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Response of Bacterioplankton Communities to Cadmium Exposure in Coastal Water Microcosms with High Temporal Variability

机译:沿海浮游生物的细菌浮游生物群落对镉暴露的高时间变异性

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摘要

Multiple anthropogenic disturbances to bacterial diversity have been investigated in coastal ecosystems, in which temporal variability in the bacterioplankton community has been considered a ubiquitous process. However, far less is known about the temporal dynamics of a bacterioplankton community responding to pollution disturbances such as toxic metals. We used coastal water microcosms perturbed with 0, 10, 100, and 1,000 μg liter−1 of cadmium (Cd) for 2 weeks to investigate temporal variability, Cd-induced patterns, and their interaction in the coastal bacterioplankton community and to reveal whether the bacterial community structure would reflect the Cd gradient in a temporally varying system. Our results showed that the bacterioplankton community structure shifted along the Cd gradient consistently after a 4-day incubation, although it exhibited some resistance to Cd at low concentration (10 μg liter−1). A process akin to an arms race between temporal variability and Cd exposure was observed, and the temporal variability overwhelmed Cd-induced patterns in the bacterial community. The temporal succession of the bacterial community was correlated with pH, dissolved oxygen, NO3-N, NO2-N, PO43−-P, dissolved organic carbon, and chlorophyll a, and each of these parameters contributed more to community variance than Cd did. However, elevated Cd levels did decrease the temporal turnover rate of community. Furthermore, key taxa, affiliated to the families Flavobacteriaceae, Rhodobacteraceae, Erythrobacteraceae, Piscirickettsiaceae, and Alteromonadaceae, showed a high frequency of being associated with Cd levels during 2 weeks. This study provides direct evidence that specific Cd-induced patterns in bacterioplankton communities exist in highly varying manipulated coastal systems. Future investigations on an ecosystem scale across longer temporal scales are needed to validate the observed pattern.
机译:在沿海生态系统中,已经对细菌多样性的多种人为干扰进行了调查,其中浮游植物群落的时间变异被认为是普遍存在的过程。然而,关于浮游生物群落对诸如有毒金属之类的污染干扰的响应的时间动态知之甚少。我们使用了受0、10、100和1,000μg升 −1 的镉(Cd)干扰的沿海水微观世界2周,以研究时间变异性,Cd诱导的模式及其在沿海地区的相互作用细菌浮游生物群落,并揭示细菌群落结构是否会在时变系统中反映Cd梯度。我们的结果表明,尽管在低浓度(10μg升 -1 )下对镉具有一定的抵抗力,但浮游细菌的群落结构在培养4天后始终沿Cd梯度移动。观察到了类似于时间变异性和镉暴露之间军备竞赛的过程,并且时间变异性使细菌群落中镉诱导的模式不堪重负。细菌群落的时间演替与pH,溶解氧,NO3 - -N,NO2 - -N,PO4 3-−sup>- P,溶解的有机碳和叶绿素a,并且这些参数对每个社区变化的贡献都比Cd大。然而,升高的镉水平确实降低了社区的暂时周转率。此外,隶属于黄杆菌科,红细菌菌科,红细菌菌科,Piscirickettsiaceae和Alteromonadaceae科的主要分类单元在2周内与Cd水平相关的频率很高。这项研究提供了直接的证据,证明在浮游生物群落中特定的Cd诱导模式存在于高度变化的受控沿海系统中。需要在更长的时间尺度上对生态系统尺度进行进一步调查,以验证观察到的模式。

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