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Evolutionary Consequences of DNA Methylation on the GC Content in Vertebrate Genomes

机译:脊椎动物基因组中DNA甲基化对GC含量的进化影响

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摘要

The genomes of many vertebrates show a characteristic variation in GC content. To explain its origin and evolution, mainly three mechanisms have been proposed: selection for GC content, mutation bias, and GC-biased gene conversion. At present, the mechanism of GC-biased gene conversion, i.e., short-scale, unidirectional exchanges between homologous chromosomes in the neighborhood of recombination-initiating double-strand breaks in favor for GC nucleotides, is the most widely accepted hypothesis. We here suggest that DNA methylation also plays an important role in the evolution of GC content in vertebrate genomes. To test this hypothesis, we investigated one mammalian (human) and one avian (chicken) genome. We used bisulfite sequencing to generate a whole-genome methylation map of chicken sperm and made use of a publicly available whole-genome methylation map of human sperm. Inclusion of these methylation maps into a model of GC content evolution provided significant support for the impact of DNA methylation on the local equilibrium GC content. Moreover, two different estimates of equilibrium GC content, one that neglects and one that incorporates the impact of DNA methylation and the concomitant CpG hypermutability, give estimates that differ by approximately 15% in both genomes, arguing for a strong impact of DNA methylation on the evolution of GC content. Thus, our results put forward that previous estimates of equilibrium GC content, which neglect the hypermutability of CpG dinucleotides, need to be reevaluated.
机译:许多脊椎动物的基因组在GC含量上显示出特征性变化。为了解释其起源和进化,主要提出了三种机制:GC含量的选择,突变偏向和GC偏向的基因转化。目前,被GC偏爱的基因转化的机制,即在重组起始双链断裂附近的同源染色体之间的短距离,单向交换有利于GC核苷酸,是最广泛接受的假设。我们在这里建议DNA甲基化在脊椎动物基因组中GC含量的演变中也起着重要作用。为了验证这一假设,我们研究了一个哺乳动物(人类)和一个鸟类(鸡)基因组。我们使用亚硫酸氢盐测序来生成鸡精子的全基因组甲基化图谱,并利用可公开获得的人类精子全基因组甲基化图谱。将这些甲基化图谱纳入GC含量演变模型可为DNA甲基化对局部平衡GC含量的影响提供重要支持。此外,平衡GC含量的两种不同估计值(一种忽略而另一种考虑了DNA甲基化的影响以及随之而来的CpG超突变性)得出的估计值在两个基因组中相差约15%,理由是DNA甲基化对DNA的强烈影响。 GC含量的演变。因此,我们的结果提出,需要重新评估先前估计的平衡GC含量的估计值,该估计值忽略了CpG二核苷酸的超突变性。

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