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通过整合基因组学、代谢组学和信息学对植物基因功能进行注释。

Annotation of plant gene function via combined genomics, metabolomics and informatics.

作者信息

Tohge Takayuki, Fernie Alisdair R

机构信息

Molekulare Pflanzenphysiologie, Max-Planck-Institut.

出版信息

J Vis Exp. 2012 Jun 17(64):e3487. doi: 10.3791/3487.

Abstract

Given the ever expanding number of model plant species for which complete genome sequences are available and the abundance of bio-resources such as knockout mutants, wild accessions and advanced breeding populations, there is a rising burden for gene functional annotation. In this protocol, annotation of plant gene function using combined co-expression gene analysis, metabolomics and informatics is provided (Figure 1). This approach is based on the theory of using target genes of known function to allow the identification of non-annotated genes likely to be involved in a certain metabolic process, with the identification of target compounds via metabolomics. Strategies are put forward for applying this information on populations generated by both forward and reverse genetics approaches in spite of none of these are effortless. By corollary this approach can also be used as an approach to characterise unknown peaks representing new or specific secondary metabolites in the limited tissues, plant species or stress treatment, which is currently the important trial to understanding plant metabolism.

摘要

鉴于可获取完整基因组序列的模式植物物种数量不断增加,以及基因敲除突变体、野生种质和先进育种群体等生物资源丰富,基因功能注释的负担日益加重。本方案提供了利用共表达基因分析、代谢组学和信息学相结合的方法对植物基因功能进行注释(图1)。该方法基于这样的理论,即利用已知功能的靶基因来鉴定可能参与特定代谢过程的未注释基因,并通过代谢组学鉴定靶化合物。尽管这些策略实施起来都并非易事,但还是针对正向和反向遗传学方法产生的群体应用这些信息提出了策略。由此类推,该方法也可用于表征在有限的组织、植物物种或胁迫处理中代表新的或特定次生代谢物的未知峰,这是目前理解植物代谢的重要尝试。

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