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Nitrogen enrichment impacts on boreal litter decomposition are driven by changes in soil microbiota rather than litter quality

机译:氮富集对北方凋落物分解的影响是由土壤微生物群的变化而不是凋落物质量驱动的

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摘要

In nitrogen (N) limited boreal forests, N enrichment can impact litter decomposition by affecting litter quality and by changing the soil environment where litter decomposes. We investigated the importance of litter quality and soil factors on litter decomposition using a 2-year reciprocal transplant experiment for Picea abies needle litter, derived from plots subjected to 17 years of N addition, including control, low and high N treatments (ambient, 12.5 and 50 kg N ha−1 yr−1, respectively). Our data show that changes in soil factors were the main pathway through which N impacted litter decomposition, with rates reduced by ~15% when placed in high N relative to control plots, regardless of litter origin. Litter decomposition was correlated to soil microbiota, with Picea abies litter decomposition positively correlated with gram negative and fungal functional groups. Our results suggest that previous findings of increase soil C accumulation in response to N deposition is likely to occur as a result of changes in soil microbiota rather than altered litter quality.
机译:在氮(N)有限的北方森林中,氮的富集可以通过影响凋落物的质量和改变凋落物分解的土壤环境来影响凋落物的分解。我们使用了一项为期2年的云杉针叶树立式互作实验,研究了凋落物质量和土壤因素对凋落物分解的重要性,该实验来自接受17年氮素添加的地块,包括控制,低氮和高氮处理(环境温度12.5和50 kg N ha -1 yr -1 )。我们的数据表明,土壤因素的变化是氮影响凋落物分解的主要途径,与对照地块相比,置于高氮环境下,无论产地如何,其发生率均降低约15%。凋落物分解与土壤微生物群相关,而云杉云杉凋落物分解与革兰氏阴性和真菌官能团正相关。我们的结果表明,先前的发现可能是由于土壤微生物区系的变化而不是凋落物质量的改变而导致的土壤氮积累引起土壤碳积累增加的结果。

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