生态学
生态位
气候变化
特质
植被(病理学)
钥匙(锁)
环境科学
生物
栖息地
计算机科学
医学
病理
程序设计语言
作者
Pablo Sanchez‐Martinez,Maurizio Mencuccini,Raúl García‐Valdés,William P. Hammond,Josep M. Serra‐Diaz,Wen‐Yong Guo,Rocío Cortés,Kyle G. Dexter,Jens‐Christian Svenning,Craig D. Allen,J Vilalta
标识
DOI:10.1038/s41559-023-02180-z
摘要
Predicting drought-induced mortality (DIM) of woody plants remains a key research challenge under climate change. Here, we integrate information on the edaphoclimatic niches, phylogeny and hydraulic traits of species to model the hydraulic risk of woody plants globally. We combine these models with species distribution records to estimate the hydraulic risk faced by local woody plant species assemblages. Thus, we produce global maps of hydraulic risk and test for its relationship with observed DIM. Our results show that local assemblages modelled as having higher hydraulic risk present a higher probability of DIM. Metrics characterizing this hydraulic risk improve DIM predictions globally, relative to models accounting only for edaphoclimatic predictors or broad functional groupings. The methodology we present here allows mapping of functional trait distributions and elucidation of global macro-evolutionary and biogeographical patterns, improving our ability to predict potential global change impacts on vegetation.
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