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H O 蒸汽标记显示了径向佩克莱特效应的证据,但并非所有叶片都有。

H O vapour labelling reveals evidence of radial Péclet effects, but in not all leaves.

机构信息

Te Aka Mātuatua - School of Science, University of Waikato, Hamilton, 3216, New Zealand.

出版信息

New Phytol. 2024 Nov;244(4):1263-1274. doi: 10.1111/nph.20087. Epub 2024 Sep 5.

Abstract

Contradictory evidence exists regarding the relevance of Péclet-like gradients in leaf water isotopes, making it difficult to accurately predict variation in isotope composition. Here, we use H O vapour labelling to directly test whether leaf water isotopes diffuse back into the xylem to be carried forward to more distal leaf portions. Backward diffusion has been assumed, due to observations of increasing enrichment towards the tip and outer edges of some leaves. Further complicating the selection of leaf water isotope models is the observation that some, but not all, leaves demonstrate a radial Péclet effect in bulk leaf water and that the hydraulic design of leaves may influence the development of isotope gradients in leaves. Carry-forward of H O vapour label was detected in the two monocot species assessed (oat and corn), but not in the two dicot species (foxglove and sunflower). Further, bulk leaf water measurements at differing transpiration rates indicated that a bulk leaf water Péclet effect was relevant for foxglove only. We conclude that both leaf hydraulic design and relative velocities of water within transport pathways influence leaf water isotope composition, reconciling seemingly contradictory previous results regarding the relevance of Péclet effects to leaf water isotopes.

摘要

关于叶水稳定同位素中类皮克勒梯度的相关性存在矛盾的证据,这使得准确预测同位素组成的变化变得困难。在这里,我们使用 H O 蒸气标记来直接测试叶水同位素是否会扩散回木质部并被运送到更远的叶片部分。由于观察到一些叶片的尖端和外边缘的富集程度增加,因此假设存在反向扩散。进一步使选择叶水同位素模型复杂化的是,观察到一些但不是所有的叶片在整体叶水中表现出径向类皮克勒效应,并且叶片的水力设计可能会影响叶片中同位素梯度的发展。在评估的两种单子叶植物(燕麦和玉米)中检测到 H O 蒸气标记的向前传递,但在两种双子叶植物(毛地黄和向日葵)中没有检测到。此外,在不同蒸腾速率下的整体叶水测量表明,只有毛地黄与整体叶水类皮克勒效应有关。我们的结论是,叶片水力设计和运输途径内水的相对速度都会影响叶水同位素组成,从而调和了先前关于类皮克勒效应对叶水同位素相关性的看似矛盾的结果。

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