土地利用强度对草地功能群落组成和养分动态的影响

Julia Walter, Ulrich Thumm, Carsten M. Buchmann
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摘要

土地利用强度驱动着草地的生产力和生态系统功能。长期土地利用强度对植物功能群落组成的影响及其与养分循环过程的直接和间接联系在很大程度上还不为人所知。我们在温带草地上进行了一项为期十年的实验,对刈割频率和氮输入进行了控制。我们评估了物种组成的变化,并利用数据库中的物种特异性值计算了植物群落的功能多样性(FDis)和群落加权平均值(CWM),包括特定叶面积(SLA)、叶干物质含量(LDMC)以及叶氮和根氮。我们评估了地上和地下分解及土壤呼吸作用。随着土地利用强度的增加,植物多样性显著减少。随着土地利用强度的增加,CWM 叶氮和 SLA 减少,而 CWM LDMC 增加,这可能与禾本科物种比例增加有关。地下过程基本不受土地利用强度的影响。土地利用直接或通过群落组成间接影响了地上垃圾成分。刈割频率,而不是结合了刈割频率和施肥的土地利用指数,解释了垃圾分解的大部分变化。我们的研究结果表明,土地利用的集约化不仅降低了植物的多样性,而且这些变化也影响了养分的动态变化。
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Effects of Land-Use Intensity on Functional Community Composition and Nutrient Dynamics in Grassland
Land-use intensity drives productivity and ecosystem functions in grassland. The effects of long-term land-use intensification on plant functional community composition and its direct and indirect linkages to processes of nutrient cycling are largely unknown. We manipulated mowing frequency and nitrogen inputs in an experiment in temperate grassland over ten years. We assessed changes in species composition and calculated functional diversity (FDis) and community weighted mean (CWM) traits of specific leaf area (SLA), leaf dry matter content (LDMC) and leaf and root nitrogen of the plant community, using species-specific trait values derived from databases. We assessed above- and belowground decomposition and soil respiration. Plant diversity strongly decreased with increasing land-use intensity. CWM leaf nitrogen and SLA decreased, while CWM LDMC increased with land-use intensification, which could be linked to an increased proportion of graminoid species. Belowground processes were largely unaffected by land-use intensity. Land use affected aboveground litter composition directly and indirectly via community composition. Mowing frequency, and not a land-use index combining mowing frequency and fertilization, explained most of the variation in litter decomposition. Our results show that land-use intensification not only reduces plant diversity, but that these changes also affect nutrient dynamics.
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