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The Evolution of Parasite Recognition Genes in the Innate Immune System: Purifying Selection on Drosophila melanogaster Peptidoglycan Recognition Proteins

机译:天然免疫系统中的寄生虫识别基因的演变:对果蝇肽聚糖聚糖识别蛋白的纯化选择。

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摘要

Genes involved in the recognition of parasites by the acquired immune system are often subject to intense selection pressures. In some cases, selection to recognize a diverse range of parasites has resulted in high levels of polymorphism, while elsewhere the protein sequence has changed rapidly under directional selection. We tested whether parasite recognition genes in the innate immune system show similar patterns of evolution. We sequenced seven peptidoglycan recognition protein genes (PGRPs) from 12 lines of Drosophila melanogaster and one line of D. simulans and used a variety of tests to determine whether the observed mutations were selectively neutral. We were unable to detect either balancing or directional selection. This suggests that the molecular cues used by insects to detect parasites are highly conserved and probably under strong functional constraints which prevent their evolving to evade the host immune response. Therefore, interactions between these genes are unlikely to be the focus of host-parasite coevolution, at least in Drosophila. We also found evidence of gene conversion occurring between two genes, PGRP-SC1A and PGRP-SC1B.
机译:与获得性免疫系统识别寄生虫有关的基因通常承受巨大的选择压力。在某些情况下,识别多种寄生虫的选择导致高水平的多态性,而在其他情况下,蛋白质序列在定向选择下迅速变化。我们测试了先天免疫系统中的寄生虫识别基因是否显示相似的进化模式。我们对果蝇黑腹果蝇12条和拟杆菌D. simulans的7个肽聚糖识别蛋白基因(PGRPs)进行了测序,并使用各种测试来确定观察到的突变是否为选择性中性。我们无法检测到平衡或方向选择。这表明昆虫用于检测寄生虫的分子提示是高度保守的,并且可能在强大的功能约束下受到阻止,从而阻止了它们进化逃避宿主免疫反应。因此,至少在果蝇中,这些基因之间的相互作用不太可能成为宿主-寄生虫共进化的焦点。我们还发现了在两个基因PGRP-SC1A和PGRP-SC1B之间发生基因转换的证据。

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