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Published on: January 7, 2019
Bedrock lithology determines forest demographic responses to drought
Jiajia Su1, Wuji Zheng2, Xiaohua Gou3
1State Key Laboratory of Biological Control, School of Ecology, Sun Yat-sen University, Shenzhen, Guangdong, China. sujj8@mail.sysu.edu.cn.
None:
Forest vulnerability to drought depends not only on climate and traits, but also on bedrock controls on water dynamics, which remain poorly resolved. Here we integrate satellite-derived regolith water loss rate, a proxy for near-surface water retention capacity, with tree-ring records from 849 trees across 40 sites, carbon isotope measurements and mortality observations to examine forest demographic drought responses across karst and non-karst forests in southwest China. Bedrock lithology emerged as a key structural constraint on spatial variation in drought vulnerability, alongside climate, soil and trait variables. Notably, we identify a lithology-mediated inversion of demographic vulnerability: in karst forests, younger and smaller trees showed lower resistance and recovery than older and larger trees, especially under prolonged drought, whereas non-karst forests showed contrasting patterns. Site-level isotope and mortality evidence indicated physiological stress and growth decline consistent with this contrast, highlighting bedrock lithology as a geophysical constraint on forest demographic drought vulnerability.
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