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白鲸(白鲸属)和独角鲸(一角鲸属)主要组织相容性复合体DRB基因座的序列变异。

Sequence variation at the major histocompatibility complex DRB loci in beluga (Delphinapterus leucas) and narwhal (Monodon monoceros).

作者信息

Murray B W, White B N

机构信息

Department of Biology, McMaster University, 1280 Main St. West, Hamilton, Ontario L8S 4K1, Canada.

出版信息

Immunogenetics. 1998 Sep;48(4):242-52. doi: 10.1007/s002510050428.

Abstract

The variation at loci with similarity to DRB class II major histocompatibility complex loci was assessed in 313 beluga collected from 13 sampling locations across North America, and 11 narwhal collected in the Canadian high Arctic. Variation was assessed by amplification of exon 2, which codes for the peptide binding region, via the polymerase chain reaction, followed by either cloning and DNA sequencing or single-stranded conformation polymorphism analysis. Two DRB loci were identified in beluga: DRB1, a polymorphic locus, and, DRB2, a monomorphic locus. Eight alleles representing five distinct lineages (based on sequence similarity) were found at the beluga DRB1 locus. Although the relative number of alleles is low when compared with terrestrial mammals, the amino acid variation found among the lineages is moderate. At the DRB1 locus, the average number of nonsynonymous substitutions per site is greater than the average number of synonymous substitutions per site (0.0806 : 0.0207, respectively; P<0.01). Most of the 31 amino acid substitutions do not conserve the physiochemical properties of the residue, and 21 of these are located at positions implicated as forming pockets responsible for the selective binding of foreign peptide side chains. Only DRB1 variation was examined in 11 narwhal, revealing a low amount of variation. These data are consistent with an important role for the DRB1 locus in the cellular immune response of beluga. In addition, the ratio of nonsynonymous to synonymous substitutions is similar to that among primate alleles, arguing against a reduction in the balancing selection pressure in the marine environment. Two hypotheses may explain the modest amount of Mhc variation when compared with terrestrial mammals: small population sizes at speciation or a reduced neutral substitution rate in cetaceans.

摘要

在从北美13个采样地点收集的313头白鲸以及在加拿大北极地区收集的11头独角鲸中,评估了与II类主要组织相容性复合体DRB基因座相似的基因座的变异情况。通过聚合酶链反应扩增编码肽结合区的外显子2来评估变异,随后进行克隆和DNA测序或单链构象多态性分析。在白鲸中鉴定出两个DRB基因座:多态性基因座DRB1和单态性基因座DRB2。在白鲸DRB1基因座上发现了代表五个不同谱系(基于序列相似性)的八个等位基因。尽管与陆生哺乳动物相比等位基因的相对数量较少,但在谱系中发现的氨基酸变异程度适中。在DRB1基因座上,每个位点非同义替换的平均数量大于同义替换的平均数量(分别为0.0806:0.0207;P<0.01)。31个氨基酸替换中的大多数并未保留残基的理化性质,其中21个位于被认为形成负责外来肽侧链选择性结合口袋的位置。仅在11头独角鲸中检测了DRB1变异,显示变异量较低。这些数据与DRB1基因座在白鲸细胞免疫反应中的重要作用一致。此外非同义替换与同义替换的比率与灵长类等位基因中的比率相似,这表明海洋环境中平衡选择压力并未降低。与陆生哺乳动物相比,Mhc变异量适中可能有两种假设可以解释:物种形成时种群规模较小或鲸类中性替换率降低。

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