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S5 是一个主要的生殖隔离调控因子,在栽培稻 Oryza sativa 及其野生近缘种中的复杂进化。

Complex evolution of S5, a major reproductive barrier regulator, in the cultivated rice Oryza sativa and its wild relatives.

机构信息

National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research (Wuhan), Huazhong Agricultural University, Wuhan 430070, China.

出版信息

New Phytol. 2011 Jul;191(1):275-287. doi: 10.1111/j.1469-8137.2011.03691.x. Epub 2011 Mar 28.

Abstract

• The hybrid sterility gene S5 comprises three types of alleles in cultivated rice. Such tri-allelic system provided a unique opportunity to study the molecular bases of evolutionary changes underlying reproductive isolation in plants. • We analysed the sequence diversity and evolutionary history of S5 in 138 Oryza accessions. We also examined the effect of the two functional variations (C819A and C1412T) in determining hybrid sterility by transformation. • Nineteen haplotypes were identified, which were classified into the indica-like, the japonica-like and the wide-compatibility gene (WCG)-like group, according to the sequence features of the tri-allelic system. The origin and evolutionary course of the three allelic groups were investigated, thus confirming the independent origins of indica and japonica subspecies. There were perfect associations between C819A and C1412T in the rice germplasm assayed, and the combination of C819 and C1412 was required for hybrid sterility. Evidence of positive selection in the WCG-like alleles suggested that they might have been favored by selection for higher compatibility in hybrids. • The complex evolution of S5 revealed the counteractive function of the three allelic groups at the species level. S5 might perform an important primary function in an evolutionary scale, and hybrid sterility acts as a 'byproduct' of this speciation gene.

摘要

• 杂种不育基因 S5 在栽培稻中包含三种类型的等位基因。这种三等位基因系统为研究植物生殖隔离的进化变化的分子基础提供了独特的机会。• 我们分析了 138 个稻属品种中 S5 的序列多样性和进化历史。我们还通过转化检验了两个功能变异(C819A 和 C1412T)在决定杂种不育中的作用。• 鉴定出 19 种单倍型,根据三等位基因系统的序列特征将其分为籼稻型、粳稻型和广亲和基因(WCG)型。研究了三个等位基因群的起源和进化过程,从而证实了籼稻和粳稻亚种的独立起源。在所检测的水稻种质中,C819A 和 C1412T 之间存在完美的关联,而杂种不育需要 C819 和 C1412 的组合。WCG 型等位基因中存在正选择的证据表明,它们可能是由于杂种更高的亲和性而受到选择的青睐。• S5 的复杂进化揭示了三个等位基因群在物种水平上的拮抗作用。S5 可能在进化尺度上具有重要的原始功能,而杂种不育则是该物种形成基因的“副产品”。

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