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Bacterial structures and ecosystem functions in glaciated floodplains: contemporary states and potential future shifts

机译:冰川泛滥平原的细菌结构和生态系统功能:当代状态和潜在的未来变化

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摘要

Glaciated alpine floodplains are responding quickly to climate change through shrinking ice masses. Given the expected future changes in their physicochemical environment, we anticipated variable shifts in structure and ecosystem functioning of hyporheic microbial communities in proglacial alpine streams, depending on present community characteristics and landscape structures. We examined microbial structure and functioning during different hydrologic periods in glacial (kryal) streams and, as contrasting systems, groundwater-fed (krenal) streams. Three catchments were chosen to cover an array of landscape features, including interconnected lakes, differences in local geology and degree of deglaciation. Community structure was assessed by automated ribosomal intergenic spacer analysis and microbial function by potential enzyme activities. We found each catchment to contain a distinct bacterial community structure and different degrees of separation in structure and functioning that were linked to the physicochemical properties of the waters within each catchment. Bacterial communities showed high functional plasticity, although achieved by different strategies in each system. Typical kryal communities showed a strong linkage of structure and function that indicated a major prevalence of specialists, whereas krenal sediments were dominated by generalists. With the rapid retreat of glaciers and therefore altered ecohydrological characteristics, lotic microbial structure and functioning are likely to change substantially in proglacial floodplains in the future. The trajectory of these changes will vary depending on contemporary bacterial community characteristics and landscape structures that ultimately determine the sustainability of ecosystem functioning.
机译:冰川化的高山洪泛区正在通过减少冰团来对气候变化做出快速响应。考虑到其理化环境的未来预期变化,我们预计冰川消融的高山流域中低渗微生物群落的结构和生态系统功能会发生变化,具体取决于当前的群落特征和景观结构。我们研究了冰川(kryal)流以及地下水喂养的(肾)流的不同水文时期微生物结构和功能。选择了三个集水区来覆盖一系列景观特征,包括相互连接的湖泊,当地地质的差异和冰消程度。通过自动核糖体基因间间隔区分析评估群落结构,并通过潜在的酶活性评估微生物功能。我们发现每个流域都包含一个独特的细菌群落结构以及结构和功能上不同程度的分离,这些分离程度与每个流域内水的物理化学性质有关。细菌群落表现出很高的功能可塑性,尽管在每个系统中通过不同的策略来实现。典型的kryal群落显示出结构和功能的紧密联系,这表明专家占主要地位,而krenal沉积物则由多面手主导。随着冰川的迅速退缩,因此生态水文特征发生了变化,将来,冰川泛滥平原的微生物结构和功能可能会发生重大变化。这些变化的轨迹将取决于当代细菌群落特征和景观结构,最终决定生态系统功能的可持续性。

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