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首页> 外文期刊>Anais da Academia Brasileira de Ciencias >Are leaf physiological traits related to leaf water isotopic enrichment in restinga woody species?
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Are leaf physiological traits related to leaf water isotopic enrichment in restinga woody species?

机译:Resta木本植物叶片的生理特性是否与叶片水分同位素富集有关?

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During plant-transpiration, water molecules having the lighter stable isotopes of oxygen and hydrogen evaporate and diffuse at a faster rate through the stomata than molecules having the heavier isotopes, which cause isotopic enrichment of leaf water. Although previous models have assumed that leaf water is well-mixed and isotopically uniform, non-uniform stomatal closure, promoting different enrichments between cells, and different pools of water within leaves, due to morpho-physiological traits, might lead to inaccuracies in isotopic models predicting leaf water enrichment. We evaluate the role of leaf morpho-physiological traits on leaf water isotopic enrichment in woody species occurring in a coastal vegetation of Brazil known asrestinga. Hydrogen and oxygen stable isotope values of soil, plant stem and leaf water and leaf traits were measured in six species from restinga vegetation during a drought and a wet period. Leaf water isotopic enrichment relative to stem water was more homogeneous among species during the drought in contrast to the wet period suggesting convergent responses to deal to temporal heterogeneity in water availability. Average leaf water isotopic enrichment relative to stem water during the drought period was highly correlated with relative apoplastic water content. We discuss this observation in the context of current models of leaf water isotopic enrichment as a function of the Péclet effect. We suggest that future studies should include relative apoplastic water content in isotopic models.
机译:在植物蒸腾过程中,具有较轻的稳定的氧和氢同位素的水分子比具有较重的同位素的水分子通过气孔蒸发和扩散的速度更快,这导致叶水的同位素富集。尽管以前的模型假设叶水混合均匀且同位素均匀,但气孔闭合不均匀,由于形态-生理特性,促进了细胞之间的不同富集以及叶内不同的水池,可能会导致同位素模型不准确预测叶片水分富集。我们评估在巴西沿海植被asrestinga中发生的木本物种中叶形态生理特征对叶水同位素富集的作用。在干旱和湿润时期,测量了来自resta植被的6个物种的土壤,植物茎和叶水以及叶片性状的氢和氧稳定同位素值。与干旱时期相比,干旱期间物种间叶水相对于茎水的同位素富集更为均匀,这表明收敛的响应可以解决水可利用时间的异质性。干旱时期相对于茎水的平均叶水同位素富集与相对质外水含量高度相关。我们在当前叶水同位素富集作为Péclet效应的函数的背景下讨论此观察。我们建议未来的研究应在同位素模型中包括相对质外水含量。

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