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Snow cover manipulation effects on microbial community structure and soil chemistry in a mountain bog

机译:积雪对山地沼泽中微生物群落结构和土壤化学的影响

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Alterations in snow cover driven by climate change may impact ecosystem functioning, including biogeochemistry and soil (microbial) processes. We elucidated the effects of snow cover manipulation (SCM) on above-and belowground processes in a temperate peatland. In a Swiss mountain-peatland we manipulated snow cover (addition, removal and control), and assessed the effects on Andromeda polifolia root enzyme activity, soil microbial community structure, and leaf tissue and soil biogeochemistry. Reduced snow cover produced warmer soils in our experiment while increased snow cover kept soil temperatures close-to-freezing. SCM had a major influence on the microbial community, and prolonged 'close-to-freezing' temperatures caused a shift in microbial communities toward fungal dominance. Soil temperature largely explained soil microbial structure, while other descriptors such as root enzyme activity and pore-water chemistry interacted less with the soil microbial communities. We envisage that SCM-driven changes in the microbial community composition could lead to substantial changes in trophic fluxes and associated ecosystem processes. Hence, we need to improve our understanding on the impact of frost and freeze-thaw cycles on the microbial food web and its implications for peatland ecosystem processes in a changing climate; in particular for the fate of the sequestered carbon.
机译:由气候变化驱动的积雪变化可能影响生态系统的功能,包括生物地球化学和土壤(微生物)过程。我们阐明了在温带泥炭地上,积雪操纵(SCM)对地上和地下过程的影响。在瑞士的一个草原上,我们操纵了积雪(添加,去除和控制),并评估了对仙女座小叶根酶活性,土壤微生物群落结构以及叶片组织和土壤生物地球化学的影响。在我们的实验中,积雪减少导致土壤变暖,而积雪增加使土壤温度接近冰点。 SCM对微生物群落产生重大影响,长时间的“接近冷冻”温度导致微生物群落向真菌优势转移。土壤温度在很大程度上解释了土壤微生物的结构,而其他指标(例如根酶活性和孔隙水化学)与土壤微生物群落的相互作用较少。我们设想SCM驱动的微生物群落组成的变化可能导致营养通量和相关生态系统过程的实质性变化。因此,我们需要加深对霜冻和冻融循环对微生物食物网的影响及其对气候变化中泥炭地生态系统过程的影响的理解;特别是对于碳封存的命运。

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