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Rainforest trees respond to drought by modifying their hydraulic architecture

机译:雨林树木通过修改其水力结构来应对干旱

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Increased drought is forecasted for tropical regions, with severe implications for the health and function of forest ecosystems. How mature forest trees will respond to water deficit is poorly known. We investigated wood anatomy and leaf traits in lowland tropical forest trees after 24?months of experimental rainfall exclusion. Sampling sun‐exposed young canopy branches from target species, we found species‐specific systematic variation in hydraulic‐related wood anatomy and leaf traits in response to drought stress. Relative to controls, drought‐affected individuals of different tree species variously exhibited trait measures consistent with increasing hydraulic safety. These included narrower or less vessels, reduced vessel groupings, lower theoretical water conductivities, less water storage tissue and more abundant fiber in their wood, and more occluded vessels. Drought‐affected individuals also had thinner leaves, and more negative pre‐dawn or mid‐day leaf water potentials. Future studies examining both wood and leaf hydraulic traits should improve the representation of plant hydraulics within terrestrial ecosystem and biosphere models, and help fine‐tune predictions of how future climate changes will affect tropical forests globally.
机译:预测热带地区干旱将增加,这对森林生态系统的健康和功能将产生严重影响。众所周知,成熟的林木如何应对缺水。在经过24个月的实验降雨排除后,我们调查了低地热带森林树木的木材解剖结构和叶片特征。通过对目标物种的暴露在阳光下的年轻树冠分支进行采样,我们发现了与干旱相关的水力相关木材解剖结构和叶片性状的物种特定系统变异。相对于对照,受干旱影响的不同树种的个体表现出与提高水力安全性相一致的性状措施。这些包括较窄或较少的容器,减少的容器分组,较低的理论水电导率,较少的储水组织和木材中更丰富的纤维,以及更多的堵塞容器。受干旱影响的人的叶子也较薄,黎明前或中午时的叶子水势更弱。未来研究木材和叶片的水力特性的研究应改善植物水力学在陆地生态系统和生物圈模型中的表示,并有助于对未来气候变化将如何影响全球热带森林的预测进行微调。

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