Nitrogen addition reduces soil phosphorus leaching in a subtropical forest of eastern Tibetan Plateau

IF 4.8 2区 农林科学 Q1 SOIL SCIENCE
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Abstract

Globally, increased atmospheric nitrogen (N) deposition has comprehensively altered phosphorus (P) biogeochemical cycling in terrestrial ecosystems. Phosphorus is the second most common nutrient limiting for ecosystem productivity. Even though, ultimately under enhanced atmospheric N deposition it is likely to be the primary one. However, the response of soil P leaching to the elevated atmospheric N deposition in subalpine forests are still elusive. Here, we examined the effects of >7-year N additions on soil P leaching in a subalpine forest of eastern Tibetan Plateau. We found that independent of soil horizon (organic versus mineral horizons) and N addition rate (control 0, low 8 and high 40 kg N/ha yr−1), dissolved inorganic P (DIP), rather than dissolved organic P (DOP), dominated soil P leaching. The N addition treatments reduced the leaching of total P and DIP throughout the soil profile by 13 % and 14 %, respectively. The enhanced biological immobilization and P adsorption capacity (increased by 15–33 % in organic horizon and 9–35 % in mineral horizon) under the N addition contributed to the decrease in soil P leaching. We conclude that the reduction in soil P leaching under the elevated atmospheric N deposition should boost the enhanced N driven forest productivity and ecosystem carbon sequestration in the subalpine forests.

青藏高原东部亚热带森林中的氮添加减少了土壤磷沥滤
在全球范围内,大气中氮(N)沉积量的增加全面改变了陆地生态系统中磷(P)的生物地球化学循环。磷是限制生态系统生产力的第二大营养元素。尽管在大气氮沉积增加的情况下,磷很可能是主要的限制因素。然而,亚高山森林中土壤磷沥滤对大气中氮沉降升高的响应仍然难以捉摸。在此,我们研究了青藏高原东部亚高山森林中 7 年氮添加对土壤中 P 沥滤的影响。我们发现,与土壤层(有机层与矿质层)和氮添加量(对照 0、低 8 和高 40 kg N/ha yr-1)无关,溶解无机磷(DIP)而非溶解有机磷(DOP)主导了土壤中的磷沥滤。氮添加处理使整个土壤剖面中的总磷和 DIP 沥滤分别减少了 13% 和 14%。在添加氮的情况下,生物固定化和钾吸附能力增强(在有机层中增加了 15-33%,在矿物层中增加了 9-35%),这也是土壤钾沥滤减少的原因之一。我们的结论是,在大气氮沉降量增加的情况下,土壤中 P 沥滤的减少应能促进亚高山森林中由氮驱动的森林生产力和生态系统碳固存的提高。
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来源期刊
Applied Soil Ecology
Applied Soil Ecology 农林科学-土壤科学
CiteScore
9.70
自引率
4.20%
发文量
363
审稿时长
5.3 months
期刊介绍: Applied Soil Ecology addresses the role of soil organisms and their interactions in relation to: sustainability and productivity, nutrient cycling and other soil processes, the maintenance of soil functions, the impact of human activities on soil ecosystems and bio(techno)logical control of soil-inhabiting pests, diseases and weeds.
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