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The Impact of Natural Selection on the Genome: Emerging Patterns in Drosophila and Arabidopsis

机译:自然选择对基因组的影响:果蝇和拟南芥中的新兴模式。

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摘要

Species in the Drosophila and Arabidopsis species groups share the feature of having relatively small, streamlined genomes. In Drosophila, evidence for pervasive negative and positive selection is overturning long-held views about the functional significance of noncoding DNA, the frequency of positive selection, and the extent to which coding and noncoding polymorphism and divergence between species is neutral. However, despite sharing some similarities with Drosophila, Arabidopsis shows quite distinct patterns of selective constraint and positive selection. Two conspicuous differences between these species groups are their effective population sizes and population structure, which may explain lower levels of selective constraint in coding and noncoding DNA of Arabidopsis, more evidence for balancing selection and less evidence for canonical signature of positive selection than in Drosophila species. As more comparative genomic data accumulate in the Arabidopsis group, the combination of polymorphism and divergence data allow these initial contrasts to be quantified on a genomic scale.
机译:果蝇和拟南芥物种组中的物种共有具有相对较小的流线型基因组的特征。在果蝇中,普遍存在的阴性和阳性选择的证据推翻了长期以来关于非编码DNA的功能重要性,阳性选择的频率以及编码和非编码多态性以及物种间差异程度的观点。然而,尽管拟南芥与果蝇有一些相似之处,但它们表现出截然不同的选择约束和正向选择模式。这些物种组之间的两个明显差异是它们的有效种群数量和种群结构,这可能解释了果蝇物种中编码和非编码拟南芥DNA的选择性限制水平较低,平衡选择的证据更多,正选择的规范签名的证据较少。随着拟南芥组中积累了更多的比较基因组数据,多态性和发散数据的组合使这些初始对比可以在基因组规模上进行量化。

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