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Comparison of Modeled and Observed Environmental Influences on the Stable Oxygen and Hydrogen Isotope Composition of Leaf Water in Phaseolus vulgaris L.

机译:建模和观察到的环境影响对菜豆叶片水中稳定氧和氢同位素组成的比较。

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摘要

In this paper we describe how a model of stable isotope fractionation processes, originally developed by H. Craig and L. I. Gordon ([1965] in E Tongiorgi, ed, Proceedings of a Conference on Stable Isotopes in Oceanographic Studies and Paleotemperature, Spoleto, Italy, pp 9-130) for evaporation of water from the ocean, can be applied to leaf transpiration. The original model was modified to account for turbulent conditions in the leaf boundary layer. Experiments were conducted to test the factors influencing the stable isotopic composition of leaf water under controlled environment conditions. At steady state, the observed leaf water isotopic composition was enriched above that of stem water with the extent of the enrichment dependent on the leaf-air vapor pressure difference (VPD) and the isotopic composition of atmospheric water vapor (AWV). The higher the VPD, the larger was the observed heavy isotope content of leaf water. At a constant VPD, leaf water was relatively depleted in heavy isotopes when exposed to AWV with a low heavy isotope composition, and leaf water was relatively enriched in heavy isotopes when exposed to AWV with a large heavy isotope composition. However, the observed heavy isotope composition of leaf water was always less than that predicted by the model. The extent of the discrepancy between the modeled and observed leaf water isotopic composition was a strong linear function of the leaf transpiration rate.
机译:在本文中,我们描述了稳定同位素分级分离过程的模型,该模型最初由H. Craig和LI Gordon([1965]在E Tongiorgi编辑,海洋学和古温度稳定同位素会议论文集,意大利斯波莱托, pp 9-130)用于蒸发海洋中的水,可用于叶片蒸腾。修改原始模型以解决叶片边界层中的湍流条件。进行实验以测试在受控环境条件下影响叶水稳定同位素组成的因素。在稳定状态下,观察到的叶水同位素组成比茎水富集,富集程度取决于叶-空气蒸气压差(VPD)和大气水蒸气的同位素组成(AWV)。 VPD越高,观察到的叶水中重同位素含量越大。在VPD恒定的情况下,当暴露于重同位素组成低的AWV时,叶片水相对富含重同位素,而当暴露于重同位素组成大的AWV时,叶片水相对富含重同位素。但是,观察到的叶水的重同位素组成总是小于模型预测的。建模和观察到的叶片水同位素组成之间差异的程度是叶片蒸腾速率的强线性函数。

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