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将内部和外部细菌群落控制联系起来,为远洋病毒与细菌的比例提供了机制框架。

Linking internal and external bacterial community control gives mechanistic framework for pelagic virus-to-bacteria ratios.

作者信息

Våge Selina, Pree Bernadette, Thingstad T Frede

机构信息

Department of Biology, University of Bergen and Hjort Centre for Marine Ecosystem Dynamics, N-5020, Bergen, Norway.

出版信息

Environ Microbiol. 2016 Nov;18(11):3932-3948. doi: 10.1111/1462-2920.13391. Epub 2016 Jul 5.

Abstract

For more than 25 years, virus-to-bacteria ratios (VBR) have been measured and interpreted as indicators of the importance of viruses in aquatic ecosystems, yet a generally accepted theory for understanding mechanisms controlling VBR is still lacking. Assuming that the denominator (total bacterial abundance) is primarily predator controlled, while viral lysis compensates for host growth rates exceeding this grazing loss, the numerator (viral abundance) reflects activity differences between prokaryotic hosts. VBR is then a ratio between mechanisms generating structure within the bacterial community and interactions between different plankton functional types controlling bacterial community size. We here show how these arguments can be formalized by combining a recently published model for co-evolutionary host-virus interactions, with a previously published "minimum" model for the microbial food web. The result is a framework where viral lysis links bacterial diversity to microbial food web structure and function, creating relationships between different levels of organization that are strongly modified by organism-level properties such as cost of resistance.

摘要

25 多年来,病毒与细菌的比例(VBR)一直被测量并解释为病毒在水生生态系统中重要性的指标,但目前仍缺乏一个被广泛接受的理论来理解控制 VBR 的机制。假设分母(细菌总丰度)主要受捕食者控制,而病毒裂解补偿了超过这种捕食损失的宿主生长速率,那么分子(病毒丰度)反映了原核宿主之间的活性差异。VBR 于是成为细菌群落内部产生结构的机制与控制细菌群落大小的不同浮游生物功能类型之间相互作用的比率。我们在此展示了如何通过将最近发表的宿主 - 病毒共同进化相互作用模型与之前发表的微生物食物网“最小”模型相结合,使这些观点形式化。结果是一个框架,其中病毒裂解将细菌多样性与微生物食物网的结构和功能联系起来,在不同组织层次之间建立关系,而这些关系会受到诸如抗性成本等生物体水平特性的强烈影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee81/5132033/b6a1bbd7adfc/EMI-18-3932-g001.jpg

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