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Elevated temperature increases the accumulation of microbial necromass nitrogen in soil via increasing microbial turnover

机译:升高的温度通过增加的微生物转运增加了土壤中微生物硝基族氮的积累

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摘要

Microbial-derived nitrogen (N) is now recognized as an important source of soil organic N. However, the mechanisms that govern the production of microbial necromass N, its turnover, and stabilization in soil remain poorly understood. To assess the effects of elevated temperature on bacterial and fungal necromass N production, turnover, and stabilization, we incubated(15)N-labeled bacterial and fungal necromass under optimum moisture conditions at 10 degrees C, 15 degrees C, and 25 degrees C. We developed a new(15)N tracing model to calculate the production and mineralization rates of necromass N. Our results showed that bacterial and fungal necromass N had similar mineralization rates, despite their contrasting chemistry. Most bacterial and fungal necromass(15)N was recovered in the mineral-associated organic matter fraction through microbial anabolism, suggesting that mineral association plays an important role in stabilizing necromass N in soil, independently of necromass chemistry. Elevated temperature significantly increased the accumulation of necromass N in soil, due to the relatively higher microbial turnover and production of necromass N with increasing temperature than the increases in microbial necromass N mineralization. In conclusion, we found elevated temperature may increase the contribution of microbial necromass N to mineral-stabilized soil organic N.
机译:微生物衍生的氮气(N)现在被认为是土壤有机N的重要来源。然而,治理微生物Necromass N,其营业额和土壤中稳定化的机制仍然明白。为了评估温度升高对细菌和真菌的Necromass N生产,周转和稳定的影响,我们在最佳的水分条件下在10℃,15℃和25℃下培养(15)N-标记的细菌和真菌成乳菌。我们开发了一种新的(15)个追踪模型,以计算Necromass N的生产和矿化率。我们的结果表明,尽管它们具有对比的化学性能,但是细菌和真菌Necromass N具有相似的矿化率。大多数细菌和真菌NeCromass(15)n通过微生物合成代谢在矿物相关的有机物级分中回收,表明矿物协会在稳定土壤中稳定土壤中的重要作用,独立于Necromass化学。由于较高的微生物转换和Necromass n的产生,升高的温度显着提高了土壤中的成乳腺N在土壤中的积聚。总之,我们发现升高的温度可能会增加微生物Necromass n对矿稳定土壤有机N的贡献。

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