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Molecular Evolution of Drosophila Germline Stem Cell and Neural Stem Cell Regulating Genes

机译:果蝇种系干细胞和神经干细胞调控基因的分子进化。

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摘要

Here, we study the molecular evolution of a near complete set of genes that had functional evidence in the regulation of the Drosophila germline and neural stem cell. Some of these genes have previously been shown to be rapidly evolving by positive selection raising the possibility that stem cell genes as a group have elevated signatures of positive selection. Using recent Drosophila comparative genome sequences and population genomic sequences of Drosophila melanogaster, we have investigated both long- and short-term evolution occurring across these two different stem cell systems, and compared them with a carefully chosen random set of genes to represent the background rate of evolution. Our results showed an excess of genes with evidence of a recent selective sweep in both germline and neural stem cells in D. melanogaster. However compared with their control genes, both stem cell systems had no significant excess of genes with long-term recurrent positive selection in D. melanogaster, or across orthologous sequences from the melanogaster group. The evidence of long-term positive selection was limited to a subset of genes with specific functions in both the germline and neural stem cell system.
机译:在这里,我们研究了近完整基因的分子进化,这些基因在果蝇种系和神经干细胞的调控中具有功能性证据。这些基因中的某些先前已显示出通过正选择快速发展,从而增加了干细胞基因作为一个整体具有升高的正选择特征的可能性。使用最近的果蝇比较基因组序列和果蝇的种群基因组序列,我们研究了在这两个不同干细胞系统中发生的长期和短期进化,并将它们与精心挑选的随机基因集进行比较,以代表背景发生率进化我们的研究结果表明,有过量的基因,最近在黑腹果蝇的种系和神经干细胞中都有选择性的扫描。但是,与它们的对照基因相比,两个干细胞系统在D. melanogaster或melanogaster组的直系同源序列中都没有长期过量阳性选择的过量基因。长期阳性选择的证据仅限于在种系和神经干细胞系统中具有特定功能的基因子集。

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