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Predator-Specific Enrichment of Actinobacteria from a Cosmopolitan Freshwater Clade in Mixed Continuous Culture

机译:混合连续培养中大都会淡水进化枝中捕食者特定放线菌的富集

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摘要

We investigated whether individual populations of freshwater bacteria in mixed experimental communities may exhibit specific responses to the presence of different bacterivorous protists. In two successive experiments, a two-stage continuous cultivation system was inoculated with nonaxenic batch cultures of the cryptophyte Cryptomonas sp. Algal exudates provided the sole source of organic carbon for growth of the accompanying microflora. The dynamics of several 16S rRNA-defined bacterial populations were followed in the experimental communities. Although the composition and stability of the two microbial communities differed, numerous members of the first assemblage could again be detected during the second experiment. The introduction of a size-selectively feeding mixotrophic nanoflagellate (Ochromonas sp.) always resulted in an immediate bloom of a single phylotype population of members of the class Actinobacteria (Ac1). These bacteria were phylogenetically affiliated with an uncultured lineage of gram-positive bacteria that have been found in freshwater habitats only. The Ac1 cells were close to the average size of freshwater bacterioplankton and significantly smaller than any of the other experimental community members. In contrast, no increase of the Ac1 population was observed in vessels exposed to the bacterivorous ciliate Cyclidium glaucoma. However, when the Ochromonas sp. was added after the establishment of C. glaucoma, the proportion of population Ac1 within the microbial community rapidly increased. Populations of a beta proteobacterial phylotype related to an Aquabacterium sp. decreased relative to the total bacterial communities following the addition of either predator, albeit to different extents. The community structure of pelagic microbial assemblages can therefore be influenced by the taxonomic composition of the predator community.
机译:我们调查了混合实验社区中的淡水细菌个体群体是否可能对不同细菌性原生生物的存在表现出特异性反应。在两个连续的实验中,用隐生植物Cryptomonas sp。的非轴生分批培养物接种了两阶段连续培养系统。藻类渗出液为伴随的微生物群落的生长提供了唯一的有机碳源。在实验社区中追踪了几种16S rRNA定义的细菌种群的动态。尽管两个微生物群落的组成和稳定性不同,但是在第二个实验中可以再次检测到第一个组合的许多成员。大小选择性摄食混合营养的纳米鞭毛藻(Ochromonas sp。)的引入总是导致放线菌属(Ac1)类成员的单个系统型种群立即开花。这些细菌在系统发育上与仅在淡水生境中发现的未培养的革兰氏阳性菌谱系有关。 Ac1细胞接近淡水浮游生物的平均大小,并且显着小于其他任何实验群落成员。相反,在暴露于细菌性纤毛睫状体青光眼的容器中未观察到Ac1种群的增加。然而,当Ochromonas sp。在青光眼青光眼成立后添加,微生物群落中Ac1群体的比例迅速增加。与水杆菌属物种有关的β细菌细菌系统型的种群。添加捕食者后,相对于总细菌群落的减少程度有所降低,尽管程度有所不同。因此,中上层微生物群落的群落结构可能受到捕食者群落的生物分类组成的影响。

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