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Genetic Diversification by Somatic Gene Conversion

机译:通过体细胞基因转化进行遗传多样化

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摘要

Gene conversion is a type of homologous recombination that leads to transfer of genetic information among homologous DNA sequences. It can be categorized into two classes: homogenizing and diversifying gene conversions. The former class results in neutralization and homogenization of any sequence variation among repetitive DNA sequences, and thus is important for concerted evolution. On the other hand, the latter functions to increase genetic diversity at the recombination-recipient loci. Thus, these two types of gene conversion play opposite roles in genome dynamics. Diversifying gene conversion is observed in the immunoglobulin (Ig) loci of chicken, rabbit, and other animals, and directs the diversification of Ig variable segments and acquisition of functional Ig repertoires. This type of gene conversion is initiated by the biased occurrence of recombination initiation events (e.g., DNA single- or double-strand breaks) on the recipient DNA site followed by unidirectional homologous recombination from multiple template sequences. Transcription and DNA accessibility is also important in the regulation of biased recombination initiation. In this review, we will discuss the biological significance and possible mechanisms of diversifying gene conversion in somatic cells of eukaryotes.
机译:基因转换是一种同源重组,可导致遗传信息在同源DNA序列之间转移。它可以分为两类:基因转化的均质化和多样化。前一类导致重复DNA序列之间任何序列变异的中和和均质化,因此对于协调进化很重要。另一方面,后者的功能是增加重组受体基因座的遗传多样性。因此,这两种类型的基因转换在基因组动力学中起相反的作用。在鸡,兔和其他动物的免疫球蛋白(Ig)基因座中观察到多样化的基因转化,指导Ig可变片段的多样化和功能性Ig组成的获得。这种类型的基因转化是通过在受体DNA位点上发生重组起始事件(例如DNA单链或双链断裂)的偏向发生而引发的,然后是来自多个模板序列的单向同源重组。转录和DNA的可及性在调控重组重组中也很重要。在这篇综述中,我们将讨论真核生物体细胞中基因转化的生物学意义和可能的机制。

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