首页> 外文期刊>Molecular Genetics and Genomics >The Y-segment of novel cold dehydrin genes is conserved and codons in the PR-10 genes are under positive selection in Oxytropis (Fabaceae) from contrasting climates
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The Y-segment of novel cold dehydrin genes is conserved and codons in the PR-10 genes are under positive selection in Oxytropis (Fabaceae) from contrasting climates

机译:从逆境气候中,嗜氧菌(Fabaceae)中新的冷脱水素基因的Y片段得到保守,PR-10基因的密码子处于正选择状态。

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While the arctic flora is particularly threatened by climate changes, the molecular aspects allowing colonization of this harsh environment remain largely enigmatic. Genes with a likely functional or evolutive role for arctic Oxytropis (Fabaceae) were previously discovered given a sharp differential expression between arctic and temperate species, but the evolutionary forces in action were unknown within the respective species. Here, we analyze gene duplication patterns and positive and negative selection between genes from species of contrasting environments, which can reveal potential gene functions. Genes were amplified and sequenced from two arctic (Oxytropis arctobia and O. maydelliana) and two temperate (O. campestris subsp. johannensis and O. splendens) species. Detection of codons under positive or negative selection and phylogenetic analyses were used to further elucidate pathogenesis-related class 10 (PR-10), ripening-related proteins, cold dehydrins gene families and light-harvesting complex (lhcaIII and lhcbI) genes from Oxytropis. Overall, results showed that the three gene families duplicated in tandem prior to the Oxytropis genus diversification; that genes overexpressed in arctic species evolve under higher constraints at the sequence level in these species; that evolving novel protein variants in PR-10 genes were required for initial adaptation to the Arctic, and that Oxytropis cold dehydrins are of a novel (K-like–Y4–K–S) structure, where the Y-segment is under stringent evolutive constraints in the arctic species. This suggests a scenario not previously described for arctic plants, where tandem duplications precede gene recruitment that later become both highly expressed and under stringent constraints in the arctic species.
机译:尽管北极植物区系受到气候变化的特别威胁,但允许在这种恶劣环境中定殖的分子方面仍然大为神秘。鉴于北极和温带物种之间的表达差异明显,以前发现了可能与北极嗜氧菌(Fabaceae)具有功能或进化作用的基因,但是在各个物种中,作用的进化力尚不清楚。在这里,我们分析了基因复制模式以及来自不同环境物种的基因之间的正负选择,这可以揭示潜在的基因功能。从两个北极(Oxytropis arctobia和O. maydelliana)和两个温带(O. campestris subsp。johannensis和O. splendens)物种扩增基因并测序。在正向或负向选择下对密码子进行检测以及系统发育分析,可进一步阐明发病机理相关的10类(PR-10),成熟相关的蛋白质,冷脱水蛋白基因家族和Oxytropis的光采复合体(lhcaIII和lhcbI)基因。总体而言,结果表明,三个基因家族在Oxytropis属多样化之前先后重复。在北极物种中过表达的基因在更高的限制下在这些物种的序列水平上进化;最初适应北极需要PR-10基因中不断进化的新型蛋白质变体,而嗜氧棘豆冷脱水素具有新颖的(K-like-Y 4 -KS-S)结构,其中Y段在北极物种中受到严格的进化约束。这表明北极植物以前没有描述过这样的情况,即在基因募集之前先后进行串联复制,随后在北极物种中既表达又受到严格限制。

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