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Multi-model assessment of hydrological and environmental impacts on streambed microbes in Mediterranean catchments

机译:地中海集水区流水学和环境影响的多模型评估

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摘要

Microbes inhabiting intermittent streambeds are responsible for controlling and developing many biogeochemical processes essential for the ecosystem functions. Although streambed microbiota is adapted to intermittency the intensification of water scarcity and prolonged dry periods may jeopardise their capacity to cope with hydrological changes. This study aims to evaluate whether, and to what extent, the duration of dry periods affects streambed microbial density, diversity, composition (16S rRNA gene diversity) and functions (extracellular enzyme activities and respiration). Our results highlight the fact that hydrology modulates the community composition and, to some extent, the functions carried out under different environmental conditions. The relative abundance of certain taxa inhabiting the driest intermittent communities differs significantly from those found at sites with continuous flow. Microbial functional metrics revealed a progressive increase in recalcitrant carbon degradation activity at sites with an extended dry phase. In contrast, bacterial density and diversity were mainly influenced by the catchment land use, agriculture enhanced density but reduced diversity, and the presence of riparian vegetation supported greater streambed bacterial diversity. From this perspective, a combination of prolonged dryness with reduced riparian vegetation and increased agricultural land cover could compromise the ecosystem functioning by threaten microbially mediated processes linked to the carbon cycle.
机译:栖息间间流动的微生物负责控制和开发许多对生态系统功能必不可少的生物地球化学过程。虽然流入的微生物群适于间歇性水资源稀缺和长期干燥时期可能会危及其应对水文变化的能力。本研究旨在评估干燥时期的持续时间是否影响流体的微生物密度,多样性,组成(16S rRNA基因多样性)和功能(细胞外酶活性和呼吸)。我们的结果强调了水文调制社区组成的事实,在某种程度上在不同环境条件下进行的功能。某些居住在最干扰社区的某些出纳群岛的相对丰度与连续流动的站点中发现的那些具有显着不同。微生物功能度量显示出具有延长干阶段的位点醋酸碳降解活性的逐步增加。相比之下,细菌密度和多样性主要受到集水区土地利用,农业增强密度而且减少多样性的影响,以及河流植被的存在支持更大的流体细菌多样性。从这个角度来看,延长干燥的组合随着河流植被的减少和增加的农业陆地覆盖可能会通过威胁与碳循环相关的微生物介导的方法损害生态系统的功能。

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