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真核生物进化中的共生现象。

Symbiosis in eukaryotic evolution.

作者信息

López-García Purificación, Eme Laura, Moreira David

机构信息

Ecologie Systématique Evolution, CNRS, Université Paris-Sud, Université Paris-Saclay, AgroParisTech, 91400 Orsay, France.

Centre for Comparative Genomics and Evolutionary Bioinformatics, Department of Biochemistry and Molecular Biology, Dalhousie University, Halifax, Canada NS B3H 4R2.

出版信息

J Theor Biol. 2017 Dec 7;434:20-33. doi: 10.1016/j.jtbi.2017.02.031. Epub 2017 Feb 28.

Abstract

Fifty years ago, Lynn Margulis, inspiring in early twentieth-century ideas that put forward a symbiotic origin for some eukaryotic organelles, proposed a unified theory for the origin of the eukaryotic cell based on symbiosis as evolutionary mechanism. Margulis was profoundly aware of the importance of symbiosis in the natural microbial world and anticipated the evolutionary significance that integrated cooperative interactions might have as mechanism to increase cellular complexity. Today, we have started fully appreciating the vast extent of microbial diversity and the importance of syntrophic metabolic cooperation in natural ecosystems, especially in sediments and microbial mats. Also, not only the symbiogenetic origin of mitochondria and chloroplasts has been clearly demonstrated, but improvement in phylogenomic methods combined with recent discoveries of archaeal lineages more closely related to eukaryotes further support the symbiogenetic origin of the eukaryotic cell. Margulis left us in legacy the idea of 'eukaryogenesis by symbiogenesis'. Although this has been largely verified, when, where, and specifically how eukaryotic cells evolved are yet unclear. Here, we shortly review current knowledge about symbiotic interactions in the microbial world and their evolutionary impact, the status of eukaryogenetic models and the current challenges and perspectives ahead to reconstruct the evolutionary path to eukaryotes.

摘要

五十年前,林恩·马古利斯受到二十世纪早期提出某些真核细胞器共生起源观点的启发,基于共生作为进化机制,提出了真核细胞起源的统一理论。马古利斯深刻意识到共生在自然微生物世界中的重要性,并预见到整合的合作相互作用作为增加细胞复杂性的机制可能具有的进化意义。如今,我们已开始充分认识到微生物多样性的广泛程度以及合成代谢合作在自然生态系统,尤其是沉积物和微生物席中的重要性。此外,不仅线粒体和叶绿体的共生起源已得到明确证实,而且系统发育基因组学方法的改进以及最近发现的与真核生物关系更密切的古菌谱系进一步支持了真核细胞的共生起源。马古利斯给我们留下了“通过共生发生实现真核生物起源”的理念。尽管这一理念已在很大程度上得到验证,但真核细胞何时、何地以及具体如何进化仍不清楚。在此,我们简要回顾一下关于微生物世界中共生相互作用及其进化影响的当前知识、真核生物起源模型的现状以及重建真核生物进化路径面临的当前挑战和前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea53/5638015/c9015f116568/emss-73672-f001.jpg

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