适应
呼吸
生态系统
二氧化碳
环境科学
气候变化
大气科学
碳循环
生态系统呼吸
土壤呼吸
碳纤维
地球大气中的二氧化碳
生态学
生物
植物
初级生产
物理
数学
复合数
算法
作者
Han Zhang,Han Wang,Ian J. Wright,I. Colin Prentice,Sandy P. Harrison,Nicholas G. Smith,Andrea C. Westerband,Lucy Rowland,Lenka Plavcová,Hugh Morris,Peter B. Reich,Steven Jansen,Trevor F. Keenan,N. Nguyen
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-05-29
卷期号:388 (6750): 984-988
标识
DOI:10.1126/science.adr9978
摘要
The efflux of carbon dioxide (CO 2 ) from woody stems, a proxy for stem respiration, is a critical carbon flux from ecosystems to the atmosphere, which increases with temperature on short timescales. However, plants acclimate their respiratory response to temperature on longer timescales, potentially weakening the carbon-climate feedback. The magnitude of this acclimation is uncertain despite its importance for predicting future climate change. We develop an optimality-based theory dynamically linking stem respiration with leaf water supply to predict its thermal acclimation. We show that the theory accurately reproduces observations of spatial and seasonal change. We estimate the global value for current annual stem CO 2 efflux as 27.4 ± 5.9 PgC. By 2100, incorporating thermal acclimation reduces projected stem respiration without considering acclimation by 24 to 46%, thus reducing land ecosystem carbon emissions.
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