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玉米RAD51在减数分裂和双链断裂修复中的功能分析

Functional analysis of maize RAD51 in meiosis and double-strand break repair.

作者信息

Li Jin, Harper Lisa C, Golubovskaya Inna, Wang C Rachel, Weber David, Meeley Robert B, McElver John, Bowen Ben, Cande W Zacheus, Schnable Patrick S

机构信息

Department of Genetics, Development and Cell Biology, Iowa State Unversity, Ames, Iowa 50011, USA.

出版信息

Genetics. 2007 Jul;176(3):1469-82. doi: 10.1534/genetics.106.062604. Epub 2007 May 16.

Abstract

In Saccharomyces cerevisiae, Rad51p plays a central role in homologous recombination and the repair of double-strand breaks (DSBs). Double mutants of the two Zea mays L. (maize) rad51 homologs are viable and develop well under normal conditions, but are male sterile and have substantially reduced seed set. Light microscopic analyses of male meiosis in these plants reveal reduced homologous pairing, synapsis of nonhomologous chromosomes, reduced bivalents at diakinesis, numerous chromosome breaks at anaphase I, and that >33% of quartets carry cells that either lack an organized nucleolus or have two nucleoli. This indicates that RAD51 is required for efficient chromosome pairing and its absence results in nonhomologous pairing and synapsis. These phenotypes differ from those of an Arabidopsis rad51 mutant that exhibits completely disrupted chromosome pairing and synapsis during meiosis. Unexpectedly, surviving female gametes produced by maize rad51 double mutants are euploid and exhibit near-normal rates of meiotic crossovers. The finding that maize rad51 double mutant embryos are extremely susceptible to radiation-induced DSBs demonstrates a conserved role for RAD51 in the repair of mitotic DSBs in plants, vertebrates, and yeast.

摘要

在酿酒酵母中,Rad51p在同源重组和双链断裂(DSB)修复中起核心作用。玉米(Zea mays L.)的两个rad51同源基因的双突变体是可存活的,并且在正常条件下发育良好,但雄性不育且结实率大幅降低。对这些植物雄性减数分裂的光学显微镜分析显示同源配对减少、非同源染色体联会、终变期二价体减少、后期I出现大量染色体断裂,并且超过33%的四分体携带的细胞要么没有组织化的核仁,要么有两个核仁。这表明RAD51是高效染色体配对所必需的,其缺失会导致非同源配对和联会。这些表型与拟南芥rad51突变体不同,后者在减数分裂过程中表现出完全破坏的染色体配对和联会。出乎意料的是,玉米rad51双突变体产生的存活雌配子是整倍体,并且减数分裂交叉率接近正常。玉米rad51双突变体胚胎极易受到辐射诱导的DSB影响这一发现表明RAD51在植物、脊椎动物和酵母的有丝分裂DSB修复中具有保守作用。

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