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首页> 外文期刊>Molecular biology and evolution >Evidence for directional selection acting on pheromone-binding proteins inthe genus Choristoneura
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Evidence for directional selection acting on pheromone-binding proteins inthe genus Choristoneura

机译:定向选择作用于Choristura属中的信息素结合蛋白的证据

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摘要

Patterns of nucleotide variation consistent with the action of natural selection have been discovered at a number of different gene loci. Here, pheromone-binding proteins (PBPs) are examined to determine if selection has acted to fix amino acid changes in PBPs in lineages in which pheromone changes have occurred. PBPs from five different species of moths in the genus Choristoneura were sequenced, along with the PBP of Argyrotaenia velutinana, which serves as an outgroup. Three independent major pheromone changes are represented within this group of five Choristoneura species. Two different lineages show evidence for selection based on polymorphism and divergence comparisons and comparisons of rates of replacement evolution to silent and noncoding evolution. Along one of these lineages, leading to Choristoneura fumiferana, there has been a change to an aldehyde pheromone from an acetate pheromone. The second branch does not appear to be associated with a major pheromone change. Other branches in the tree show a trend toward greater replacement fixation than expected under neutrality. This trend could reflect undetected selective events within this group of PBPs. Selection appears to have acted to fix amino acid changes in the PBP of moths from the genus Choristoneura, but it is not clear that this selection is due to pheromone changes between species.
机译:已经在许多不同的基因座上发现了与自然选择作用一致的核苷酸变异模式。在这里,检查信息素结合蛋白(PBPs),以确定选择是否起到了固定发生信息素变化的谱系中PBPs氨基酸变化的作用。对Choristoneura属中五个不同种类的蛾类的PBP进行了测序,并将其作为外群的Argyrotaenia velutinana的PBP进行了测序。在五个Choristoneura物种的组中,代表了三个独立的主要信息素变化。两种不同的谱系显示了基于多态性和发散性比较以及替换进化与静默和非编码进化的速率比较的选择证据。沿着这些谱系之一,通向烟酸Choristoneura,从醋酸盐信息素变成了醛香信息素。第二个分支似乎与主要的信息素变化无关。树中的其他分支显示出在中立状态下替换固定的趋势超过预期的趋势。这种趋势可能反映了这一组PBP中未发现的选择性事件。选择似乎起到了固定Choristoneura属蛾的PBP中氨基酸变化的作用,但是尚不清楚该选择是否是由于物种之间信息素的变化所致。

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