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人类基因组中减数分裂重组的分布及原因。

The distribution and causes of meiotic recombination in the human genome.

作者信息

Myers S, Spencer C C A, Auton A, Bottolo L, Freeman C, Donnelly P, McVean G

机构信息

Department of Statistics, University of Oxford, 1 South Parks Road, Oxford OX1 3TG, UK.

出版信息

Biochem Soc Trans. 2006 Aug;34(Pt 4):526-30. doi: 10.1042/BST0340526.

Abstract

Using the statistical analysis of genetic variation, we have developed a high-resolution genetic map of recombination hotspots and recombination rate variation across the human genome. This map, which has a resolution several orders of magnitude greater than previous studies, identifies over 25,000 recombination hotspots and gives new insights into the distribution and determination of recombination. Wavelet-based analysis demonstrates scale-specific influences of base composition, coding context and DNA repeats on recombination rates, though, in contrast with other species, no association with DNase I hypersensitivity. We have also identified specific DNA motifs that are strongly associated with recombination hotspots and whose activity is influenced by local context. Comparative analysis of recombination rates in humans and chimpanzees demonstrates very high rates of evolution of the fine-scale structure of the recombination landscape. In the light of these observations, we suggest possible resolutions of the hotspot paradox.

摘要

通过对遗传变异的统计分析,我们绘制了一张高分辨率的人类基因组重组热点和重组率变异图谱。这张图谱的分辨率比以往研究高出几个数量级,识别出超过25000个重组热点,并为重组的分布和决定因素提供了新的见解。基于小波的分析表明,碱基组成、编码背景和DNA重复对重组率具有特定尺度的影响,不过与其他物种不同的是,它与DNase I超敏反应没有关联。我们还识别出了与重组热点紧密相关且其活性受局部环境影响的特定DNA基序。人类和黑猩猩重组率的比较分析表明,重组景观的精细结构进化速度非常快。鉴于这些观察结果,我们提出了热点悖论可能的解决方案。

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