分解者
分解
生物群落
土壤学
生态系统
垃圾箱
初级生产
生物群
生态学
氮气循环
环境科学
陆地生态系统
氮气
化学
农学
环境化学
生物
土壤水分
有机化学
作者
William J. Parton,Whendee L. Silver,Ingrid C. Burke,Leo Grassens,Mark E. Harmon,William S. Currie,Jennifer Y. King,E. Carol Adair,Leslie A. Brandt,Stephen C. Hart,Becky Fasth
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2007-01-18
卷期号:315 (5810): 361-364
被引量:1302
标识
DOI:10.1126/science.1134853
摘要
Litter decomposition provides the primary source of mineral nitrogen (N) for biological activity in most terrestrial ecosystems. A 10-year decomposition experiment in 21 sites from seven biomes found that net N release from leaf litter is dominantly driven by the initial tissue N concentration and mass remaining regardless of climate, edaphic conditions, or biota. Arid grasslands exposed to high ultraviolet radiation were an exception, where net N release was insensitive to initial N. Roots released N linearly with decomposition and exhibited little net N immobilization. We suggest that fundamental constraints on decomposer physiologies lead to predictable global-scale patterns in net N release during decomposition.
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