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草履虫线粒体基因组的群体遗传学:重组、突变谱和选择的有效性。

Population Genetics of Paramecium Mitochondrial Genomes: Recombination, Mutation Spectrum, and Efficacy of Selection.

机构信息

Department of Biology, Indiana University, Bloomington.

Department of Genetics, Stanford University School of Medicine, Stanford, CA.

出版信息

Genome Biol Evol. 2019 May 1;11(5):1398-1416. doi: 10.1093/gbe/evz081.

Abstract

The evolution of mitochondrial genomes and their population-genetic environment among unicellular eukaryotes are understudied. Ciliate mitochondrial genomes exhibit a unique combination of characteristics, including a linear organization and the presence of multiple genes with no known function or detectable homologs in other eukaryotes. Here we study the variation of ciliate mitochondrial genomes both within and across 13 highly diverged Paramecium species, including multiple species from the P. aurelia species complex, with four outgroup species: P. caudatum, P. multimicronucleatum, and two strains that may represent novel related species. We observe extraordinary conservation of gene order and protein-coding content in Paramecium mitochondria across species. In contrast, significant differences are observed in tRNA content and copy number, which is highly conserved in species belonging to the P. aurelia complex but variable among and even within the other Paramecium species. There is an increase in GC content from ∼20% to ∼40% on the branch leading to the P. aurelia complex. Patterns of polymorphism in population-genomic data and mutation-accumulation experiments suggest that the increase in GC content is primarily due to changes in the mutation spectra in the P. aurelia species. Finally, we find no evidence of recombination in Paramecium mitochondria and find that the mitochondrial genome appears to experience either similar or stronger efficacy of purifying selection than the nucleus.

摘要

线粒体基因组的进化及其在单细胞真核生物中的群体遗传环境研究还不够深入。纤毛虫线粒体基因组表现出独特的特征组合,包括线性组织和多个具有未知功能或在其他真核生物中没有可检测同源物的基因的存在。在这里,我们研究了 13 种高度分化的草履虫物种内和物种间的纤毛虫线粒体基因组的变异,包括来自 P. aurelia 种复合体的多个物种,以及 4 种外群物种:P. caudatum、P. multimicronucleatum 和两种可能代表新相关物种的菌株。我们观察到草履虫线粒体在物种间基因排列和蛋白质编码内容的非凡保守性。相比之下,在 tRNA 含量和拷贝数方面观察到显著差异,在属于 P. aurelia 复合体的物种中高度保守,但在其他草履虫物种中甚至在物种内都存在差异。在通往 P. aurelia 复合体的分支上,GC 含量从约 20%增加到约 40%。群体基因组数据和突变积累实验中的多态性模式表明,GC 含量的增加主要是由于 P. aurelia 物种的突变谱发生了变化。最后,我们没有发现草履虫线粒体中的重组证据,并且发现线粒体基因组似乎经历了与核相似或更强的纯化选择效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a687/6505448/a53281ab8e61/evz081f4.jpg

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