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首页> 外文期刊>Aquatic Microbial Ecology >Intraguild predation reduces bacterial species richness and loosens the viral loop in aquatic systems: ‘kill the killer of the winner’ hypothesis
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Intraguild predation reduces bacterial species richness and loosens the viral loop in aquatic systems: ‘kill the killer of the winner’ hypothesis

机译:公会内部的捕食会减少细菌物种的丰富性并放松水生系统中的病毒循环:“杀死获胜者的杀手”假说

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ABSTRACT: Viruses perform an ecological function (diversity regulation) and a biogeochemical function (viral loop) in microbial food webs. We used an idealized food web model to evaluate the impact of viral loss by protozoan grazing on these 2 functions. Viral loss by protozoan grazing is an example of intraguild predation (IGP); protozoan predators kill viruses, which in turn kill the winner of the nutrient competition among bacteria. The model considers the interactions among uninfected and infected host cells, free-living viruses, protozoa, and nutrients. Calculations showed that this ‘kill the killer of the winner’ (KKW) process has a negative effect on bacterial species richness (BSR). This is because the KKW process reduces the virus to bacteria ratio, which undermines the ‘kill the winner’ (KW) process. In particular, the intensity of the KKW process is influenced by the latent period of viruses; a longer latent period leads to a reduction in BSR by causing the viruses in host cells to be more at risk of being killed by grazing. In addition, under high IGP with a long latent period, eutrophication leads to a decrease in the virus to protozoa ratio, resulting in a lower BSR and a smaller contribution of the virus loop to nutrient cycling, whereas the changes are minimal under low IGP with a short latent period.
机译:摘要:病毒在微生物食物网中具有生态功能(多样性调节)和生物地球化学功能(病毒环)。我们使用理想化的食物网络模型来评估原生动物放牧对这两个功能的病毒损失的影响。原生动物放牧引起的病毒损失是公会内捕食(IGP)的一个例子。原生动物的天敌杀死病毒,从而杀死细菌之间营养竞争的赢家。该模型考虑了未感染和感染的宿主细胞,自由生活的病毒,原生动物和营养素之间的相互作用。计算表明,这种“杀死获胜者的杀手”(KKW)过程对细菌物种丰富度(BSR)产生了负面影响。这是因为KKW过程降低了病毒与细菌的比率,从而破坏了“杀死获胜者”(KW)过程。尤其是,KWK过程的强度受病毒潜伏期的影响。较长的潜伏期会导致宿主细胞中的病毒更容易被放牧杀死,从而导致BSR降低。此外,在高IGP且潜伏期长的情况下,富营养化导致病毒与原生动物的比例降低,导致BSR降低,病毒环对养分循环的贡献较小,而在IGP低的情况下,这种变化很小短暂的潜伏期。

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