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Plasticity in leaf-level water relations of tropical rainforest trees in response to experimental drought.

机译:响应实验干旱热带雨林树的叶级水关系中的可塑性。

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摘要

The tropics are predicted to become warmer and drier, and understanding the sensitivity of tree species to drought is important for characterizing the risk to forests of climate change. This study makes use of a long-term drought experiment in the Amazon rainforest to evaluate the role of leaf-level water relations, leaf anatomy and their plasticity in response to drought in six tree genera. The variables (osmotic potential at full turgor, turgor loss point, capacitance, elastic modulus, relative water content and saturated water content) were compared between seasons and between plots (control and through-fall exclusion) enabling a comparison between short- and long-term plasticity in traits. Leaf anatomical traits were correlated with water relation parameters to determine whether water relations differed among tissues. The key findings were: osmotic adjustment occurred in response to the long-term drought treatment; species resistant to drought stress showed less osmotic adjustment than drought-sensitive species; and water relation traits were correlated with tissue properties, especially the thickness of the abaxial epidermis and the spongy mesophyll. These findings demonstrate that cell-level water relation traits can acclimate to long-term water stress, and highlight the limitations of extrapolating the results of short-term studies to temporal scales associated with climate change.
机译:预计热带地区将变暖和干燥,因此了解树木对干旱的敏感性对于表征气候变化对森林的风险至关重要。这项研究利用亚马逊雨林中的长期干旱实验来评估六属树的叶片水平水关系,叶片解剖结构及其可塑性对干旱的响应。比较了季节之间和地块之间的变量(全膨胀时的渗透势,膨胀损耗点,电容,弹性模量,相对含水量和饱和含水量)(控制区和直通瀑布排除区),从而可以比较短时和长时。性状的术语可塑性。将叶片解剖特征与水分关系参数相关联,以确定组织之间的水分关系是否不同。主要发现是:对长期干旱的处理引起了渗透调节。与干旱敏感的物种相比,抗干旱胁迫的物种表现出较少的渗透调节作用;与水的相关性状与组织特性有关,特别是背面表皮和海绵状叶肉的厚度。这些发现表明,细胞水平的水相关性状可以适应长期的水分胁迫,并突出了将短期研究的结果外推到与气候变化有关的时间尺度的局限性。

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