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Responses of Soil Acid Phosphomonoesterase Activity to Simulated Nitrogen Deposition in Three Forests of Subtropical China
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出 版 社:Pedosphere  
发表时间:2012  
台  站: 鼎湖山森林生态系统定位研究站  
作  者:黄文娟,张德强,李跃林等  
点 击 率:398027
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关 键 字(英文):Dinghushan Biosphere Reserve, forest ecosystems, forest succession, phosphorus limitation, subtropical region  
摘  要(英文):Soil acid phosphomonoesterase activity (APA) plays a vital role in controlling phosphorus (P) cycling and reflecting the current degree of P limitation. Responses of soil APA to elevating nitrogen (N) deposition are important because of their potential applications in addressing the relationship between N and P in forest ecosystems. A study of responses of soil APA to simulated N deposition was conducted in three succession forests of subtropical China. The three forests include a Masson pine (Pinus massoniana) forest (MPF)—pioneer community, a coniferous and broad-leaved mixed forest (MF)—transition community and a monsoon evergreen broadleaved forest (MEBF)—climax community. Four N treatments were designed for MEBF: control (without N added), low-N (50kg N ha−1 year−1), and medium-N (100kg N ha−1 year−1) and high-N (150kg N ha−1 year−1), and only three N treatments (i.e., control,low-N, medium-N) were established for MPF and MF. Results showed that soil APA was highest in MEBF, followed by MPF and MF. Soil APAs in both MPF and MF were not influenced by low-N treatments but depressed in medium-N treatments. However, soil APA in MEBF exhibited negative responses to high N additions, indicating that the environment of enhanced N depositions would reduce P supply for the mature forest ecosystem. Soil APA and its responses to N additions in subtropical forests were closely related to the succession stages in the forests.  
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黄文娟-2012-Pedosphere-Responses of soil acid phosphomonoesterase activity to simulated nitrogen deposition in three forests of subtropical China.pdf
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核心期刊论文目录
Soil enzyme activity changes in different-aged spruce forests of the eastern Qinghai-Tibetan Plateau
Nitrogen availability in Disturbed, Rehabilitated and Mature Forests of Tropical China
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