Amazonia trees have limited capacity to acclimate plant hydraulic properties in response to long‐term drought

导水率 环境科学 热带气候 亚马逊河 亚马逊雨林 抗性(生态学) 耐旱性 生态学 生物 农学 土壤水分
作者
Paulo R. L. Bittencourt,Rafael S. Oliveira,Antônio C. L. da Costa,André L. Giles,Ingrid Coughlin,Patrícia de Britto Costa,David C. Bartholomew,Leandro Valle Ferreira,Steel Silva Vasconcelos,Fernanda Barros,A. S. João,Alex Oliveira,Maurizio Mencuccini,Patrick Meir,Lucy Rowland
出处
期刊:Global Change Biology [Wiley]
卷期号:26 (6): 3569-3584 被引量:87
标识
DOI:10.1111/gcb.15040
摘要

Abstract The fate of tropical forests under future climate change is dependent on the capacity of their trees to adjust to drier conditions. The capacity of trees to withstand drought is likely to be determined by traits associated with their hydraulic systems. However, data on whether tropical trees can adjust hydraulic traits when experiencing drought remain rare. We measured plant hydraulic traits (e.g. hydraulic conductivity and embolism resistance) and plant hydraulic system status (e.g. leaf water potential, native embolism and safety margin) on >150 trees from 12 genera (36 species) and spanning a stem size range from 14 to 68 cm diameter at breast height at the world's only long‐running tropical forest drought experiment. Hydraulic traits showed no adjustment following 15 years of experimentally imposed moisture deficit. This failure to adjust resulted in these drought‐stressed trees experiencing significantly lower leaf water potentials, and higher, but variable, levels of native embolism in the branches. This result suggests that hydraulic damage caused by elevated levels of embolism is likely to be one of the key drivers of drought‐induced mortality following long‐term soil moisture deficit. We demonstrate that some hydraulic traits changed with tree size, however, the direction and magnitude of the change was controlled by taxonomic identity. Our results suggest that Amazonian trees, both small and large, have limited capacity to acclimate their hydraulic systems to future droughts, potentially making them more at risk of drought‐induced mortality.

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