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Nitrogen additions stimulate litter humification in a subtropical forest southwestern China

机译:氮的添加刺激了中国西南亚热带森林的枯枝落叶增湿

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摘要

Despite the importance of nitrogen (N) deposition for soil biogeochemical cycle, how N addition affects the accumulation of humic substances in decomposing litter still remains poorly understood. A litterbag experiment was conducted to assess the potential effects of N addition (0 kg·N·ha−1·year−1, 20 kg·N·ha−1·year−1 and 40 kg·N·ha−1·year−1) on mass remaining and humification of two leaf litter (Michelia wilsonii and Camptotheca acuminata) in a subtropical forest of southwestern China. After one year of decomposition, litter mass was lost by 38.1–46.5% for M. wilsonii and 61.7–74.5% for C. acuminata, respectively. Humic substances were declined by 12.1–23.8% in M. wilsonii and 29.1–35.5% in C. acuminata, respectively. Nitrogen additions tended to reduce mass loss over the experimental period. Moreover, N additions did not affect the concentrations of humic substances and humic acid in the early stage but often increased them in the late stage. The effect of N addition on the accumulation of humic substances was stronger for C. acuminate litter than in M. wilsonii litter. Litter N and P contents showed positive correlations with concentrations of humic substances and fulvic acid. Our results suggest that both litter quality and season-driven environmental changes interactively mediate N impacts on litter humification. Such findings have important implications for carbon sequestration via litter humification in the subtropical forest ecosystems experiencing significant N deposition.
机译:尽管氮(N)的沉积对于土壤生物地球化学循环的重要性,但氮的添加如何影响腐殖质分解过程中腐殖质的积累仍知之甚少。进行垃圾袋试验以评估氮添加的潜在影响(0 kg·N·ha -1 ·年 -1 ,20 kg·N·ha −1 ·year -1 和40 kg·N·ha -1 ·year -1 西南亚热带森林中的两叶凋落物(Michelia wilsonii和Camptotheca acuminata)分解一年后,威尔逊分枝杆菌和尖锐梭菌的凋落物质量分别损失了38.1–46.5%和61.7–74.5%。 wilsonii腐殖质中的腐殖质下降了12.1–23.8%,C。acuminata中的腐殖质下降了29.1–35.5%。氮的添加趋于减少实验期间的质量损失。此外,氮的添加在早期并不影响腐殖质和腐殖酸的浓度,但在后期通常会增加腐殖质和腐殖酸的浓度。尖锐梭菌凋落物中氮的添加对腐殖质积累的影响强于威尔逊梭菌。凋落物N和P含量与腐殖质和黄腐酸浓度呈正相关。我们的结果表明,垫料质量和季节驱动的环境变化都可以交互地调节氮对垫料增湿的影响。这些发现对于经历显着氮沉降的亚热带森林生态系统中通过枯枝落叶腐殖化对碳固存具有重要意义。

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