Pradeep Ram Angia Sriram, Mauduit Marie-Eve, Colombet Jonathan, Perriere Fanny, Thouvenot Antoine, Sime-Ngando Télesphore
Laboratoire Microorganismes: Génome et Environnement, UMR CNRS 6023, Université Clermont-Auvergne, CEDEX, 63178 Aubière, France.
Athos Environnement, 112 Avenue du Brézet, 63100 Clermont Ferrand, France.
Microorganisms. 2022 Mar 25;10(4):715. doi: 10.3390/microorganisms10040715.
In freshwater environments, limited data exist on the impact of mortality forces (viruses and heterotrophic nanoflagellates) on bacterial growth efficiency (BGE, index of bacterial carbon metabolism) compared to resource availability. An investigation to determine the relative influence of viral lysis and flagellate predation (top-down forces) on BGE was conducted in a mesotrophic freshwater system (Lake Goule, France) with time and space. Viral abundance was significantly (p < 0.001) related to bacterial abundance by a power law function with an exponent less than 1, emphasizing that the increases in host population (bacteria) together with viruses were not proportionate. A lytic viral strategy was evident throughout the study period, with high lysis of the bacterial population (up to 60%) supported by viral production rates. Viral processes (lysis and production) that were influenced by bacterial production and heterotrophic nanoflagellate abundance had a positive impact on BGE. Estimates of BGE were variable (9.9−45.5%) due to uncoupling between two metabolic parameters—namely bacterial production and respiration. The existence of a synergistic relationship between viruses and flagellates with bacteria in Lake Goule highlighted the decisive impact of top-down agents in sustaining the bacterial carbon metabolism of non-infected population through the nature of vital resources released via mortality processes.
在淡水环境中,与资源可利用性相比,关于致死因素(病毒和异养纳米鞭毛虫)对细菌生长效率(BGE,细菌碳代谢指标)影响的数据有限。在一个中营养淡水系统(法国古勒湖)中,针对病毒裂解和鞭毛虫捕食(自上而下的力量)对BGE的相对影响进行了一项时空调查。病毒丰度与细菌丰度通过指数小于1的幂律函数显著相关(p < 0.001),这表明宿主种群(细菌)与病毒数量的增加不成比例。在整个研究期间,裂解性病毒策略很明显,病毒产生率支持了细菌种群的高裂解率(高达60%)。受细菌生产和异养纳米鞭毛虫丰度影响的病毒过程(裂解和产生)对BGE有积极影响。由于细菌生产和呼吸这两个代谢参数之间的解耦,BGE的估计值是可变的(9.9−45.5%)。法国古勒湖中病毒、鞭毛虫与细菌之间存在协同关系,这突出了自上而下的因素通过死亡过程释放的重要资源的性质,对维持未感染种群的细菌碳代谢具有决定性影响。