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首页> 外文期刊>Immunogenetics >A revised leopard frog phylogeny allows a more detailed examination of adaptive evolution at ranatuerin-2 antimicrobial peptide loci
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A revised leopard frog phylogeny allows a more detailed examination of adaptive evolution at ranatuerin-2 antimicrobial peptide loci

机译:修改后的豹蛙系统发育史可对ranatuerin-2抗菌肽位点的适应性进化进行更详细的检查

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摘要

Ranatuerins are antimicrobial peptides of the innate immune system found in ranid frogs. We previously presented evidence that a positive selective sweep had fixed a single allele at the Ranatuerin2 locus in the northern leopard frog (Rana pipiens). In this paper, we further investigate the evolutionary history of ranatuerins as follows. First, we sequenced Ranatuerin2 in additional individuals of R. pipiens and related frog species and compared diversity and divergence at these sequences with that at four putatively neutrally evolving loci. Second, we asked whether the evolutionary patterns observed at Ranatuerin2 were typical for ranatuerin loci by sequencing our samples at a paralogous locus, Ranatuerin2b, and performing the same neutrality tests. Ranatuerin2b also showed strong and significant evidence of at least one selective sweep. Third, we used the neutral loci to independently resolve conflicting hypotheses about phylogenetic relationships among our study species. Both the neutral loci and the ranatuerin loci supported an older phylogeny inferred from allozyme data and strongly rejected a more recent phylogeny inferred from mitochondrial DNA. Finally, in order to test whether the sweep was driven by the evolution of substantially new peptide function, we used the phylogeny to reconstruct the hypothetical Ranatuerin2 peptide that existed before the sweep. We synthesized this peptide and tested its activity and that of the extant peptide against six bacterial pathogens of frogs. We observed antibacterial activity but found no significant functional differences between the two peptides.
机译:Ranatuerin是在蛙类蛙中发现的先天免疫系统的抗菌肽。我们先前提供的证据表明,积极的选择性扫描已将北部豹子蛙(Rana pipiens)的Ranatuerin2基因座固定了一个等位基因。在本文中,我们进一步研究了毛豆素的进化历史,如下所示。首先,我们在其他的pipiens和相关青蛙物种个体中对Ranatuerin2进行了测序,并将这些序列的多样性和发散性与四个假定的中性进化基因座的多样性和发散性进行了比较。其次,我们通过在平行基因座Ranatuerin2b上对我们的样品进行测序并进行相同的中性测试,来询问在Ranatuerin2上观察到的进化模式是否是典型的ranatuerin基因座。 Ranatuerin2b还显示出至少一次选择性清除的有力且重要的证据。第三,我们使用中性基因座独立解决了我们研究物种之间关于系统发育关系的矛盾假设。中性基因座和拉那豆素基因座均支持由同工酶数据推断出的较旧的系统发育,并强烈拒绝由线粒体DNA推断的较新的系统发育。最后,为了测试扫描是否是由实质上新的肽功能的进化驱动的,我们使用系统发育重建了扫描之前存在的假设的Ranatuerin2肽。我们合成了该肽,并测试了其活性和现存肽对青蛙的6种细菌病原体的活性。我们观察到了抗菌活性,但发现两种肽之间没有明显的功能差异。

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