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从纯化选择和表达谱推断水稻中包装型微型反向重复转座元件的功能作用。

The functional role of pack-MULEs in rice inferred from purifying selection and expression profile.

作者信息

Hanada Kousuke, Vallejo Veronica, Nobuta Kan, Slotkin R Keith, Lisch Damon, Meyers Blake C, Shiu Shin-Han, Jiang Ning

机构信息

Department of Plant Biology, Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

Plant Cell. 2009 Jan;21(1):25-38. doi: 10.1105/tpc.108.063206. Epub 2009 Jan 9.

Abstract

Gene duplication is an important mechanism for evolution of new genes. In plants, a special group of transposable elements, called Pack-MULEs or transduplicates, is able to duplicate and amplify genes or gene fragments on a large scale. Despite the abundance of Pack-MULEs, the functionality of these duplicates is not clear. Here, we present a comprehensive analysis of expression and purifying selection on 2809 Pack-MULEs in rice (Oryza sativa), which are derived from 1501 parental genes. At least 22% of the Pack-MULEs are transcribed, and 28 Pack-MULEs have direct evidence of translation. Chimeric Pack-MULEs, which contain gene fragments from multiple genes, are much more frequently expressed than those derived only from a single gene. In addition, Pack-MULEs are frequently associated with small RNAs. The presence of these small RNAs is associated with a reduction in expression of both the Pack-MULEs and their parental genes. Furthermore, an assessment of the selection pressure on the Pack-MULEs using the ratio of nonsynonymous (Ka) and synonymous (Ks) substitution rates indicates that a considerable number of Pack-MULEs likely have been under selective constraint. The Ka/Ks values of Pack-MULE and parental gene pairs are lower among Pack-MULEs that are expressed in sense orientations. Taken together, our analysis suggests that a significant number of Pack-MULEs are expressed and subjected to purifying selection, and some are associated with small RNAs. Therefore, at least a subset of Pack-MULEs are likely functional and have great potential in regulating gene expression as well as providing novel coding capacities.

摘要

基因复制是新基因进化的重要机制。在植物中,一类特殊的转座元件,称为Pack-MULEs或转重复序列,能够大规模复制和扩增基因或基因片段。尽管Pack-MULEs数量众多,但这些复制产物的功能尚不清楚。在此,我们对水稻(Oryza sativa)中源自1501个亲本基因的2809个Pack-MULEs进行了表达和纯化选择的综合分析。至少22%的Pack-MULEs被转录,28个Pack-MULEs有直接的翻译证据。包含多个基因片段的嵌合Pack-MULEs比仅源自单个基因的那些更频繁地表达。此外,Pack-MULEs经常与小RNA相关联。这些小RNA的存在与Pack-MULEs及其亲本基因的表达降低有关。此外,使用非同义(Ka)和同义(Ks)替换率的比率对Pack-MULEs的选择压力进行评估表明,相当数量的Pack-MULEs可能受到了选择约束。在以正义方向表达的Pack-MULEs中,Pack-MULE与亲本基因对的Ka/Ks值较低。综上所述,我们的分析表明,大量的Pack-MULEs被表达并受到纯化选择,并且一些与小RNA相关联。因此,至少一部分Pack-MULEs可能具有功能,并且在调节基因表达以及提供新的编码能力方面具有巨大潜力。

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