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A genome-wide comparison of recent chimpanzee and human segmental duplications

机译:最近黑猩猩和人类节段重复的全基因组比较

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We present a global comparison of differences in content of segmental duplication between human and chimpanzee, and determine that 33% of human duplications (> 94% sequence identity) are not duplicated in chimpanzee, including some human disease-causing duplications. Combining experimental and computational approaches, we estimate a genomic duplication rate of 4-5 megabases per million years since divergence. These changes have resulted in gene expression differences between the species. In terms of numbers of base pairs affected, we determine that de novo duplication has contributed most significantly to differences between the species, followed by deletion of ancestral duplications. Post-speciation gene conversion accounts for less than 10% of recent segmental duplication. Chimpanzee-specific hyperexpansion (> 100 copies) of particular segments of DNA have resulted in marked quantitative differences and alterations in the genome landscape between chimpanzee and human. Almost all of the most extreme differences relate to changes in chromosome structure, including the emergence of African great ape subterminal heterochromatin. Nevertheless, base per base, large segmental duplication events have had a greater impact (2.7%) in altering the genomic landscape of these two species than single-base-pair substitution (1.2%).
机译:我们提出了人类和黑猩猩节段重复内容差异的全球比较,并确定33%的人类重复(> 94%序列同一性)在黑猩猩中没有重复,包括某些引起人类疾病的重复。结合实验和计算方法,我们估计自发散以来每百万年4-5兆碱基的基因组重复率。这些变化导致物种之间的基因表达差异。根据受影响的碱基对的数量,我们确定从头复制对物种之间的差异贡献最大,其次是祖先重复的缺失。物种形成后的基因转化占最近节段重复的不到10%。黑猩猩特定DNA片段的黑猩猩特异性过度扩增(> 100个拷贝)已导致黑猩猩和人类之间的基因组格局发生明显的定量差异和变化。几乎所有最极端的差异都与染色体结构的变化有关,包括非洲大猿亚末端异染色质的出现。然而,每个碱基的大片段重复事件在改变这两个物种的基因组景观方面比单碱基对取代(1.2%)具有更大的影响(2.7%)。

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