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见树不见林:人类 Y 染色体最小参照系统发育树。

Seeing the wood for the trees: a minimal reference phylogeny for the human Y chromosome.

机构信息

Department of Forensic Molecular Biology, Erasmus MC - University Medical Center Rotterdam, Rotterdam, The Netherlands.

出版信息

Hum Mutat. 2014 Feb;35(2):187-91. doi: 10.1002/humu.22468. Epub 2013 Nov 14.

DOI:10.1002/humu.22468
PMID:24166809
Abstract

During the last few decades, a wealth of studies dedicated to the human Y chromosome and its DNA variation, in particular Y-chromosome single-nucleotide polymorphisms (Y-SNPs), has led to the construction of a well-established Y-chromosome phylogeny. Since the recent advent of new sequencing technologies, the discovery of additional Y-SNPs is exploding and their continuous incorporation in the phylogenetic tree is leading to an ever higher resolution. However, the large and increasing amount of information included in the "complete" Y-chromosome phylogeny, which now already includes many thousands of identified Y-SNPs, can be overwhelming and complicates its understanding as well as the task of selecting suitable markers for genotyping purposes in evolutionary, demographic, anthropological, genealogical, medical, and forensic studies. As a solution, we introduce a concise reference phylogeny whereby we do not aim to provide an exhaustive tree that includes all known Y-SNPs but, rather, a quite stable reference tree aiming for optimal global discrimination capacity based on a strongly reduced set that includes only the most resolving Y-SNPs. Furthermore, with this reference tree, we wish to propose a common standard for Y-marker as well as Y-haplogroup nomenclature. The current version of our tree is based on a core set of 417 branch-defining Y-SNPs and is available online at http://www.phylotree.org/Y.

摘要

在过去的几十年中,大量研究致力于人类 Y 染色体及其 DNA 变异,特别是 Y 染色体单核苷酸多态性(Y-SNPs),构建了一个成熟的 Y 染色体系统发育树。自最近新测序技术的出现以来,更多的 Y-SNPs 被发现,并且它们不断被纳入系统发育树,从而导致分辨率不断提高。然而,“完整”Y 染色体系统发育树中包含的大量且不断增加的信息,现在已经包括了数千个已识别的 Y-SNPs,可能会让人不知所措,并使其理解以及选择适合进化、人口、人类学、系谱学、医学和法医学研究中基因分型目的的标记变得复杂。作为一种解决方案,我们引入了一个简洁的参考系统发育树,我们的目标不是提供一个包含所有已知 Y-SNPs 的详尽树,而是一个相当稳定的参考树,旨在基于一个包含仅最具分辨率的 Y-SNPs 的大大减少的集合来实现最佳的全球区分能力。此外,我们希望通过这个参考树来提出 Y 标记和 Y 单倍群命名的通用标准。我们的树的当前版本基于 417 个分支定义的 Y-SNPs 核心集,可在 http://www.phylotree.org/Y 在线获得。

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