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Spatial Heterogeneity of Vegetation Resilience Changes to Different Drought Types

植被(病理学) 环境科学 自然地理学 蒸散量 气候变化 生态系统 共同空间格局 叶面积指数 空间异质性 黄土高原 降水 牧场 高原(数学) 生态学 地理 农林复合经营 土壤科学 生物 数学 医学 病理 气象学 数学分析
作者
Yu Zhang,Xiaohong Liu,Wenzhe Jiao,Xiuchen Wu,Xiaomin Zeng,Liangju Zhao,Lixin Wang,Jiaqi Guo,Xiaoyu Xing,Yixue Hong
出处
期刊:Earth’s Future [Wiley]
卷期号:11 (4) 被引量:59
标识
DOI:10.1029/2022ef003108
摘要

Abstract Resilience is a fundamental concept for vegetation health. The increasing drought frequency and severity may pose severe threat to vegetation resilience. However, it is still not clear how vegetation resilience is evolving in response to climate change in pivotal biographical zones. Here, we examined the resilience changes in terms of leaf area index (LAI, an indicator of canopy structure) and gross primary productivity (GPP, an indicator of carbon uptake) in responding to the Standardized Precipitation‐Evapotranspiration Index (SPEI) and vapor pressure deficit (VPD) over China's Loess Plateau and Qinling Mountains. Linking remote sensing variables and tree ring width allows the upscaling of plot‐based vegetation growth information. We further explored potential explanatory factors associated with the heterogeneous spatial distributions of resilience changes. Results revealed that the resilience of GPP weakened more than LAI in response to drought, suggesting that compared to LAI, productivity requires more time to recover to the pre‐drought levels. Regionally, the change of vegetation resilience on the Loess Plateau and in high‐altitude areas was highly susceptible to SPEI and VPD, respectively. The observed spatial heterogeneity in resilience changes was mainly attributed by climate zone, water deficit, and their interactions. Our findings provide direct and empirical evidence that the vegetation in the Loess Plateau and Qinling Mountains is gradually losing resilience. The results indicate that sustained ecosystem water deficit and atmospheric dryness will continue to threaten vegetation survival and terrestrial ecosystem service.
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