Δ12 oleic acid desaturases and fatty acid conjugases, class 3 lipases, acyl-carrier protein, and acyl-CoA binding protein. Normalization of cDNA by use of a duplex-specific nuclease method not only increased the overall discovery of genes from developing bitter melon seeds, but also resulted in the identification of 345 contigs with homology to 189 known lipid genes in Arabidopsis. These included candidate genes for eleostearic acid metabolism such as diacylglycerol acyltransferase 1 and 2, and a phospholipid:diacylglycerol acyltransferase 1-related enzyme. Transcripts were also identified for a novel <it>FAD2 </it>gene encoding a functional Δ12 oleic acid desaturase with potential implications for eleostearic acid biosynthesis.</p> <p>Conclusions</p> <p>454 deep sequencing, particularly with normalized cDNA populations, was an effective method for mining of genes associated with eleostearic acid metabolism in developing bitter melon seeds. The transcriptomic data presented provide a resource for the study of novel fatty acid metabolism and for the biotechnological production of conjugated fatty acids and possibly other novel fatty acids in established oilseed crops.</p> http://www.biomedcentral.com/1471-2229/10/250
collection DOAJ
language English
format Article
sources DOAJ
author Shipp Matthew J
Li Xiangjun
Yang Peizhen
Shockey Jay M
Cahoon Edgar B
spellingShingle Shipp Matthew J
Li Xiangjun
Yang Peizhen
Shockey Jay M
Cahoon Edgar B
Mining the bitter melon (<it>momordica charantia </it>l.) seed transcriptome by 454 analysis of non-normalized and normalized cDNA populations for conjugated fatty acid metabolism-related genes
BMC Plant Biology
author_facet Shipp Matthew J
Li Xiangjun
Yang Peizhen
Shockey Jay M
Cahoon Edgar B
author_sort Shipp Matthew J
title Mining the bitter melon (<it>momordica charantia </it>l.) seed transcriptome by 454 analysis of non-normalized and normalized cDNA populations for conjugated fatty acid metabolism-related genes
title_short Mining the bitter melon (<it>momordica charantia </it>l.) seed transcriptome by 454 analysis of non-normalized and normalized cDNA populations for conjugated fatty acid metabolism-related genes
title_full Mining the bitter melon (<it>momordica charantia </it>l.) seed transcriptome by 454 analysis of non-normalized and normalized cDNA populations for conjugated fatty acid metabolism-related genes
title_fullStr Mining the bitter melon (<it>momordica charantia </it>l.) seed transcriptome by 454 analysis of non-normalized and normalized cDNA populations for conjugated fatty acid metabolism-related genes
title_full_unstemmed Mining the bitter melon (<it>momordica charantia </it>l.) seed transcriptome by 454 analysis of non-normalized and normalized cDNA populations for conjugated fatty acid metabolism-related genes
title_sort mining the bitter melon (<it>momordica charantia </it>l.) seed transcriptome by 454 analysis of non-normalized and normalized cdna populations for conjugated fatty acid metabolism-related genes
publisher BMC
series BMC Plant Biology
issn 1471-2229
publishDate 2010-11-01
description <p>Abstract</p> <p>Background</p> <p>Seeds of <it>Momordica charantia </it>(bitter melon) produce high levels of eleostearic acid, an unusual conjugated fatty acid with industrial value. Deep sequencing of non-normalized and normalized cDNAs from developing bitter melon seeds was conducted to uncover key genes required for biotechnological transfer of conjugated fatty acid production to existing oilseed crops. It is expected that these studies will also provide basic information regarding the metabolism of other high-value novel fatty acids.</p> <p>Results</p> <p>Deep sequencing using 454 technology with non-normalized and normalized cDNA libraries prepared from bitter melon seeds at 18 DAP resulted in the identification of transcripts for the vast majority of known genes involved in fatty acid and triacylglycerol biosynthesis. The non-normalized library provided a transcriptome profile of the early stage in seed development that highlighted the abundance of transcripts for genes encoding seed storage proteins as well as for a number of genes for lipid metabolism-associated polypeptides, including Δ12 oleic acid desaturases and fatty acid conjugases, class 3 lipases, acyl-carrier protein, and acyl-CoA binding protein. Normalization of cDNA by use of a duplex-specific nuclease method not only increased the overall discovery of genes from developing bitter melon seeds, but also resulted in the identification of 345 contigs with homology to 189 known lipid genes in Arabidopsis. These included candidate genes for eleostearic acid metabolism such as diacylglycerol acyltransferase 1 and 2, and a phospholipid:diacylglycerol acyltransferase 1-related enzyme. Transcripts were also identified for a novel <it>FAD2 </it>gene encoding a functional Δ12 oleic acid desaturase with potential implications for eleostearic acid biosynthesis.</p> <p>Conclusions</p> <p>454 deep sequencing, particularly with normalized cDNA populations, was an effective method for mining of genes associated with eleostearic acid metabolism in developing bitter melon seeds. The transcriptomic data presented provide a resource for the study of novel fatty acid metabolism and for the biotechnological production of conjugated fatty acids and possibly other novel fatty acids in established oilseed crops.</p>
url http://www.biomedcentral.com/1471-2229/10/250
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