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线粒体的深层起源在采样的α变形菌之外。

Deep mitochondrial origin outside the sampled alphaproteobacteria.

机构信息

Department of Cell and Molecular Biology, Science for Life Laboratory, Uppsala University, Uppsala, Sweden.

Department of Biology, Utrecht University, Utrecht, The Netherlands.

出版信息

Nature. 2018 May;557(7703):101-105. doi: 10.1038/s41586-018-0059-5. Epub 2018 Apr 25.

DOI:10.1038/s41586-018-0059-5
PMID:29695865
Abstract

Mitochondria are ATP-generating organelles, the endosymbiotic origin of which was a key event in the evolution of eukaryotic cells . Despite strong phylogenetic evidence that mitochondria had an alphaproteobacterial ancestry , efforts to pinpoint their closest relatives among sampled alphaproteobacteria have generated conflicting results, complicating detailed inferences about the identity and nature of the mitochondrial ancestor. While most studies support the idea that mitochondria evolved from an ancestor related to Rickettsiales, an order that includes several host-associated pathogenic and endosymbiotic lineages, others have suggested that mitochondria evolved from a free-living group. Here we re-evaluate the phylogenetic placement of mitochondria. We used genome-resolved binning of oceanic metagenome datasets and increased the genomic sampling of Alphaproteobacteria with twelve divergent clades, and one clade representing a sister group to all Alphaproteobacteria. Subsequent phylogenomic analyses that specifically address long branch attraction and compositional bias artefacts suggest that mitochondria did not evolve from Rickettsiales or any other currently recognized alphaproteobacterial lineage. Rather, our analyses indicate that mitochondria evolved from a proteobacterial lineage that branched off before the divergence of all sampled alphaproteobacteria. In light of this new result, previous hypotheses on the nature of the mitochondrial ancestor should be re-evaluated.

摘要

线粒体是产生 ATP 的细胞器,其内共生起源是真核细胞进化的关键事件。尽管有强烈的系统发育证据表明线粒体具有α变形菌的祖先,但在对采样的α变形菌中确定其最接近的亲缘关系的努力中,产生了相互矛盾的结果,这使得关于线粒体祖先的身份和性质的详细推断变得复杂。虽然大多数研究支持线粒体从与立克次氏体(包括几个与宿主相关的致病和内共生谱系的目)相关的祖先进化而来的观点,但其他研究表明线粒体从自由生活的群体进化而来。在这里,我们重新评估线粒体的系统发育位置。我们使用海洋宏基因组数据集的基因组分辨率分箱,并增加了十二个不同进化枝和一个代表所有α变形菌姐妹群的α变形菌的基因组采样,随后进行了专门解决长枝吸引和组成偏差伪影的系统基因组分析表明,线粒体不是从立克次氏体或任何其他目前公认的α变形菌谱系进化而来的。相反,我们的分析表明,线粒体是从分枝于所有采样的α变形菌分化之前的一个细菌谱系进化而来的。鉴于这一新结果,应该重新评估以前关于线粒体祖先性质的假说。

相似文献

1
Deep mitochondrial origin outside the sampled alphaproteobacteria.线粒体的深层起源在采样的α变形菌之外。
Nature. 2018 May;557(7703):101-105. doi: 10.1038/s41586-018-0059-5. Epub 2018 Apr 25.
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A phylometagenomic exploration of oceanic alphaproteobacteria reveals mitochondrial relatives unrelated to the SAR11 clade.海洋 α-变形菌的系统发生基因组学研究揭示了与 SAR11 分支无关的线粒体相关菌。
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On the origin of mitochondria: a multilayer network approach.线粒体的起源:一种多层次网络方法。
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Phylogenetic analyses with systematic taxon sampling show that mitochondria branch within Alphaproteobacteria.系统分类群采样的系统发育分析表明,线粒体分支存在于α变形菌中。
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Phylogenomic analysis of Odyssella thessalonicensis fortifies the common origin of Rickettsiales, Pelagibacter ubique and Reclimonas americana mitochondrion.奥塞勒西亚属(Odyssella thessalonicensis)的系统基因组分析巩固了立克次体目、海杆菌属(Pelagibacter ubique)和美洲嗜泉菌属(Reclimonas americana)线粒体的共同起源。
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Bacterial genome chimaerism and the origin of mitochondria.细菌基因组嵌合体与线粒体的起源。
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Site-and-branch-heterogeneous analyses of an expanded dataset favour mitochondria as sister to known Alphaproteobacteria.基于扩展数据集的种系发生分析支持线粒体是已知的α变形菌的姐妹群。
Nat Ecol Evol. 2022 Mar;6(3):253-262. doi: 10.1038/s41559-021-01638-2. Epub 2022 Jan 13.
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The SAR11 group of alpha-proteobacteria is not related to the origin of mitochondria.α-变形菌纲的 SAR11 组与线粒体的起源无关。
PLoS One. 2012;7(1):e30520. doi: 10.1371/journal.pone.0030520. Epub 2012 Jan 23.
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Genome phylogenies indicate a meaningful alpha-proteobacterial phylogeny and support a grouping of the mitochondria with the Rickettsiales.基因组系统发育显示出有意义的α-变形菌系统发育,并支持线粒体与立克次氏体目归为一组。
Mol Biol Evol. 2006 Jan;23(1):74-85. doi: 10.1093/molbev/msj009. Epub 2005 Sep 8.
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Phylogenomic evidence for a common ancestor of mitochondria and the SAR11 clade.系统发生基因组学证据表明线粒体和 SAR11 分支具有共同祖先。
Sci Rep. 2011;1:13. doi: 10.1038/srep00013. Epub 2011 Jun 14.

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