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首页> 外文期刊>Journal of Molecular Evolution >Molecular Evolution of the Puroindoline-a, Puroindoline-b, and Grain Softness Protein-1 Genes in the Tribe Triticeae
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Molecular Evolution of the Puroindoline-a, Puroindoline-b, and Grain Softness Protein-1 Genes in the Tribe Triticeae

机译:小麦小麦中Puroindoline-a,Puroindoline-b和谷物柔软度蛋白-1基因的分子进化

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摘要

The genome organization of the Hardness locus in the tribe Triticeae constitutes an excellent model for studying the mechanisms of evolution that played a role in the preservation and potential functional innovations of duplicate genes. Here we applied the nonsynonymous-synonymous rate ratio (d N /d S or ω) to measure the selective pressures at the paralogous puroindoline-a (Pina), puroindoline-b (Pinb), and grain softness protein-1 (Gsp-1) genes located at this locus. Puroindolines represent the molecular-genetic basis of grain texture. In addition, the puroindoline gene products have antimicrobial properties with potential role in plant defense. We document the complete coding sequences from the Triticum/Aegilops taxa, rye and barley including the A, D, C, H, M, N, R, S, and U genomes of the Triticeae. Maximum likelihood analyses performed on Bayesian phylogenetic trees showed distinct evolutionary patterns among Pina, Pinb, and Gsp-1. Positive diversifying selection appeared to drive the evolution of at least one of the three genes examined, suggesting that adaptive forces have operated at this locus. Results evidenced positive selection (ω > 4) at Pina and detected amino acid residues along the mature PIN-a protein with a high probability (>95%) of having evolved under adaptation. We hypothesized that positive selection at the Pina region is congruent with its role as a plant defense gene.
机译:Triticeae部落中的硬度基因座的基因组组织构成了研究进化机制的极好模型,该进化机制在重复基因的保存和潜在的功能创新中发挥了作用。在这里,我们使用非同义词-同义词比率(d N / d S 或ω)来测量旁源性puroindoline-a(Pina),puroindoline-b(Pinb)和谷物的选择压力位于此基因座的柔软度蛋白-1(Gsp-1)基因。 Puroindolines代表了谷物质地的分子遗传基础。此外,puroindoline基因产物具有抗菌特性,在植物防御中具有潜在作用。我们记录了小麦/黑麦,黑麦和大麦的完整编码序列,包括小麦,黑麦和黑麦的A,D,C,H,M,N,R,S和U基因组。在贝叶斯系统树上进行的最大似然分析显示了Pina,Pinb和Gsp-1之间的不同进化模式。积极的多样化选择似乎可以驱动所研究的三个基因中至少一个的进化,这表明适应力已经作用于该基因座。结果证明在Pina处有正选择(ω> 4),并且沿着成熟的PIN-a蛋白检测到氨基酸残基,很可能在适应下进化出(> 95%)。我们假设Pina地区的积极选择与其作为植物防御基因的作用是一致的。

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