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Impacts of twenty years of experimental warming on soil carbon nitrogen moisture and soil mites across alpine/subarctic tundra communities

机译:二十年的实验变暖对高寒/寒带苔原群落土壤碳氮水分和土壤螨的影响

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摘要

High-altitude and alpine areas are predicted to experience rapid and substantial increases in future temperature, which may have serious impacts on soil carbon, nutrient and soil fauna. Here we report the impact of 20 years of experimental warming on soil properties and soil mites in three contrasting plant communities in alpine/subarctic Sweden. Long-term warming decreased juvenile oribatid mite density, but had no effect on adult oribatids density, total mite density, any major mite group or the most common species. Long-term warming also caused loss of nitrogen, carbon and moisture from the mineral soil layer in mesic meadow, but not in wet meadow or heath or from the organic soil layer. There was a significant site effect on the density of one mite species, Oppiella neerlandica, and all soil parameters. A significant plot-scale impact on mites suggests that small-scale heterogeneity may be important for buffering mites from global warming. The results indicated that juvenile mites may be more vulnerable to global warming than adult stages. Importantly, the results also indicated that global warming may cause carbon and nitrogen losses in alpine and tundra mineral soils and that its effects may differ at local scale.
机译:预计高海拔和高寒地区的未来气温将迅速大幅上升,这可能对土壤碳,养分和土壤动物群产生严重影响。在这里,我们报告了20年实验性变暖对瑞典阿尔卑斯山/南亚热带三种不同植物群落的土壤特性和螨虫的影响。长期变暖降低了少年鸟螨的螨密度,但对成虫鸟螨的密度,总螨密度,任何主要螨类或最常见物种没有影响。长期变暖还会导致中型草甸的矿质土壤层中氮,碳和水分的流失,但不会导致湿草甸或荒地或有机土壤层中氮,碳和水分的损失。场地对一种螨,Neppiella neerlandica和所有土壤参数的密度都有明显的影响。对螨的大规模地积影响表明,小规模异质性对于缓冲螨免受全球变暖的影响可能很重要。结果表明,幼螨比成年阶段更容易受到全球变暖的影响。重要的是,结果还表明,全球变暖可能导致高山和苔原矿质土壤中的碳和氮流失,其影响在局部范围可能有所不同。

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