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Nonallelic Gene Conversion Is Not GC-Biased in Drosophila or Primates

机译:果蝇或灵长类动物中非等位基因基因转换不是基于GC的

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摘要

Gene conversion is the unidirectional transfer of genetic information between allelic (orthologous) or nonallelic (paralogous) DNA segments. Recently, there has been much interest in understanding how gene conversion shapes the nucleotide composition of the genomic landscape. A widely held hypothesis is that gene conversion is universally GC-biased. However, direct experimental evidence of this hypothesis is limited to a single study of meiotic crossovers in yeast. Although there have been a number of indirect studies of gene conversion, evidence of GC-biased replacements gathered from such studies can also be attributed to positive selection, which has the same evolutionary dynamics as biased gene conversion. Here, we apply a direct phylogenetic approach to examine nucleotide replacements produced by nonallelic gene conversion in Drosophila and primate genomes. We find no evidence for GC-biased gene conversion in either lineage, suggesting that previously observed GC biases may be due to positive selection rather than to biased gene conversion.
机译:基因转换是等位基因(直系同源)或非等位基因(旁系)DNA片段之间遗传信息的单向转移。最近,人们对理解基因转换如何影响基因组格局的核苷酸组成有极大的兴趣。一个普遍存在的假设是基因转换普遍受到GC的偏见。但是,此假设的直接实验证据仅限于酵母中减数分裂转换的单项研究。尽管已经进行了许多间接的基因转化研究,但从此类研究中收集到的GC偏向替代物的证据也可以归因于阳性选择,它具有与偏向基因转换相同的进化动力学。在这里,我们应用直接的系统发育方法来检查果蝇和灵长类动物基因组中非等位基因转化产生的核苷酸置换。我们没有证据表明在这两个谱系中都存在GC偏向基因转换的现象,这表明先前观察到的GC偏倚可能是由于阳性选择而不是基因偏向转化所致。

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