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新型锥虫与细菌的关联:内共生进化实例

Novel Trypanosomatid-Bacterium Association: Evolution of Endosymbiosis in Action.

作者信息

Kostygov Alexei Y, Dobáková Eva, Grybchuk-Ieremenko Anastasiia, Váhala Dalibor, Maslov Dmitri A, Votýpka Jan, Lukeš Julius, Yurchenko Vyacheslav

机构信息

Life Science Research Centre, Faculty of Science, University of Ostrava, Ostrava, Czech Republic.

Biology Centre, Institute of Parasitology, Czech Academy of Sciences, České Budějovice (Budweis), Czech Republic.

出版信息

mBio. 2016 Mar 15;7(2):e01985. doi: 10.1128/mBio.01985-15.

Abstract

UNLABELLED

We describe a novel symbiotic association between a kinetoplastid protist, Novymonas esmeraldas gen. nov., sp. nov., and an intracytoplasmic bacterium, "Candidatus Pandoraea novymonadis" sp. nov., discovered as a result of a broad-scale survey of insect trypanosomatid biodiversity in Ecuador. We characterize this association by describing the morphology of both organisms, as well as their interactions, and by establishing their phylogenetic affinities. Importantly, neither partner is closely related to other known organisms previously implicated in eukaryote-bacterial symbiosis. This symbiotic association seems to be relatively recent, as the host does not exert a stringent control over the number of bacteria harbored in its cytoplasm. We argue that this unique relationship may represent a suitable model for studying the initial stages of establishment of endosymbiosis between a single-cellular eukaryote and a prokaryote. Based on phylogenetic analyses, Novymonas could be considered a proxy for the insect-only ancestor of the dixenous genus Leishmania and shed light on the origin of the two-host life cycle within the subfamily Leishmaniinae.

IMPORTANCE

The parasitic trypanosomatid protist Novymonas esmeraldas gen. nov., sp. nov. entered into endosymbiosis with the bacterium "Ca. Pandoraea novymonadis" sp. nov. This novel and rather unstable interaction shows several signs of relatively recent establishment, qualifying it as a potentially unique transient stage in the increasingly complex range of eukaryotic-prokaryotic relationships.

摘要

未标注

我们描述了一种新的共生关系,它存在于一种动质体原生生物新维蒙氏虫(Novymonas esmeraldas)属名新、种名新,与一种胞质内细菌新维蒙氏拟潘多拉菌(“Candidatus Pandoraea novymonadis”)种名新之间,这种共生关系是在对厄瓜多尔昆虫锥虫多样性进行广泛调查时发现的。我们通过描述两种生物体的形态及其相互作用,并确定它们的系统发育亲缘关系来表征这种共生关系。重要的是,这两个共生伙伴均与先前涉及真核生物 - 细菌共生的其他已知生物体没有密切关系。这种共生关系似乎相对较新,因为宿主对其细胞质中所含细菌的数量并未施加严格控制。我们认为这种独特的关系可能是研究单细胞真核生物与原核生物之间内共生建立初始阶段的合适模型。基于系统发育分析,新维蒙氏虫可被视为双宿主利什曼原虫属仅存在于昆虫体内的祖先的替代物,并有助于揭示利什曼亚科双宿主生命周期的起源。

重要性

寄生性锥虫原生生物新维蒙氏虫与新维蒙氏拟潘多拉菌形成了内共生关系。这种新颖且相当不稳定的相互作用显示出一些相对较新建立的迹象,使其成为真核生物 - 原核生物关系日益复杂的范围内潜在的独特过渡阶段。

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