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一对同源ClpP5基因是玉米中一个类淡绿黄色突变体及其修饰基因的基础。

A pair of homoeolog ClpP5 genes underlies a virescent yellow-like mutant and its modifier in maize.

作者信息

Xing Anqi, Williams Mark E, Bourett Timothy M, Hu Wangnan, Hou Zhenglin, Meeley Robert B, Jaqueth Jennifer, Dam Thao, Li Bailin

机构信息

National Maize Improvement Center, China Agricultural University, 2 West Yuanmingyuan Rd., Beijing, 100094, China; DuPont Pioneer, 200 Powder Mill Road, Wilmington, DE, 19880, USA.

出版信息

Plant J. 2014 Jul;79(2):192-205. doi: 10.1111/tpj.12568. Epub 2014 Jun 23.

Abstract

Gene-background interaction is a commonly observed phenomenon in many species, but the molecular mechanisms of such an interaction is less well understood. Here we report the cloning of a maize mutant gene and its modifier. A recessive mutant with a virescent yellow-like (vyl) phenotype was identified in an ethyl methanesulfonate-mutagenized population derived from the maize inbred line B73. Homozygous mutant maize plants exhibited a yellow leaf phenotype after emergence but gradually recovered and became indistinguishable from wild-type plants after approximately 2 weeks. Taking the positional cloning approach, the Chr.9_ClpP5 gene, one of the proteolytic subunits of the chloroplast Clp protease complex, was identified and validated as the candidate gene for vyl. When introgressed by backcross into the maize inbred line PH09B, the mutant phenotype of vyl lasted much longer in the greenhouse and was lethal in the field, implying the presence of a modifier(s) for vyl. A major modifier locus was identified on chromosome 1, and a paralogous ClpP5 gene was isolated and confirmed as the candidate for the vyl-modifier. Expression of Chr.1_ClpP5 is induced significantly in B73 by the vyl mutation, while the expression of Chr.1_ClpP5 in PH09B is not responsive to the vyl mutation. Moreover, expression and sequence analysis suggests that the PH09B Chr.1_ClpP5 allele is functionally weaker than the B73 allele. We propose that functional redundancy between duplicated paralogous genes is the molecular mechanism for the interaction between vyl and its modifier.

摘要

基因-背景相互作用是许多物种中常见的现象,但其相互作用的分子机制尚不清楚。在此,我们报告了一个玉米突变基因及其修饰基因的克隆。在由玉米自交系B73诱变产生的甲基磺酸乙酯诱变群体中,鉴定出一个具有类黄绿(vyl)表型的隐性突变体。纯合突变玉米植株出苗后表现出黄叶表型,但逐渐恢复,约2周后与野生型植株无异。采用图位克隆方法,鉴定并验证了叶绿体Clp蛋白酶复合体的蛋白水解亚基之一Chr.9_ClpP5基因是vyl的候选基因。当通过回交导入玉米自交系PH09B时,vyl的突变表型在温室中持续时间更长,在田间则是致死的,这意味着存在vyl的修饰基因。在1号染色体上鉴定出一个主要修饰位点,并分离出一个同源ClpP5基因,确认其为vyl修饰基因的候选基因。vyl突变显著诱导了B73中Chr.1_ClpP5的表达,而PH09B中Chr.1_ClpP5的表达对vyl突变无反应。此外,表达和序列分析表明,PH09B的Chr.1_ClpP5等位基因在功能上比B73等位基因弱。我们认为,重复同源基因之间的功能冗余是vyl与其修饰基因相互作用的分子机制。

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