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复制因子C1(RFC1)是拟南芥减数分裂同源重组过程中双链断裂修复所必需的。

Replication factor C1 (RFC1) is required for double-strand break repair during meiotic homologous recombination in Arabidopsis.

作者信息

Liu Yang, Deng Yingtian, Li Gang, Zhao Jie

机构信息

State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan, 430072, China.

出版信息

Plant J. 2013 Jan;73(1):154-65. doi: 10.1111/tpj.12024. Epub 2012 Nov 8.

Abstract

Replication factor C1 (RFC1), which is conserved in eukaryotes, is involved in DNA replication and checkpoint control. However, a RFC1 product participating in DNA repair at meiosis has not been reported in Arabidopsis. Here, we report functional characterization of AtRFC1 through analysis of the rfc1-2 mutant. The rfc1-2 mutant displayed normal vegetative growth but showed silique sterility because the male gametophyte was arrested at the uninucleus microspore stage and the female at the functional megaspore stage. Expression of AtRFC1 was concentrated in the reproductive organ primordia, meiocytes and developing gametes. Chromosome spreads showed that pairing and synapsis were normal, and the chromosomes were broken when desynapsis began at late prophase I, and chromosome fragments remained in the subsequent stages. For this reason, homologous chromosomes and sister chromatids segregated unequally, leading to pollen sterility. Immunolocalization revealed that the AtRFC1 protein localized to the chromosomes during zygotene and pachytene in wild-type but were absent in the spo11-1 mutant. The chromosome fragmentation of rfc1-2 was suppressed by spo11-1, indicating that AtRFC1 acted downstream of AtSPO11-1. The similar chromosome behavior of rad51 rfc1-2 and rad51 suggests that AtRFC1 may act with AtRAD51 in the same pathway. In summary, AtRFC1 is required for DNA double-strand break repair during meiotic homologous recombination of Arabidopsis.

摘要

复制因子C1(RFC1)在真核生物中保守,参与DNA复制和检查点控制。然而,拟南芥中尚未报道有参与减数分裂DNA修复的RFC1产物。在此,我们通过对rfc1 - 2突变体的分析报道了AtRFC1的功能特征。rfc1 - 2突变体营养生长正常,但表现出角果不育,因为雄配子体在单核小孢子阶段停滞,雌配子体在功能大孢子阶段停滞。AtRFC1的表达集中在生殖器官原基、减数分裂细胞和发育中的配子中。染色体铺展显示配对和联会正常,在前期I后期开始解联会时染色体断裂,染色体片段在随后阶段保留。因此,同源染色体和姐妹染色单体分离不均等,导致花粉不育。免疫定位显示,AtRFC1蛋白在野生型的偶线期和粗线期定位于染色体,但在spo11 - 1突变体中不存在。spo11 - 1抑制了rfc1 - 2的染色体片段化,表明AtRFC1在AtSPO11 - 1下游起作用。rad51 rfc1 - 2和rad51的染色体行为相似,表明AtRFC1可能与AtRAD51在同一途径中起作用。总之,AtRFC1是拟南芥减数分裂同源重组过程中DNA双链断裂修复所必需的。

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