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Fuelling genetic and metabolic exploration of C 3 bioenergy crops through the first reference transcriptome of Arundo donax L.

机译:通过Arundo donax L的第一个参考转录组促进C 3生物能源作物的遗传和代谢探索。

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The development of inexpensive and highly productive biomass sources of biofuel is a priority in global climate change biology. Arundo donax , also known as the giant reed, is recognized as one of the most promising nonfood bioenergy crops in Europe. Despite its relevance, to date no genomic resources are available to support the characterization of the developmental, adaptive and metabolic traits underlying the high productivity of this nonmodel species. We hereby present the first report on the de novo assembly of bud, culm, leaf and root transcriptomes of A.????donax , which can be accessed through a customized BLAST server ( http://ecogenomics.fmach.it/arundo/ ) for mining and exploring the genetic potential of this species. Based on functional annotation and homology comparison to 19 prospective biofuel Poaceae species, we provide the first genomic view of this so far unexplored crop and indicate the model species with highest potential for comparative genomics approaches. The analysis of the transcriptome reveals strong differences in the enrichment of the Gene Ontology categories and the relative expression among different organs, which can guide future efforts for functional genomics or genetic improvement of A.????donax . A set of homologs to key genes involved in lignin, cellulose, starch, lipid metabolism and in the domestication of other crops is discussed to provide a platform for possible enhancement of productivity and saccharification efficiency in A.????donax .
机译:廉价和高生产率的生物燃料生物质资源的开发是全球气候变化生物学的优先事项。 Arundo donax,也被称为巨型芦苇,被公认为是欧洲最有前途的非粮食生物能源作物之一。尽管具有相关性,但迄今为止,尚无基因组资源可用来支持表征该非模型物种高生产力的发育,适应性和代谢性状。我们在此提供有关A.donax芽,茎,叶和根转录组的从头组装的第一份报告,该报告可通过定制的BLAST服务器进行访问(http://ecogenomics.fmach.it/arundo /),以挖掘和探索该物种的遗传潜力。基于对19种潜在生物燃料禾本科植物的功能注释和同源性比较,我们提供了该迄今未开发农作物的第一个基因组视图,并指出了具有比较基因组学方法潜力的模型物种。转录组的分析揭示了基因本体论类别的富集和不同器官之间相对表达的强烈差异,这可以指导未来对A.donax的功能基因组学或遗传改良的努力。讨论了一组与木质素,纤维素,淀粉,脂质代谢和其他农作物的驯化有关的关键基因的同源物,以提供一个可能提高A.donax生产力和糖化效率的平台。

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