Limitations of soil moisture and formation rate on vegetation growth in karst areas

喀斯特 归一化差异植被指数 环境科学 植被(病理学) 干旱 生态系统 增强植被指数 初级生产 水文学(农业) 自然地理学 气候变化 生态学 植被指数 地理 地质学 病理 生物 岩土工程 医学 考古
作者
Sirui Zhang,Xiaoyong Bai,Cuiwei Zhao,Qiu Tan,Guangjie Luo,Yue Cao,Yuanhong Deng,Qin Li,Chaojun Li,Luhua Wu,Jinfeng Wang,Fei Chen,Huipeng Xi,Ran Chen,Min Liu
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:810: 151209-151209 被引量:80
标识
DOI:10.1016/j.scitotenv.2021.151209
摘要

Vegetation changes in karst areas are controlled by the soil formation rate (SFR) and soil moisture (SM). However, little is known about their thresholds and global control patterns. To this end, based on high-precision climate and vegetation data for 2000-2014, using Pearson correlation analysis, the Hurst index, and change-point analysis, the thresholds of the SFR and SM in vegetation growth in karst areas were identified. Furthermore, a spatial map (0.125° × 0.125°) of the global karst ecosystem with a static/dynamic limitation zone was established. We found that the net primary productivity (NPP) in 70% of the global climate zones exhibited a dual restriction relationship with the SM and SFR. The limitations of the SFR and SM in vegetation growth were most obvious in subpolar and semi-arid climates. In addition, their ecological thresholds were 25.2 t km-2 yr-1 and 0.28 m3 m-3, respectively. The static limitation of the SFR on the NPP in karst areas accounted for 28.37%, and the influence of the SM enhanced this limit (21.79%). The limitation of the SFR on vegetation was mainly concentrated in Boreal forests (17%), and the limitation of the SM was mainly concentrated in tropical savannas (12%). The NPP and the Normalized Difference Vegetation Index (NDVI) were the most sensitive to changes in the SM and SFR. Moreover, the analysis based on 14 ecologically limitation karst areas further revealed that the reduction in these factors may cause the tropical rain forest to experience degradation. It can be seen that the SM enhanced the limiting effect of the SFR on vegetation in karst areas. In short, this interpretation of karst vegetation limitations provides a deeper understanding of and approach to ecosystem evolution and vegetation restoration in these regions.
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