The Impact of Lytic Viruses on Bacterial Carbon Metabolism in a Temperate Freshwater Reservoir (Naussac, France)

A. S. Pradeep Ram, Marie-Eve Mauduit, J. Colombet, F. Perrière, A. Thouvenot, T. Sime-Ngando
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Abstract

In aquatic systems, the impact of the viral regulation of bacterial carbon metabolism (BCM) is often overlooked compared with nutrient supply. To address this gap, an investigation was conducted in the euphotic and aphotic zones of a mesotrophic freshwater reservoir (Naussac, France) to assess the relative influence of lytic viral infection on key bacterial metabolic parameters, specifically bacterial production (BP) and respiration (BR), as indicators of BCM. Measured using flow cytometry, the abundance of viral sub-groups (V1–V3) exhibited a consistent pattern in tandem with their bacterial hosts across both time and space. A more significant relationship between bacterial and viral parameters than between physicochemical factors suggested a prevailing internal control mechanism that was potentially driven by viral lysis. Viral-mediated bacterial mortality up to 65% was evident in the euphotic zone. The observed variation in BCM (ranging from 7% to 32%) was explained by an uncoupling between BR and BP. Notably, BR was significantly higher (three-fold) than BP in bacterial communities subjected to low in situ phosphate concentrations (<0.5 µM P) and high nutrient stoichiometric ratios (N:P > 60, C:P > 900). An antagonistic relationship between lytic viruses and BCM, whereby the repression of bacterial growth results in elevated respiratory demands, could potentially be attributed to substrate availability constraints.
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溶解性病毒对温带淡水水库中细菌碳代谢的影响(法国,瑙萨克)
在水生系统中,与营养物质供应相比,病毒对细菌碳代谢(BCM)的影响往往被忽视。为了填补这一空白,我们在一个中营养淡水水库(法国瑙萨克)的透明度区和凋亡区进行了一项调查,以评估溶解性病毒感染对关键细菌代谢参数(尤其是细菌产量(BP)和呼吸作用(BR))的相对影响,这些参数是细菌碳代谢的指标。使用流式细胞仪测量发现,病毒亚群(V1-V3)的丰度与其细菌宿主的丰度在时间和空间上呈现出一致的模式。细菌参数与病毒参数之间的关系比理化因素之间的关系更为明显,这表明存在一种可能由病毒溶解驱动的内部控制机制。在透光区,病毒介导的细菌死亡率高达 65%。观察到的 BCM 变化(从 7% 到 32%)是由 BR 和 BP 之间的不耦合解释的。值得注意的是,在原位磷酸盐浓度较低的细菌群落中,BR 明显高于 BP(三倍)(60,C:P > 900)。溶菌病毒与 BCM 之间的拮抗关系,即细菌生长受抑制导致呼吸需求增加,可能是由于底物供应的限制。
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