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Molecular evolution and population genetics of a Gram-negative binding protein gene in the malaria vector Anopheles gambiae (sensu lato)

机译:疟疾媒介冈比亚按蚊(Sensu lato)中革兰氏阴性结合蛋白基因的分子进化和种群遗传学

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摘要

Clarifying the role of the innate immune system of the malaria vector Anopheles gambiae is a potential way to block the development of the Plasmodium parasites. Pathogen recognition is the first step of innate immune response, where pattern recognition proteins like GNBPs play a central role. We analysed 70 sequences of the protein coding gene GNBPB2 from two species, Anopheles gambiae (s.s.) and An. coluzzii, collected in six African countries. We detected 135 segregating sites defining 63 distinct haplotypes and 30 proteins. Mean nucleotide diversity (π) was 0.014 for both species. We found no significant genetic differentiation between species, but a significant positive correlation between genetic differentiation and geographical distance among populations. Species status seems to contribute less for the molecular differentiation in GNBPB2 than geographical region in the African continent (West and East). Purifying selection was found to be the most common form of selection, as in many other immunity-related genes. Diversifying selection may be also operating in the GNBPB2 gene.
机译:阐明疟疾媒介冈比亚按蚊的先天免疫系统的作用是阻止疟原虫寄生虫发展的潜在方法。病原体识别是先天性免疫应答的第一步,其中模式识别蛋白(如GNBP)起着核心作用。我们分析了冈比亚按蚊和按蚊两个物种的70个蛋白质编码基因GNBPB2的序列。 coluzzii,收集于六个非洲国家。我们检测到135个分离位点,定义了63种不同的单倍型和30种蛋白质。两种物种的平均核苷酸多样性(π)均为0.014。我们发现物种之间没有显着的遗传分化,但是种群之间的遗传分化和地理距离之间存在显着的正相关。物种地位似乎对GNBPB2分子分化的贡献小于非洲大陆(西部和东部)的地理区域。与许多其他与免疫相关的基因一样,纯化选择是最常见的选择形式。多样化的选择也可能在GNBPB2基因中起作用。

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