环境科学
水槽(地理)
蒸汽压差
全球变暖
碳汇
气候变化
预期寿命
热带
热带气候
大气科学
地球大气中的二氧化碳
气候学
地理
生态学
生物
人口学
人口
蒸腾作用
光合作用
植物
地图学
社会学
地质学
作者
D.E. Bauman,Claire Fortunel,Guillaume Delhaye,Yadvinder Malhi,Lucas A. Cernusak,Lisa Patrick Bentley,Sami W. Rifai,Jesús Aguirre‐Gutiérrez,Imma Oliveras Menor,Oliver L. Phillips,Brandon E. McNellis,Matt Bradford,Susan G. W. Laurance,Michael F. Hutchinson,Raymond Dempsey,Paul E. Santos Andrade,Hugo R. Ninantay-Rivera,Jimmy R. Chambi Paucar,Sean M. McMahon
出处
期刊:Nature
[Nature Portfolio]
日期:2022-05-18
卷期号:608 (7923): 528-533
被引量:246
标识
DOI:10.1038/s41586-022-04737-7
摘要
Evidence exists that tree mortality is accelerating in some regions of the tropics1,2, with profound consequences for the future of the tropical carbon sink and the global anthropogenic carbon budget left to limit peak global warming below 2 °C. However, the mechanisms that may be driving such mortality changes and whether particular species are especially vulnerable remain unclear3-8. Here we analyse a 49-year record of tree dynamics from 24 old-growth forest plots encompassing a broad climatic gradient across the Australian moist tropics and find that annual tree mortality risk has, on average, doubled across all plots and species over the last 35 years, indicating a potential halving in life expectancy and carbon residence time. Associated losses in biomass were not offset by gains from growth and recruitment. Plots in less moist local climates presented higher average mortality risk, but local mean climate did not predict the pace of temporal increase in mortality risk. Species varied in the trajectories of their mortality risk, with the highest average risk found nearer to the upper end of the atmospheric vapour pressure deficit niches of species. A long-term increase in vapour pressure deficit was evident across the region, suggesting that thresholds involving atmospheric water stress, driven by global warming, may be a primary cause of increasing tree mortality in moist tropical forests.
科研通智能强力驱动
Strongly Powered by AbleSci AI