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纤毛虫真涡虫的共生体:多样性、模式和作为细菌-真核生物内共生体模型的潜力。

Symbionts of the ciliate Euplotes: diversity, patterns and potential as models for bacteria-eukaryote endosymbioses.

机构信息

Department of Botany, University of British Columbia, British Columbia, Canada.

Department of Biology, University of Pisa, Pisa, Italy.

出版信息

Proc Biol Sci. 2019 Jul 24;286(1907):20190693. doi: 10.1098/rspb.2019.0693. Epub 2019 Jul 17.

Abstract

Endosymbioses between bacteria and eukaryotes are enormously important in ecology and evolution, and as such are intensely studied. Despite this, the range of investigated hosts is narrow in the context of the whole eukaryotic tree of life: most of the information pertains to animal hosts, while most of the diversity is found in unicellular protists. A prominent case study is the ciliate Euplotes, which has repeatedly taken up the bacterium Polynucleobacter from the environment, triggering its transformation into obligate endosymbiont. This multiple origin makes the relationship an excellent model to understand recent symbioses, but Euplotes may host bacteria other than Polynucleobacter, and a more detailed knowledge of these additional interactions is needed in order to correctly interpret the system. Here, we present the first systematic survey of Euplotes endosymbionts, adopting a classical as well as a metagenomic approach, and review the state of knowledge. The emerging picture is indeed quite complex, with some Euplotes harbouring rich, stable prokaryotic communities not unlike those of multicellular animals. We provide insights into the distribution, evolution and diversity of these symbionts (including the establishment of six novel bacterial taxa), and outline differences and similarities with the most well-understood group of eukaryotic hosts: insects.

摘要

内共生现象是细菌和真核生物之间的一种共生关系,在生态学和进化中具有重要意义,因此受到了广泛的研究。尽管如此,在整个真核生物的生命树中,被研究的宿主范围是狭窄的:大多数信息都与动物宿主有关,而大多数多样性则存在于单细胞原生生物中。一个突出的案例研究是纤毛虫 Euplotes,它多次从环境中摄取细菌 Polynucleobacter,并促使其转变为专性内共生体。这种多次起源使这种关系成为理解近期共生关系的绝佳模型,但 Euplotes 可能还会宿主 Polynucleobacter 以外的其他细菌,为了正确解释该系统,需要更详细地了解这些额外的相互作用。在这里,我们采用经典和宏基因组学方法,对 Euplotes 内共生体进行了首次系统调查,并回顾了现有的知识。所呈现的画面确实非常复杂,一些 Euplotes 宿主拥有丰富、稳定的原核生物群落,与多细胞动物的群落非常相似。我们深入了解了这些共生体的分布、进化和多样性(包括建立了六个新的细菌分类群),并概述了它们与最被理解的真核生物宿主群体(昆虫)之间的差异和相似之处。

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