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在密切相关的拟南芥物种中,高度适应性 R 基因座的不寻常特征。

Unusual signatures of highly adaptable R-loci in closely-related Arabidopsis species.

机构信息

State Key Laboratory of Pharmaceutical Biotechnology, Department of Biology, Nanjing University, Nanjing, China.

出版信息

Gene. 2011 Aug 15;482(1-2):24-33. doi: 10.1016/j.gene.2011.05.012. Epub 2011 Jun 1.

Abstract

Plant resistance genes (R-genes) evolve rapidly in response to changing environments. What are the most remarkable signatures of fast adaptive genes, besides the commonly revealed rapid divergence and high non-synonymous substitution rate? Here we investigated these changes in five R-loci following recent differentiation between Arabidopsis thaliana and Arabidopsis lyrata. Extreme differences in evolutionary rates were observed: e.g., an overall 5.46-9.83-fold different nucleotide diversity at two R-loci between species, ten-fold higher non-synonymous substitution rates within one species versus the other, significantly different Ka/Ks ratios between species for the same R-gene, and high interspecific divergence at one R-locus. Particularly, we observed an elevated level of trans-specific polymorphism at one R-locus and a differentially maintained presence/absence polymorphism at another. The high frequency of ancestral polymorphisms amongst R-genes suggests that the persistence of some functional variation is an important evolutionary mechanism shaping genetic variation in R-genes, while the variation of presence/absence polymorphisms provides a potential mechanism for malleable activation of adaptive resistance response pathways. The distinct patterns among R-genes suggest that the same R-gene ortholog can be quickly shaped by different evolutionary processes, e.g., purifying selection in one species but positive selection in a closely-related species.

摘要

植物抗性基因(R 基因)会快速进化以适应环境变化。除了常见的快速分化和高非同义替换率之外,快速适应基因最显著的特征还有哪些?在这里,我们研究了拟南芥和拟南芥 lyrata 近期分化后五个 R 基因座的这些变化。我们观察到了进化速率的极端差异:例如,两个物种之间的两个 R 基因座的核苷酸多样性总体差异为 5.46-9.83 倍,一个物种内的非同义替换率比另一个物种高 10 倍,相同 R 基因座的物种之间 Ka/Ks 比值存在显著差异,一个 R 基因座的种间差异很大。特别地,我们观察到一个 R 基因座存在高水平的跨种多态性,而另一个基因座存在不同的存在/缺失多态性。R 基因中存在大量的祖先多态性表明,一些功能变异的持续存在是塑造 R 基因遗传变异的一个重要进化机制,而存在/缺失多态性的变异则为适应性抗性反应途径的灵活激活提供了潜在机制。R 基因之间的明显模式表明,同一 R 基因的同源基因可以被不同的进化过程迅速塑造,例如,在一个物种中是纯化选择,而在一个密切相关的物种中则是正选择。

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