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首页> 外文期刊>BMC Genomics >Gene discovery from Jatropha curcas by sequencing of ESTs from normalized and full-length enriched cDNA library from developing seeds
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Gene discovery from Jatropha curcas by sequencing of ESTs from normalized and full-length enriched cDNA library from developing seeds

机译:通过从发育中的种子标准化和全长富集的cDNA文库对EST进行测序,从麻疯树中发现基因

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Background Jatropha curcas L. is promoted as an important non-edible biodiesel crop worldwide. Jatropha oil, which is a triacylglycerol, can be directly blended with petro-diesel or transesterified with methanol and used as biodiesel. Genetic improvement in jatropha is needed to increase the seed yield, oil content, drought and pest resistance, and to modify oil composition so that it becomes a technically and economically preferred source for biodiesel production. However, genetic improvement efforts in jatropha could not take advantage of genetic engineering methods due to lack of cloned genes from this species. To overcome this hurdle, the current gene discovery project was initiated with an objective of isolating as many functional genes as possible from J. curcas by large scale sequencing of expressed sequence tags (ESTs). Results A normalized and full-length enriched cDNA library was constructed from developing seeds of J. curcas. The cDNA library contained about 1 × 106 clones and average insert size of the clones was 2.1 kb. Totally 12,084 ESTs were sequenced to average high quality read length of 576 bp. Contig analysis revealed 2258 contigs and 4751 singletons. Contig size ranged from 2-23 and there were 7333 ESTs in the contigs. This resulted in 7009 unigenes which were annotated by BLASTX. It showed 3982 unigenes with significant similarity to known genes and 2836 unigenes with significant similarity to genes of unknown, hypothetical and putative proteins. The remaining 191 unigenes which did not show similarity with any genes in the public database may encode for unique genes. Functional classification revealed unigenes related to broad range of cellular, molecular and biological functions. Among the 7009 unigenes, 6233 unigenes were identified to be potential full-length genes. Conclusions The high quality normalized cDNA library was constructed from developing seeds of J. curcas for the first time and 7009 unigenes coding for diverse biological functions including oil biosynthesis were identified. These genes will serve as invaluable genetic resource for crop improvement in jatropha to make it an ideal and profitable crop for biodiesel production.
机译:背景技术麻风树麻疯树在世界范围内被推广为重要的非食用生物柴油作物。麻风树油(一种三酰基甘油)可以直接与石油柴油混合,也可以与甲醇进行酯交换,用作生物柴油。麻疯树的遗传改良需要增加种子产量,含油量,抗旱性和抗害虫性,并改变油的成分,从而使其成为生物柴油生产的技术和经济上优选的来源。但是,由于缺乏从该物种克隆的基因,麻疯树的遗传改良工作无法利用基因工程方法。为了克服这一障碍,当前的基因发现计划旨在通过对表达的序列标签(EST)进行大规模测序,从麻疯树中分离出尽可能多的功能基因。结果从发展的麻疯树种子构建了一个标准化的,全长富集的cDNA文库。 cDNA文库包含约1×10 6 克隆,克隆的平均插入大小为2.1 kb。总共对12,084个EST进行了测序,平均高质量读段长度为576 bp。重叠群分析显示2258个重叠群和4751个单例。重叠群的大小在2-23之间,并且重叠群中有7333个EST。这导致7009个单基因被BLASTX注释。它显示了3982个与已知基因具有显着相似性的单基因和2836个与未知,假设性和推定蛋白质的基因具有显着相似性的单基因。其余191个与公共数据库中的任何基因均未显示相似性的单基因可能编码独特的基因。功能分类揭示了与广泛的细胞,分子和生物学功能有关的单基因。在7009个单基因中,有6233个单基因被鉴定为潜在的全长基因。结论首次从麻疯树的种子中构建了高质量的标准化cDNA文库,并鉴定出7009个编码多种生物功能(包括石油生物合成)的unigenes。这些基因将成为麻疯树作物改良的宝贵遗传资源,使其成为生产生物柴油的理想且有利可图的作物。

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