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Population Genomics of Paramecium Species

机译:草履虫种群基因组学

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摘要

Population-genomic analyses are essential to understanding factors shaping genomic variation and lineage-specific sequence constraints. The dearth of such analyses for unicellular eukaryotes prompted us to assess genomic variation in Paramecium , one of the most well-studied ciliate genera. The Paramecium aurelia complex consists of ∼15 morphologically indistinguishable species that diverged subsequent to two rounds of whole-genome duplications (WGDs, as long as 320 MYA) and possess extremely streamlined genomes. We examine patterns of both nuclear and mitochondrial polymorphism, by sequencing whole genomes of 10–13 worldwide isolates of each of three species belonging to the P. aurelia complex: P. tetraurelia , P. biaurelia , P. sexaurelia , as well as two outgroup species that do not share the WGDs: P. caudatum and P. multimicronucleatum . An apparent absence of global geographic population structure suggests continuous or recent dispersal of Paramecium over long distances. Intergenic regions are highly constrained relative to coding sequences, especially in P. caudatum and P. multimicronucleatum that have shorter intergenic distances. Sequence diversity and divergence are reduced up to ∼100–150 bp both upstream and downstream of genes, suggesting strong constraints imposed by the presence of densely packed regulatory modules. In addition, comparison of sequence variation at non-synonymous and synonymous sites suggests similar recent selective pressures on paralogs within and orthologs across the deeply diverging species. This study presents the first genome-wide population-genomic analysis in ciliates and provides a valuable resource for future studies in evolutionary and functional genetics in Paramecium .
机译:群体基因组分析对于了解影响基因组变异和谱系特异性序列约束的因素至关重要。由于缺乏对单细胞真核生物的这种分析,促使我们评估草履虫的基因组变异,草履虫是研究最充分的纤毛虫属之一。草履虫复合体由大约15个形态上无法区分的物种组成,这些物种在两轮全基因组复制(WGD,长达320 MYA)后分化,并具有极其精简的基因组。我们通过对属于 P. aurelia 复合体的三个物种的 10-13 个全球分离株的全基因组进行测序,检查了核和线粒体多态性的模式:P. tetraurelia、P. biaurelia 、P. sexaurelia ,以及两个不共享 WGD 的外群物种:P. caudatum 和 P. multimicronucleatum。全球地理种群结构的明显缺失表明草履虫持续或近期远距离扩散。相对于编码序列,基因间区域受到高度限制,尤其是在基因间距离较短的 P. caudatum 和 P. multimicronucleatum 中。基因上游和下游的序列多样性和差异减少至∼100-150 bp,这表明密集的调控模块的存在施加了强大的限制。此外,对非同义位点和同义位点的序列变异的比较表明,最近对深度分化物种内的旁系同源物和直系同源物存在类似的选择压力。本研究首次对纤毛虫进行全基因组群体基因组分析,为未来草履虫进化和功能遗传学研究提供了宝贵的资源。

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