木质部
环境科学
生物量(生态学)
热带森林
树(集合论)
热带
水力机械
水文学(农业)
热带雨林
热带气候
雨林
木本植物
地质学
导水率
农林复合经营
生态学
林业
作者
Paulo Bittencourt,Arne Scheire,Palasiah Jotan,Jehová Lourenço,Lindsay F. Banin,Mohd Aminur Faiz Suis,David F. R. P. Burslem,Bradley Christoffersen,David A. Coomes,Peter Groenendijk,Steven Jansen,Tommaso Jucker,Radim Matula,Maurizio Mencuccini,Rafael S. Oliveira,Roman Plichta,Reuben Nilus,Rolando Robert,Martin Svátek,Lucy Rowland
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-07-02
卷期号:393 (6806): 60-64
被引量:1
标识
DOI:10.1126/science.aea9013
摘要
Half of the aboveground biomass in forests is stored in a disproportionately small number of very tall trees. These giants are predicted to be more vulnerable to drought-induced damage because height impairs their hydraulic system. We evaluated whether the hydraulic system of world's tallest tropical tree species-Southeast Asian dipterocarps-are negatively affected by their height. The more negative xylem pressures caused by tree height were fully compensated for through adjustment of vessel anatomy and leaf hydraulic traits, and the trees suffered no height-related loss in growth during a severe drought. Therefore, height does not make the hydraulic systems of the world's tallest tropical tree species more vulnerable to drought, and the growth rates of these trees are not more negatively affected by drought than are their smaller counterparts.
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