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由于大气 CO2 浓度升高,旱地植被绿色度对降水的敏感度增加。

Increasing sensitivity of dryland vegetation greenness to precipitation due to rising atmospheric CO.

机构信息

Sino-French Institute for Earth System Science, College of Urban and Environmental Sciences, Peking University, Beijing, China.

Climate and Ecosystem Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA, USA.

出版信息

Nat Commun. 2022 Aug 19;13(1):4875. doi: 10.1038/s41467-022-32631-3.

Abstract

Water availability plays a critical role in shaping terrestrial ecosystems, particularly in low- and mid-latitude regions. The sensitivity of vegetation growth to precipitation strongly regulates global vegetation dynamics and their responses to drought, yet sensitivity changes in response to climate change remain poorly understood. Here we use long-term satellite observations combined with a dynamic statistical learning approach to examine changes in the sensitivity of vegetation greenness to precipitation over the past four decades. We observe a robust increase in precipitation sensitivity (0.624% yr) for drylands, and a decrease (-0.618% yr) for wet regions. Using model simulations, we show that the contrasting trends between dry and wet regions are caused by elevated atmospheric CO (eCO). eCO universally decreases the precipitation sensitivity by reducing leaf-level transpiration, particularly in wet regions. However, in drylands, this leaf-level transpiration reduction is overridden at the canopy scale by a large proportional increase in leaf area. The increased sensitivity for global drylands implies a potential decrease in ecosystem stability and greater impacts of droughts in these vulnerable ecosystems under continued global change.

摘要

水资源的可获得性对陆地生态系统的形成起着至关重要的作用,特别是在低纬度和中纬度地区。植被生长对降水的敏感性强烈调节着全球植被动态及其对干旱的响应,但气候变化对敏感性变化的影响仍知之甚少。在这里,我们使用长期卫星观测数据,并结合动态统计学习方法,研究了过去四十年植被绿色度对降水敏感性的变化。我们观察到干旱地区的降水敏感性(0.624%yr)显著增加,而湿润地区的降水敏感性(-0.618%yr)则有所下降。利用模型模拟,我们表明干湿地区之间的相反趋势是由大气 CO(eCO)升高引起的。eCO 通过减少叶片蒸腾普遍降低了降水敏感性,特别是在湿润地区。然而,在干旱地区,叶片蒸腾的减少在冠层尺度上被叶片面积的大幅增加所抵消。全球干旱地区敏感性的增加意味着在持续的全球变化下,这些脆弱生态系统的生态系统稳定性可能降低,干旱的影响更大。

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