人类受精
环境科学
联想(心理学)
小学(天文学)
农学
控制(管理)
生物
化学
心理学
计算机科学
物理
人工智能
心理治疗师
天文
作者
César Terrer,Sara Vicca,Bruce A. Hungate,Richard P. Phillips,I. Colin Prentice
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2016-07-01
卷期号:353 (6294): 72-74
被引量:632
标识
DOI:10.1126/science.aaf4610
摘要
Plants buffer increasing atmospheric carbon dioxide (CO2) concentrations through enhanced growth, but the question whether nitrogen availability constrains the magnitude of this ecosystem service remains unresolved. Synthesizing experiments from around the world, we show that CO2 fertilization is best explained by a simple interaction between nitrogen availability and mycorrhizal association. Plant species that associate with ectomycorrhizal fungi show a strong biomass increase (30 ± 3%, P < 0.001) in response to elevated CO2 regardless of nitrogen availability, whereas low nitrogen availability limits CO2 fertilization (0 ± 5%, P = 0.946) in plants that associate with arbuscular mycorrhizal fungi. The incorporation of mycorrhizae in global carbon cycle models is feasible, and crucial if we are to accurately project ecosystem responses and feedbacks to climate change.
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