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首页> 外文期刊>The Journal of Heredity >Two patterns of variation among MHC class I loci in tuatara (Sphenodon punctatus)
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Two patterns of variation among MHC class I loci in tuatara (Sphenodon punctatus)

机译:at鱼(Sphenodon punctatus)中MHC I类位点之间的两种变异模式

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The genes of the major histocompatibility complex (MHC) are a central component of the immune system in vertebrates and have become important markers of functional, fitness-related genetic variation. We have investigated the evolutionary processes that generate diversity at MHC class I genes in a large population of an archaic reptile species, the tuatara (Sphenodon punctatus), found on Stephens Island, Cook Strait, New Zealand. We identified at least 2 highly polymorphic (UAtype) loci and one locus (UZ) exhibiting low polymorphism. The UZ locus is characterized by low nucleotide diversity and weak balancing selection and may be either a nonclassical class I gene or a pseudogene. In contrast, the UA-type alleles have high nucleotide diversity and show evidence of balancing selection at putative peptide-binding sites. Twenty-one different UA-type genotypes were identified among 26 individuals, suggesting that the Stephens Island population has high levels of MHC class I variation. UA-type allelic diversity is generated by a mixture of point mutation and gene conversion. As has been found in birds and fish, gene conversion obscures the genealogical relationships among alleles and prevents the assignment of alleles to loci. Our results suggest that the molecular mechanisms that underpin MHC evolution in nonmammals make locus-specific amplification impossible in some species.
机译:主要组织相容性复合体(MHC)的基因是脊椎动物免疫系统的重要组成部分,已成为功能性,适应性相关遗传变异的重要标志。我们已经研究了在古库克海峡斯蒂芬斯岛上发现的大量古爬行动物物种tuatara(Sphenodon punctatus)中产生MHC I类基因多样性的进化过程。我们确定了至少2个高度多态性(UAtype)基因座和一个位点(UZ)表现出低多态性。 UZ基因座的特征在于低核苷酸多样性和较弱的平衡选择,并且可以是非经典的I类基因或假基因。相反,UA型等位基因具有较高的核苷酸多样性,并显示出在假定的肽结合位点平衡选择的证据。在26个个体中鉴定出21种不同的UA型基因型,这表明斯蒂芬斯岛人口的MHC I类变异水平较高。 UA型等位基因多样性是由点突变和基因转化的混合物产生的。正如在鸟类和鱼类中发现的那样,基因转换掩盖了等位基因之间的家谱关系,并阻止了等位基因分配给基因座。我们的结果表明,支持非哺乳动物MHC进化的分子机制使得某些物种无法进行基因座特异性扩增。

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