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首页> 外文期刊>Perspectives in Biology and Medicine >REFLECTIONS ON ANCESTRAL HAPLOTYPES medical genomics, evolution, and human individuality
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REFLECTIONS ON ANCESTRAL HAPLOTYPES medical genomics, evolution, and human individuality

机译:对祖先型医学基因组学,进化和人类个性的反思

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The major histocompatibility complex (MHC), once labelled the "sphinx of immunology" by Jan Klein, provides powerful challenges to evolutionary thinking. This essay highlights the main discoveries that established the block ancestral haplotype structure of the MHC and the wider genome, focusing on the work by the Perth (Australia) group, led by Roger Dawkins, and the Boston group, led by Chester Alper and Edmond Yunis. Their achievements have been overlooked in the rush to sequence the first and subsequent drafts of the human genome. In Caucasoids, where most of the detailed work has been done, about 70% of all known allelic MHC diversity can be accounted for by 30 or so ancestral haplotypes (AHs), or conserved sequences of many mega-bases, and their recombinants. The block haplotype structure of the genome, as shown for the MHC (and other genetic regions), is a story that needs to be understood in its own right, particularly given the promotion of the "HapMap" project and single nucleotide polymorphism (SNP) linkage disequilibrium (LD) analysis, which has been wrongly touted as the only way to pinpoint those genes that are important in genetic disorders or other desired (qualitative) characteristics.
机译:主要的组织相容性复合体(MHC),曾被扬·克莱因(Jan Klein)标记为“免疫学的狮身人面像”,但对进化思维提出了强大的挑战。本文重点介绍了建立MHC和更广泛的基因组的祖先单倍型结构的主要发现,重点介绍了由Roger Dawkins领导的珀斯(澳大利亚)小组以及Chester Alper和Edmond Yunis领导的Boston小组的工作。 。他们的成就在急于测序人类基因组的第一稿和后续稿时被忽略了。在完成了大部分详细工作的高加索人中,所有已知的等位基因MHC多样性中约70%可以由30个左右的祖先单倍型(AH)或许多大碱基的保守序列及其重组体解释。如MHC(和其他遗传区域)所示,基因组的单倍型结构是一个故事,需要自己理解,特别是考虑到“ HapMap”项目的推广和单核苷酸多态性(SNP)连锁不平衡(LD)分析,这被错误地吹捧为查明那些对遗传疾病或其他所需(定性)特征很重要的基因的唯一方法。

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