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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Grazing exclusion affects soil and plant communities, but has no impact on soil carbon storage in an upland grassland.
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Grazing exclusion affects soil and plant communities, but has no impact on soil carbon storage in an upland grassland.

机译:放牧会影响土壤和植物群落,但对高地草原的土壤碳储量没有影响。

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摘要

We evaluated the impact of 7 years of grazing exclusion on vegetation and belowground properties related to soil carbon (C) and nitrogen (N) cycling in grazed, upland grassland in northern England. For this, we compared a landscape-level, moorland restoration project (grazing exclusion) with adjacent continuously grazed acidic grasslands to test whether changes in vegetation composition after restoration impacted on soil properties including soil C storage. Grazing exclusion significantly increased the proportion of dwarf-shrubs at the expense of graminoids. Despite high seasonal variability, this change in vegetation was associated with increased plant litter mass, soil moisture content and the ratio of dissolved organic to inorganic N, and reductions in rates of ammonium mineralisation, soil microbial activity, and microbial biomass N. Our observations suggest that grazing-exclusion as a restoration tool for upland habitats results in a slowing down of rates of C and N cycling. However, as yet, this has had no detectable impact on total C and N stocks in surface soil. Whereas increases in soil C and N stocks might be expected in the longer term, our results suggest that a certain level of grazing is compatible with the provision of ecosystem services such as soil C storage under traditional upland farming practices.
机译:我们评估了放牧7年对英格兰北部放牧的高地草原上与土壤碳(C)和氮(N)循环相关的植被和地下特性的影响。为此,我们将景观水平的高地恢复项目(不包括放牧)与相邻的连续放牧的酸性草原进行了比较,以测试恢复后植被组成的变化是否影响了土壤特性,包括土壤碳储量。放牧排斥显着增加了矮灌木的比例,但以类胡萝卜素为代价。尽管季节变化很大,但植被的这种变化与植物凋落物质量增加,土壤水分含量以及溶解的有机氮与无机氮的比率增加,铵矿化速率降低,土壤微生物活性和微生物生物量氮相关。我们的观察结果表明放牧作为恢复高地生境的一种工具导致了碳和氮循环速率的降低。但是,到目前为止,这对表层土壤中的总C和N储量还没有可检测到的影响。长期来看,土壤碳和氮的储量有望增加,但我们的研究结果表明,一定程度的放牧与传统的旱地耕作方式下的土壤碳储存等生态系统服务兼容。

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