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Adaptive Evolution in the GAF Domain of Phytochromes in Gymnosperms

机译:裸子植物植物色素的GAF域中的适应性进化。

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摘要

The GAF domain of phytochrome is essential for photoconversion and signal transduction. In gymnosperms, it exists in all members of the phytochrome family that experience gene duplication. Maximum-likelihood models of codon substitution can provide a framework for constructing likelihood ratio tests of changes in selective pressure and make clear predictions about patterns of genetic change following gene duplication. In this study, 68 gymnosperm GAF sequences were analyzed to identify lineages and sites under positive selection. Our results indicate that (1) positive selection at a few sites (3.6%), rather than relaxation of selective constraints, has played a major role in the evolution of the gymnosperm GAF domain; (2) strong positive selective pressure tends to occur in the recent PHYP lineages of cogeneric species, but is absent in old lineages consisting of distantly related species; and (3) the selective pressure indicated by the ω ratio varies greatly among lineages and sites in the GAF domain.
机译:植物色素的GAF域对于光转换和信号转导至关重要。在裸子植物中,它存在于所有经历基因复制的植物色素家族成员中。密码子替代的最大似然模型可以为构建选择性压力变化的似然比测试提供框架,并为基因复制后的遗传变化模式做出清晰的预测。在这项研究中,对68个裸子植物GAF序列进行了分析,以鉴定阳性选择下的谱系和位点。我们的结果表明:(1)在少数部位(3.6%)进行积极选择,而不是放松选择性限制,在裸子植物GAF结构域的进化中发挥了重要作用; (2)在最近的同属物种的PHYP谱系中倾向于出现强的正选择压力,但在由远缘物种组成的旧谱系中则不存在。 (3)由ω比表示的选择压力在GAF域的谱系和位点之间变化很大。

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