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基因重复、平衡选择和跨物种进化解释了田鼠(仓鼠亚科)中MHC II类DQA基因的高度多态性。

Duplication, balancing selection and trans-species evolution explain the high levels of polymorphism of the DQA MHC class II gene in voles (Arvicolinae).

作者信息

Bryja J, Galan M, Charbonnel N, Cosson J F

机构信息

Centre de Biologie et Gestion des Populations (UMR 22), INRA, Campus International de Baillarguet, CS 30016,, 34988 Montferrier sur Lez, Cedex, France.

出版信息

Immunogenetics. 2006 Apr;58(2-3):191-202. doi: 10.1007/s00251-006-0085-6. Epub 2006 Feb 9.

Abstract

Major histocompatibility complex (MHC) genes play important role in host-parasite interactions and parasites are crucial factors influencing the population dynamics of hosts. We described the structure and diversity of exon 2 of the MHC class II DQA gene in three species of voles (Arvicolinae) exhibiting regular multi-annual fluctuations of population density and analysed the processes leading to the observed MHC polymorphism. By using cloning-sequencing methodology and capillary electrophoresis-single strand conformation polymorphism, we described seven sequences in the water, eight in the common, and seven in the bank voles coming from an area of 70 km(2) around the Nozeroy canton in the Jura Mountains (Franche Comté, France). All exon 2 sequences translate to give unique amino acid sequences and positive selection was found to act very intensively on antigen binding sites. We documented the presence of recombination at vole DQA region but its importance in generating allelic polymorphism seems to be relatively limited. For the first time within rodents, we documented the duplication of the DQA gene in all three species with both copies being transcriptionally active. Phylogenetic analysis of allelic sequences revealed extensive trans-species polymorphism within the subfamily although no alleles were shared between species in our data set. We discuss possible role of parasites in forming the recent polymorphism pattern of the DQA locus in voles.

摘要

主要组织相容性复合体(MHC)基因在宿主与寄生虫的相互作用中发挥着重要作用,而寄生虫是影响宿主种群动态的关键因素。我们描述了三种田鼠(田鼠亚科)MHC II类DQA基因外显子2的结构和多样性,这三种田鼠的种群密度呈现出有规律的多年波动,并分析了导致观察到的MHC多态性的过程。通过使用克隆测序方法和毛细管电泳-单链构象多态性技术,我们描述了来自法国汝拉山脉诺泽罗伊县周围70平方公里区域的水田鼠中的7个序列、普通田鼠中的8个序列和棕背田鼠中的7个序列。所有外显子2序列翻译后都产生独特的氨基酸序列,并且发现正选择在抗原结合位点上非常强烈地起作用。我们记录了田鼠DQA区域存在重组,但它在产生等位基因多态性方面的重要性似乎相对有限。在啮齿动物中,我们首次记录了所有三个物种中DQA基因的重复,且两个拷贝均具有转录活性。等位基因序列的系统发育分析揭示了该亚科内广泛的跨物种多态性,尽管在我们的数据集中没有物种间共享的等位基因。我们讨论了寄生虫在形成田鼠DQA基因座近期多态性模式中的可能作用。

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