Increasing calcium scarcity along Afrotropical forest succession

生态演替 次生演替 生物地球化学循环 营养循环 营养物 环境科学 生态系统 次生林 生态学 农林复合经营 生物量(生态学) 森林生态学 生物 化学 有机化学
作者
Marijn Bauters,Ivan A. Janssens,Daniel Wasner,Sebastian Döetterl,Pieter Vermeir,Marco Griepentrog,Travis W. Drake,Johan Six,Matti Barthel,S. Baumgartner,Kristof Van Oost,Isaac Ahanamungu Makelele,Corneille Ewango,Kris Verheyen,Pascal Boeckx
出处
期刊:Nature Ecology and Evolution [Nature Portfolio]
卷期号:6 (8): 1122-1131 被引量:35
标识
DOI:10.1038/s41559-022-01810-2
摘要

Secondary forests constitute an increasingly important component of tropical forests worldwide. Although cycling of essential nutrients affects recovery trajectories of secondary forests, the effect of nutrient limitation on forest regrowth is poorly constrained. Here we use three lines of evidence from secondary forest succession sequences in central Africa to identify potential nutrient limitation in regrowing forests. First, we show that atmospheric phosphorus supply exceeds demand along forest succession, whereas forests rely on soil stocks to meet their base cation demands. Second, soil nutrient metrics indicate that available phosphorus increases along the succession, whereas available cations decrease. Finally, fine root, foliar and litter stoichiometry show that tissue calcium concentrations decline relative to those of nitrogen and phosphorus during succession. Taken together, these observations suggest that calcium becomes an increasingly scarce resource in central African forests during secondary succession. Furthermore, ecosystem calcium storage shifts from soil to woody biomass over succession, making it a vulnerable nutrient in the wake of land-use change scenarios that involve woody biomass export. Our results thus call for a broadened focus on elements other than nitrogen and phosphorus regarding tropical forest biogeochemical cycles and identify calcium as a scarce and potentially limiting nutrient in an increasingly disturbed and dynamic tropical forest landscape.
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