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群体海鞘博特氏拟菊海鞘中异体识别基因的平衡选择

Balancing selection on allorecognition genes in the colonial ascidian Botryllus schlosseri.

作者信息

Nydam Marie L, Stephenson Emily E, Waldman Claire E, De Tomaso Anthony W

机构信息

Division of Science and Mathematics, Centre College, 600 W. Walnut Street, Danville, KY 40422, United States.

Division of Science and Mathematics, Centre College, 600 W. Walnut Street, Danville, KY 40422, United States; Centre for Infectious Disease Research, P.O. Box 34681, Lusaka, 10101, Zambia.

出版信息

Dev Comp Immunol. 2017 Apr;69:60-74. doi: 10.1016/j.dci.2016.12.006. Epub 2016 Dec 24.

Abstract

Allorecognition is the capability of an organism to recognize its own or related tissues. The colonial ascidian Botryllus schlosseri, which comprises five genetically distinct and divergent species (Clades A-E), contains two adjacent genes that control allorecognition: fuhc and fuhc. These genes have been characterized extensively in Clade A and are highly polymorphic. Using alleles from 10 populations across the range of Clade A, we investigated the type and strength of selection maintaining this variation. Both fuhc genes exhibit higher within-population variation and lower population differentiation measures (F) than neutral loci. The fuhc genes contain a substantial number of codons with >95% posterior probability of d/d > 1. fuhc and fuhc also have polymorphisms shared between Clade A and Clade E that were present prior to speciation (trans-species polymorphisms). These results provide robust evidence that the fuhc genes are evolving under balancing selection.

摘要

异体识别是生物体识别自身或相关组织的能力。群体海鞘Botryllus schlosseri由五个基因上不同且有差异的物种(进化枝A - E)组成,包含两个控制异体识别的相邻基因:fuhc和fuhc。这些基因在进化枝A中已得到广泛表征且高度多态。利用进化枝A分布范围内10个种群的等位基因,我们研究了维持这种变异的选择类型和强度。与中性位点相比,两个fuhc基因在种群内表现出更高的变异和更低的种群分化度量(F)。fuhc基因包含大量密码子,其后验概率大于95%的d/d > 1。fuhc和fuhc在进化枝A和进化枝E之间也存在物种形成之前就已存在的多态性(跨物种多态性)。这些结果提供了有力证据,表明fuhc基因在平衡选择下进化。

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