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首页> 外文期刊>The Science of the Total Environment >Winter ecology of a subalpine grassland: Effects of snow removal on soil respiration, microbial structure and function
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Winter ecology of a subalpine grassland: Effects of snow removal on soil respiration, microbial structure and function

机译:亚高山草原的冬季生态:除雪对土壤呼吸,微生物结构和功能的影响

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摘要

Seasonal snow cover provides essential insulation for mountain ecosystems, but expected changes in precipitation patterns and snow cover duration due to global warming can influence the activity of soil microbial communities. In turn, these changes have the potential to create new dynamics of soil organic matter cycling. To assess the effects of experimental snow removal and advanced spring conditions on soil carbon (C) and nitrogen (N) dynamics, and on the biomass and structure of soil microbial communities, we performed an in situ study in a subalpine grassland in the Austrian Alps, in conjunction with soil incubations under controlled conditions. We found substantial winter C-mineralisation and high accumulation of inorganic and organic N in the topsoil, peaking at snowmelt. Soil microbial biomass doubled under the snow, paralleled by a fivefold increase in its C:N ratio, but no apparent change in its bacteria-dominated community structure. Snow removal led to a series of mild freeze-thaw cycles, which had minor effects on in situ soil CO_2 production and N mineralisation. Incubated soil under advanced spring conditions, however, revealed an impaired microbial metabolism shortly after snow removal, characterised by a limited capacity for C-mineralisation of both fresh plant-derived substrates and existing soil organic matter (SOM), leading to reduced priming effects. This effect was transient and the observed recovery in microbial respiration and SOM priming towards the end of the winter season indicated microbial resilience to short-lived freeze-thaw disturbance under field conditions. Bacteria showed a higher potential for uptake of plant-derived C substrates during this recovery phase. The observed temporary loss in microbial C-mineralisation capacity and the promotion of bacteria over fungi can likely impede winter SOM cycling in mountain grasslands under recurrent winter climate change events, with plausible implications for soil nutrient availability and plant-soil interactions.
机译:季节性积雪为山区生态系统提供了必不可少的隔热材料,但是由于全球变暖导致的降雨模式和积雪持续时间的预期变化会影响土壤微生物群落的活动。反过来,这些变化有可能创造土壤有机质循环的新动力。为了评估实验除雪和春季春季条件对土壤碳(C)和氮(N)动态以及土壤微生物群落的生物量和结构的影响,我们在奥地利阿尔卑斯山的亚高山草原上进行了原位研究,并在受控条件下进行土壤培养。我们发现冬季大量的碳矿化作用以及表层土壤中无机和有机氮的大量积累,在融雪时达到顶峰。雪下土壤微生物的生物量增加了一倍,其碳氮比增加了五倍,但细菌为主的群落结构却没有明显变化。除雪导致一系列温和的冻融循环,这对原地土壤CO_2的产生和氮矿化的影响很小。然而,在春季春季条件下温育的土壤在除雪后不久发现微生物代谢受损,其特征是新鲜植物来源的基质和现有土壤有机质(SOM)的C矿化能力有限,从而导致启动效应降低。这种作用是暂时的,观察到的微生物呼吸和SOM在冬季末的恢复已恢复,表明微生物对田间条件下短期冻融扰动具有恢复力。在此恢复阶段,细菌显示出更高的摄取植物源C底物的潜力。在反复发生的冬季气候变化事件下,观察到的微生物碳矿化能力的暂时丧失和细菌对真菌的促进可能会阻碍山区草原的冬季SOM循环,这对土壤养分的可利用性和植物-土壤之间的相互作用可能具有潜在意义。

著录项

  • 来源
    《The Science of the Total Environment 》 |2017年第15期| 316-324| 共9页
  • 作者单位

    Climate Impacts Research Centre, Department of Ecology and Environmental Stience, Umeå University, 98107 Abisko, Sweden;

    Institute of Ecology, University of Innsbruck, Sternwartestrasse 15,6020 Innsbruck, Austria;

    Institute of Ecology, University of Innsbruck, Sternwartestrasse 15,6020 Innsbruck, Austria;

    Lancaster Environment Centre, Lancaster University, Lancaster LAI 4YQ, United Kingdom;

    Ecole Polytechnique Fédérale de Lausanne EPFL, School of Architecture, Civil and Environmental Engineering ENAC, Laboratory of Ecological Systems ECOS, Station 2,1015 Lausanne, Switzerland,Swiss Federal Institute for Forest, Snow and Landscape Research WSL, Site Lausanne, Station 2,1015 Lausanne, Switzerland,Laboratoire de Chrono-Environnement, UMR CNRS 6249, UFR des Sciences et Techniques, 16 route de Gray, Université de Franche-Comté, 25030 Besançon, France;

    Max Planck Institute for Biogeochemistry, P.O. Box 100164,07701 Jena, Germany;

    Deportment of Environmental and Biological Sciences, University of Eastern Finland, P.O. Box 1627,70211 Kuopio, Finland;

    Institute of Ecology, University of Innsbruck, Sternwartestrasse 15,6020 Innsbruck, Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Substrate induced respiration; Priming effect; PLFA; Fungal:Bacterial ratio; Microbial C:N; Climate change;

    机译:底物诱导的呼吸;启动效果;PLFA;真菌:细菌比;微生物C:N;气候变化;

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