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Nitrogen Addition and Warming Independently Influence the Belowground Micro-Food Web in a Temperate Steppe

机译:氮的添加和变暖独立地影响温带草原中的地下微食物网

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摘要

Climate warming and atmospheric nitrogen (N) deposition are known to influence ecosystem structure and functioning. However, our understanding of the interactive effect of these global changes on ecosystem functioning is relatively limited, especially when it concerns the responses of soils and soil organisms. We conducted a field experiment to study the interactive effects of warming and N addition on soil food web. The experiment was established in 2006 in a temperate steppe in northern China. After three to four years (2009–2010), we found that N addition positively affected microbial biomass and negatively influenced trophic group and ecological indices of soil nematodes. However, the warming effects were less obvious, only fungal PLFA showed a decreasing trend under warming. Interestingly, the influence of N addition did not depend on warming.Structural equation modeling analysis suggested that the direct pathway between N addition and soil food web components were more important than the indirect connections through alterations in soil abiotic characters or plant growth. Nitrogen enrichment also affected the soil nematode community indirectly through changes in soil pH and PLFA. We conclude that experimental warming influenced soil food web components of the temperate steppe less than N addition, and there was little influence of warming on N addition effects under these experimental conditions.
机译:已知气候变暖和大气中的氮(N)沉积会影响生态系统的结构和功能。但是,我们对这些全球变化对生态系统功能的交互作用的理解相对有限,尤其是在涉及土壤和土壤生物的响应时。我们进行了一项田间实验,研究变暖和氮添加对土壤食物网的交互作用。该实验于2006年在中国北方的温带草原建立。经过三到四年(2009-2010年),我们发现氮的添加对微生物生物量产生正向影响,对土壤线虫的营养类别和生态指数具有负面影响。然而,变暖的作用不太明显,只有真菌PLFA在变暖下呈下降趋势。有趣的是,氮的添加并不依赖于变暖。结构方程模型分析表明,氮与土壤食物网成分之间的直接联系比通过改变土壤非生物性状或植物生长的间接联系更为重要。氮的富集还通过土壤pH和PLFA的变化间接影响了土壤线虫群落。我们得出的结论是,实验变暖对温带草原土壤食物网的影响少于添加氮,在这些实验条件下,变暖对氮添加效果的影响很小。

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