噬菌体对冰川溪流生物膜中微多样化细菌群落的作用

H. Peter, G. Michoud, S. Busi, T. Battin
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摘要

病毒可调节微生物群落的多样性和活性。然而,人们对病毒在溪流细菌生物膜群落结构中的作用知之甚少。在这里,我们介绍了在瑞士三个冰川洪积平原排水的不同溪流中病毒群落的多样性和组成。冰川溪流的特点是极端的环境条件,包括接近冰点的温度和超寡养状态。这些条件选择了数量少但适应性强的细菌支系,它们在生物膜群落中占主导地位,并通过微分化占据利基。我们利用元基因组测序揭示了这些溪流中多样化的生物膜病毒组合。在不同的洪泛平原和溪流中,病毒群落的组成与细菌宿主的组成密切相关,宿主的特异性普遍很高。结合对噬菌体-宿主相互作用的预测和辅助代谢基因(AMGs),我们确定了感染微小多样性支系成员的噬菌体所共有的特定 AMGs。我们的工作有助于更好地理解溪流生物膜群落中细菌和噬菌体之间复杂的相互作用,尤其是受冰川融水影响、具有微多样性特征的溪流。
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The role of phages for microdiverse bacterial communities in proglacial stream biofilms
Viruses modulate the diversity and activity of microbial communities. However, little is known about their role for the structure of stream bacterial biofilm communities. Here, we present insights into the diversity and composition of viral communities in various streams draining three proglacial floodplains in Switzerland. Proglacial streams are characterized by extreme environmental conditions, including near-freezing temperatures and ultra-oligotrophy. These conditions select for few but well-adapted bacterial clades, which dominate biofilm communities and occupy niches via microdiversification. We used metagenomic sequencing to reveal a diverse biofilm viral assemblage in these streams. Across the different floodplains and streams, viral community composition was tightly coupled to that of the bacterial hosts, which was underscored by generally high host specificity. Combining predictions of phage-host interactions with auxiliary metabolic genes (AMGs), we identify specific AMGs shared by phages infecting microdiverse clade members. Our work provides a step towards a better understanding of the complex interactions among bacteria and phages in stream biofilm communities in general and streams influenced by glacier meltwaters and characterized by microdiversity in particular.
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