蒸汽压差
环境科学
植被(病理学)
生态系统
大气科学
陆地生态系统
生产力
北半球
生长季节
碳循环
气候学
光合作用
生态学
生物
地质学
蒸腾作用
植物
医学
宏观经济学
病理
经济
作者
Ziqian Zhong,Bin He,Ying‐Ping Wang,Hans W. Chen,Deliang Chen,Yongshuo H. Fu,Yaning Chen,Lanlan Guo,Ying Deng,Ling Huang,Wenping Yuan,Xingming Hao,Rui Tang,Huiming Liu,Liying Sun,Xiaoming Xie,Yafeng Zhang
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2023-08-11
卷期号:9 (32)
被引量:47
标识
DOI:10.1126/sciadv.adf3166
摘要
The impact of atmospheric vapor pressure deficit (VPD) on plant photosynthesis has long been acknowledged, but large interactions with air temperature (T) and soil moisture (SM) still hinder a complete understanding of the influence of VPD on vegetation production across various climate zones. Here, we found a diverging response of productivity to VPD in the Northern Hemisphere by excluding interactive effects of VPD with T and SM. The interactions between VPD and T/SM not only offset the potential positive impact of warming on vegetation productivity but also amplifies the negative effect of soil drying. Notably, for high-latitude ecosystems, there occurs a pronounced shift in vegetation productivity's response to VPD during the growing season when VPD surpasses a threshold of 3.5 to 4.0 hectopascals. These results yield previously unknown insights into the role of VPD in terrestrial ecosystems and enhance our comprehension of the terrestrial carbon cycle's response to global warming.
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