生物地球化学循环
环境科学
生态系统
植被(病理学)
背景(考古学)
火情
垃圾箱
氮气循环
生态学
磷
土壤碳
自行车
植被类型
营养循环
营养物
氮气
土壤水分
土壤科学
生物
林业
地理
化学
草原
古生物学
病理
医学
有机化学
作者
Orpheus M. Butler,James J. Elser,Tom Lewis,Brendan Mackey,Chengrong Chen
摘要
Abstract The biogeochemical and stoichiometric signature of vegetation fire may influence post‐fire ecosystem characteristics and the evolution of plant ‘fire traits’. Phosphorus (P), a potentially limiting nutrient in many fire‐prone environments, might be particularly important in this context; however, the effects of fire on P cycling often vary widely. We conducted a global‐scale meta‐analysis using data from 174 soil studies and 39 litter studies, and found that fire led to significantly higher concentrations of soil mineral P as well as significantly lower soil and litter carbon:P and nitrogen:P ratios. These results demonstrate that fire has a P‐rich signature in the soil–plant system that varies with vegetation type. Further, they suggest that burning can ease P limitation and decouple the biogeochemical cycling of P, carbon and nitrogen. These effects resemble a transient reversion to an earlier stage of ecosystem development, and likely underpin at least some of fire's impacts on ecosystems and organisms.
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