陆地生态系统
陆生植物
生物量(生态学)
植物群落
生态系统
全球变化
环境科学
生态学
气候变化
碳循环
土壤碳
储存效应
全球变暖
相互作用
碳纤维
生物
大气科学
土壤水分
农学
生态演替
计算机科学
竞赛(生物学)
地质学
复合数
算法
作者
Kai Yue,Dario Fornara,Wanqin Yang,Yan Peng,Changhui Peng,Zelin Liu,Fuzhong Wu
摘要
The interactive effects of multiple global change drivers on terrestrial carbon (C) storage remain poorly understood. Here, we synthesise data from 633 published studies to show how the interactive effects of multiple drivers are generally additive (i.e. not differing from the sum of their individual effects) rather than synergistic or antagonistic. We further show that (1) elevated CO2 , warming, N addition, P addition and increased rainfall, all exerted positive individual effects on plant C pools at both single-plant and plant-community levels; (2) plant C pool responses to individual or combined effects of multiple drivers are seldom scale-dependent (i.e. not differing from single-plant to plant-community levels) and (3) soil and microbial biomass C pools are significantly less sensitive than plant C pools to individual or combined effects. We provide a quantitative basis for integrating additive effects of multiple global change drivers into future assessments of the C storage ability of terrestrial ecosystems.
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