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首页> 外文期刊>PLoS Genetics >Recombination Dynamics of a Human Y-Chromosomal Palindrome: Rapid GC-Biased Gene Conversion, Multi-kilobase Conversion Tracts, and Rare Inversions
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Recombination Dynamics of a Human Y-Chromosomal Palindrome: Rapid GC-Biased Gene Conversion, Multi-kilobase Conversion Tracts, and Rare Inversions

机译:人类Y染色体回文的重组动力学:快速GC依赖基因转换,多千碱基转换道和罕见的倒置。

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摘要

The male-specific region of the human Y chromosome (MSY) includes eight large inverted repeats (palindromes) in which arm-to-arm similarity exceeds 99.9%, due to gene conversion activity. Here, we studied one of these palindromes, P6, in order to illuminate the dynamics of the gene conversion process. We genotyped ten paralogous sequence variants (PSVs) within the arms of P6 in 378 Y chromosomes whose evolutionary relationships within the SNP-defined Y phylogeny are known. This allowed the identification of 146 historical gene conversion events involving individual PSVs, occurring at a rate of 2.9–8.4×10~(?4)events per generation. A consideration of the nature of nucleotide change and the ancestral state of each PSV showed that the conversion process was significantly biased towards the fixation of G or C nucleotides (GC-biased), and also towards the ancestral state. Determination of haplotypes by long-PCR allowed likely co-conversion of PSVs to be identified, and suggested that conversion tract lengths are large, with a mean of 2068 bp, and a maximum in excess of 9 kb. Despite the frequent formation of recombination intermediates implied by the rapid observed gene conversion activity, resolution via crossover is rare: only three inversions within P6 were detected in the sample. An analysis of chimpanzee and gorilla P6 orthologs showed that the ancestral state bias has existed in all three species, and comparison of human and chimpanzee sequences with the gorilla outgroup confirmed that GC bias of the conversion process has apparently been active in both the human and chimpanzee lineages. Author Summary The sex-determining role of the human Y chromosome makes it male-specific, and always present in only a single copy. This solo lifestyle has endowed it with some bizarre features, among which are eight large DNA units constituting about a quarter of the chromosome's length, and containing many genes important for sperm production. These units are called palindromes, since, taking into account the polarity of the DNA strands, the sequence is the same read from either end of the unit. We investigated the details of a process (gene conversion) that transfers sequence variants in one half of a palindrome into the other, thereby maintaining >99.9% similarity between the halves. We analysed patterns of sequence variants within one palindrome in a set of Y chromosomes whose evolutionary relationships are known. This allowed us to identify past gene conversion events, and to demonstrate a bias towards events that eliminate new variants, and retain old ones. Gene conversion has therefore acted during human evolution to retard sequence change in these regions. Analysis of the chimpanzee and gorilla versions of the palindrome shows that the dynamic processes we see in human Y chromosomes have a deep evolutionary history.
机译:人类Y染色体(MSY)的男性特定区域包含八个大的反向重复序列(回文),由于基因转换活性,其臂间相似性超过99.9%。在这里,我们研究了这些回文之一,P6,以阐明基因转化过程的动态。我们对378条Y染色体中P6臂内的十个同源序列变异体(PSV)进行基因分型,这些染色体在SNP定义的Y系统发育内的进化关系是已知的。这样就可以鉴定出涉及单个PSV的146个历史基因转换事件,每代发生率为2.9–8.4×10〜(?4)个事件。对核苷酸变化的性质和每个PSV的祖先状态的考虑表明,转换过程明显偏向于G或C核苷酸的固定(GC偏向),也偏向于祖先状态。通过长PCR确定单倍型可以鉴定PSV的共转化,并建议转化道长度很大,平均为2068 bp,最大超过9 kb。尽管快速观察到的基因转化活性暗示了重组中间体的频繁形成,但通过交叉的分离却很少:样品中仅检测到P6内的三个转化。对黑猩猩和大猩猩P6直系同源物的分析表明,所有这三个物种都存在祖先状态偏倚,并且将人和黑猩猩序列与大猩猩外群进行比较证实,转化过程的GC偏倚显然在人和黑猩猩中均很活跃。血统。作者摘要人Y染色体的决定性别的作用使其成为男性特有的,并且始终仅存在于单个副本中。这种单独的生活方式赋予了它一些奇异的特征,其中包括八个大的DNA单元,它们构成了染色体长度的大约四分之一,并且包含许多对精子产生很重要的基因。这些单元称为回文质,因为考虑到DNA链的极性,其序列从该单元的任一端读取的都是相同的。我们调查了回文的一半中的序列变体转移到另一半中的过程(基因转换)的详细信息,从而在两半之间保持> 99.9%的相似性。我们分析了已知回旋关系的一组Y染色体中一个回文序列中的序列变体模式。这使我们能够识别过去的基因转换事件,并证明对消除新变体并保留旧变体的事件有偏见。因此,基因转化在人类进化过程中起着阻止这些区域序列变化的作用。对黑猩猩和大猩猩回文形式的分析表明,我们在人类Y染色体上看到的动态过程具有深厚的进化历史。

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