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Response of sediment microbial community structure in a freshwater reservoir to manipulations in oxygen availability

机译:淡水水库中沉积物微生物群落结构对氧气利用率的响应

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摘要

Hypolimnetic oxygenation systems (HOx) are being increasingly used in freshwater reservoirs to elevate dissolved oxygen levels in the hypolimnion and suppress sediment-water fluxes of soluble metals (e.g. Fe and Mn) which are often microbially mediated. We assessed changes in sediment microbial community structure and corresponding biogeochemical cycling on a reservoir-wide scale as a function of HOx operations. Sediment microbial biomass as quantified by DNA concentration was increased in regions most influenced by the HOx. Following an initial decrease in biomass in the upper sediment while oxygen concentrations were low, biomass typically increased at all depths as the 4-month-long oxygenation season progressed. A distinct shift in microbial community structure was only observed at the end of the season in the upper sediment near the HOx. While this shift was correlated to HOx-enhanced oxygen availability, increased TOC levels and precipitation of Fe- and Mn-oxides, abiotic controls on Fe and Mn cycling, and/or the adaptability of many bacteria to variations in prevailing electron acceptors may explain the delayed response and the comparatively limited changes at other locations. While the sediment microbial community proved remarkably resistant to relatively short-term changes in HOx operations, HOx-induced variation in microbial structure, biomass, and activity was observed after a full season of oxygenation
机译:催眠加氧系统(HOx)越来越多地用于淡水水库中,以提高次水溶质中的溶解氧水平并抑制通常由微生物介导的可溶性金属(例如Fe和Mn)的沉积物-水通量。我们根据HOx操作评估了储层范围内沉积物微生物群落结构的变化和相应的生物地球化学循环。通过DNA浓度量化的沉积物微生物量在受HOx影响最大的区域增加。在上层沉积物中生物量最初减少而氧气浓度低的情况下,随着长达4个月的充氧季节的进行,生物量通常在所有深度都增加。仅在季节结束时,HOx附近的上部沉积物中才观察到微生物群落结构的明显变化。虽然这种变化与提高HOx的氧气利用率,TOC水平增加以及Fe和Mn氧化物的沉淀,Fe和Mn循环的非生物控制和/或许多细菌对主要电子受体变化的适应性有关,但可能解释了响应延迟以及其他位置的变化相对有限。事实证明,沉积物微生物群落对HOx操作的相对短期变化具有明显的抵抗力,但在整个氧合季节后,观察到了HOx引起的微生物结构,生物量和活性变化

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