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甘蓝和白菜中S位点基因SRK、SLG和SP11/SCR的协同进化

Coevolution of the S-locus genes SRK, SLG and SP11/SCR in Brassica oleracea and B. rapa.

作者信息

Sato Keiichi, Nishio Takeshi, Kimura Ryo, Kusaba Makoto, Suzuki Tohru, Hatakeyama Katsunori, Ockendon David J, Satta Yoko

机构信息

Graduate School of Agricultural Science, Tohoku University, Sendai 981-8555, Japan.

出版信息

Genetics. 2002 Oct;162(2):931-40. doi: 10.1093/genetics/162.2.931.

Abstract

Brassica self-incompatibility (SI) is controlled by SLG and SRK expressed in the stigma and by SP11/SCR expressed in the anther. We determined the sequences of the S domains of 36 SRK alleles, 13 SLG alleles, and 14 SP11 alleles from Brassica oleracea and B. rapa. We found three S haplotypes lacking SLG genes in B. rapa, confirming that SLG is not essential for the SI recognition system. Together with reported sequences, the nucleotide diversities per synonymous and nonsynonymous site (pi(S) and pi(N)) at the SRK, SLG, and SP11 loci within B. oleracea were computed. The ratios of pi(N):pi(S) for SP11 and the hypervariable region of SRK were significantly >1, suggesting operation of diversifying selection to maintain the diversity of these regions. In the phylogenetic trees of 12 SP11 sequences and their linked SRK alleles, the tree topology was not significantly different between SP11 and SRK, suggesting a tight linkage of male and female SI determinants during the evolutionary course of these haplotypes. Genetic exchanges between SLG and SRK seem to be frequent; three such recent exchanges were detected. The evolution of S haplotypes and the effect of gene conversion on self-incompatibility are discussed.

摘要

甘蓝型油菜的自交不亲和性(SI)由柱头中表达的SLG和SRK以及花药中表达的SP11/SCR控制。我们测定了来自甘蓝和白菜的36个SRK等位基因、13个SLG等位基因和14个SP11等位基因的S结构域序列。我们在白菜中发现了三种缺乏SLG基因的S单倍型,证实了SLG对于SI识别系统并非必不可少。结合已报道的序列,计算了甘蓝中SRK、SLG和SP11基因座每个同义位点和非同义位点的核苷酸多样性(pi(S)和pi(N))。SP11以及SRK高变区的pi(N):pi(S)比值显著大于1,表明存在多样化选择以维持这些区域的多样性。在12个SP11序列及其连锁的SRK等位基因的系统发育树中,SP11和SRK之间的树拓扑结构没有显著差异,表明在这些单倍型的进化过程中,雄性和雌性SI决定因子紧密连锁。SLG和SRK之间的基因交换似乎很频繁;检测到了三次近期的此类交换。讨论了S单倍型的进化以及基因转换对自交不亲和性的影响。

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