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Natural selection for polymorphism in the disease resistance gene Rps2 of Arabidopsis thaliana.

机译:拟南芥抗病基因Rps2中多态性的自然选择。

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摘要

Pathogen resistance is an ecologically important phenotype increasingly well understood at the molecular genetic level. In this article, we examine levels of avrRpt2-dependent resistance and Rps2 locus DNA sequence variability in a worldwide sample of 27 accessions of Arabidopsis thaliana. The rooted parsimony tree of Rps2 sequences drawn from a diverse set of ecotypes includes a deep bifurcation separating major resistance and susceptibility clades of alleles. We find evidence for selection maintaining these alleles and identify the N-terminal part of the leucine-rich repeat region as a probable target of selection. Additional protein variants are found within the two major clades and correlate well with measurable differences among ecotypes in resistance to the avirulence gene avrRpt2 of the pathogen Pseudomonas syringae. Long-lived polymorphisms have been observed for other resistance genes of A. thaliana; the Rps2 data suggest that the long-term maintenance of phenotypic variation in resistance genes may be a general phenomenon and are consistent with diversifying selection acting in concert with selection to maintain variation.
机译:病原体抗性是一种在分子遗传学水平上日益为人所理解的重要生态表型。在本文中,我们检查了拟南芥27种材料的全球样本中avrRpt2依赖性抗药性水平和Rps2基因座DNA序列变异性。从多种生态类型中提取的Rps2序列的有根简约树包括一个深分叉,将主要抗性和等位基因进化枝分开。我们发现选择维持这些等位基因的证据,并将富含亮氨酸的重复区域的N末端部分确定为可能的选择目标。在两个主要进化枝中发现了其他蛋白质变体,这些变体与生态型中对病原体丁香假单胞菌无毒力基因avrRpt2的抗性的可测差异很好地相关。已经观察到拟南芥的其他抗性基因具有长寿命的多态性。 Rps2数据表明,耐药基因表型变异的长期维持可能是普遍现象,并且与多样化选择与维持变异的选择相一致。

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