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Hydrologic linkages drive spatial structuring of bacterial assemblages and functioning in alpine floodplains

机译:水文联系驱动高山洪泛区细菌群落的空间结构和功能

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摘要

Microbial community assembly and microbial functions are affected by a number of different but coupled drivers such as local habitat characteristics, dispersal rates, and species interactions. In groundwater systems, hydrological flow can introduce spatial structure and directional dependencies among these drivers. We examined the importance of hydrology in structuring bacterial communities and their function within two alpine floodplains during different hydrological states. Piezometers were installed in stream sediments and surrounding riparian zones to assess hydrological flows and also were used as incubation chambers to examine bacterial community structures and enzymatic functions along hydrological flow paths. Spatial eigenvector models in conjunction with models based on physico-chemical groundwater characteristics were used to evaluate the importance of hydrologically-driven processes influencing bacterial assemblages and their enzymatic activities. Our results suggest a strong influence (up to 40% explained variation) of hydrological connectivity on enzymatic activities. The effect of hydrology on bacterial community structure was considerably less strong, suggesting that assemblages demonstrate large functional plasticity/redundancy. Effect size varied between hydrological periods but flow-related mechanisms always had the most power in explaining both bacterial structure and functioning. Changes in hydrology should be considered in models predicting ecosystem functioning and integrated into ecosystem management strategies for floodplains.
机译:微生物群落的组装和微生物功能受许多不同但相互耦合的驱动因素的影响,例如局部生境特征,扩散速度和物种相互作用。在地下水系统中,水文流量会在这些驱动因素之间引入空间结构和方向依赖性。我们研究了水文在构造细菌群落及其在两个不同水文状态下的两个高山洪泛区中的功能中的重要性。压力计安装在河流沉积物和河岸带周围,以评估水文流量,还用作孵化室,以检查沿水文流动路径的细菌群落结构和酶功能。空间特征向量模型与基于理化地下水特征的模型一起用于评估影响细菌聚集及其酶活性的水文驱动过程的重要性。我们的结果表明,水文连通性对酶活性的影响很大(解释差异高达40%)。水文学对细菌群落结构的影响要弱得多,表明该组合物显示出较大的功能可塑性/冗余性。在水文时期,影响大小各不相同,但与流量相关的机制在解释细菌结构和功能方面始终具有最大的力量。在预测生态系统功能的模型中应考虑水文变化,并将其纳入洪泛区的生态系统管理策略。

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