Schulz Frederik, Tyml Tomáš, Pizzetti Ilaria, Dyková Iva, Fazi Stefano, Kostka Martin, Horn Matthias
Department of Microbiology and Ecosystem Sience, University of Vienna, Althanstraße 14, A-1090 Vienna, Austria.
Faculty of Science, University of South Bohemia, Branišovská 31, 370 05 České Budějovice, Czech Republic.
Sci Rep. 2015 Aug 25;5:13381. doi: 10.1038/srep13381.
Amoebae play an important ecological role as predators in microbial communities. They also serve as niche for bacterial replication, harbor endosymbiotic bacteria and have contributed to the evolution of major human pathogens. Despite their high diversity, marine amoebae and their association with bacteria are poorly understood. Here we describe the isolation and characterization of two novel marine amoebae together with their bacterial endosymbionts, tentatively named 'Candidatus Occultobacter vannellae' and 'Candidatus Nucleophilum amoebae'. While one amoeba strain is related to Vannella, a genus common in marine habitats, the other represents a novel lineage in the Amoebozoa. The endosymbionts showed only low similarity to known bacteria (85-88% 16S rRNA sequence similarity) but together with other uncultured marine bacteria form a sister clade to the Coxiellaceae. Using fluorescence in situ hybridization and transmission electron microscopy, identity and intracellular location of both symbionts were confirmed; one was replicating in host-derived vacuoles, whereas the other was located in the perinuclear space of its amoeba host. This study sheds for the first time light on a so far neglected group of protists and their bacterial symbionts. The newly isolated strains represent easily maintainable model systems and pave the way for further studies on marine associations between amoebae and bacterial symbionts.
变形虫在微生物群落中作为捕食者发挥着重要的生态作用。它们还为细菌复制提供了生态位,容纳内共生细菌,并对主要人类病原体的进化有所贡献。尽管变形虫种类高度多样,但海洋变形虫及其与细菌的关联却鲜为人知。在此,我们描述了两种新型海洋变形虫及其细菌内共生体的分离和特征,暂命名为“候选隐匿杆菌凡内拉菌”和“候选嗜核变形虫菌”。其中一种变形虫菌株与海洋栖息地常见的凡内拉属有关,另一种则代表了变形虫门中的一个新谱系。这些内共生体与已知细菌的相似性较低(16S rRNA序列相似性为85 - 88%),但与其他未培养的海洋细菌一起形成了考克斯氏体科的一个姐妹进化枝。通过荧光原位杂交和透射电子显微镜,确认了两种共生体的身份和细胞内位置;一种在宿主衍生的液泡中复制,而另一种位于其变形虫宿主的核周空间。这项研究首次揭示了迄今为止被忽视的一类原生生物及其细菌共生体。新分离的菌株代表了易于维持的模型系统,为进一步研究变形虫与细菌共生体之间的海洋关联铺平了道路。