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重组对芸苔属自交不亲和位点复合体中搭便车多样性的影响。

Effects of recombination on hitchhiking diversity in the Brassica self-incompatibility locus complex.

作者信息

Takuno Shohei, Fujimoto Ryo, Sugimura Tetsu, Sato Keiichi, Okamoto Shunsuke, Zhang Shao-Ling, Nishio Takeshi

机构信息

Laboratory of Plant Breeding and Genetics, Graduate School of Agricultural Science, Tohoku University, Sendai, Miyagi 981-8555, Japan.

出版信息

Genetics. 2007 Oct;177(2):949-58. doi: 10.1534/genetics.107.073825. Epub 2007 Aug 24.

Abstract

In self-incompatibility, a number of S haplotypes are maintained by frequency-dependent selection, which results in trans-specific S haplotypes. The region of several kilobases (approximately 40-60 kb) from SP6 to SP2, including self-incompatibility-related genes and some adjacent genes in Brassica rapa, has high nucleotide diversity due to the hitchhiking effect, and therefore we call this region the "S-locus complex." Recombination in the S-locus complex is considered to be suppressed. We sequenced regions of >50 kb of the S-locus complex of three S haplotypes in B. rapa and found higher nucleotide diversity in intergenic regions than in coding regions. Two highly similar regions of >10 kb were found between BrS-8 and BrS-46. Phylogenetic analysis using trans-specific S haplotypes (called interspecific pairs) of B. rapa and B. oleracea suggested that recombination reduced the nucleotide diversity in these two regions and that the genes not involved in self-incompatibility in the S-locus complex and the kinase domain, but not the S domain, of SRK have also experienced recombination. Recombination may reduce hitchhiking diversity in the S-locus complex, whereas the region from the S domain to SP11 would disfavor recombination.

摘要

在自交不亲和性中,一些S单倍型通过频率依赖选择得以维持,这导致了跨物种的S单倍型。在甘蓝型油菜中,从SP6到SP2的几千碱基(约40 - 60 kb)区域,包括自交不亲和相关基因和一些相邻基因,由于搭便车效应具有高核苷酸多样性,因此我们将该区域称为“S位点复合体”。S位点复合体中的重组被认为受到抑制。我们对甘蓝型油菜三个S单倍型的S位点复合体超过50 kb的区域进行了测序,发现基因间区域的核苷酸多样性高于编码区域。在BrS - 8和BrS - 46之间发现了两个超过10 kb的高度相似区域。使用甘蓝型油菜和甘蓝的跨物种S单倍型(称为种间对)进行系统发育分析表明,重组降低了这两个区域的核苷酸多样性,并且S位点复合体中不参与自交不亲和的基因以及SRK的激酶结构域而非S结构域也经历了重组。重组可能会降低S位点复合体中的搭便车多样性,而从S结构域到SP11的区域不利于重组。

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