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Vulnerability and hydraulic segmentations at the stem–leaf transition: coordination across Neotropical trees

木质部 分割 生物 导水率 植物 生态学 人工智能 计算机科学 土壤水分
作者
Sébastien Levionnois,Camille Ziegler,Steven Jansen,Emma Calvet,Sabrina Coste,Clément Stahl,Camille Salmon,Sylvain Delzon,Charlotte Guichard,Patrick Heuret
出处
期刊:New Phytologist [Wiley]
卷期号:228 (2): 512-524 被引量:58
标识
DOI:10.1111/nph.16723
摘要

Summary Hydraulic segmentation at the stem–leaf transition predicts higher hydraulic resistance in leaves than in stems. Vulnerability segmentation, however, predicts lower embolism resistance in leaves. Both mechanisms should theoretically favour runaway embolism in leaves to preserve expensive organs such as stems, and should be tested for any potential coordination. We investigated the theoretical leaf‐specific conductivity based on an anatomical approach to quantify the degree of hydraulic segmentation across 21 tropical rainforest tree species. Xylem resistance to embolism in stems (flow‐centrifugation technique) and leaves (optical visualization method) was quantified to assess vulnerability segmentation. We found a pervasive hydraulic segmentation across species, but with a strong variability in the degree of segmentation. Despite a clear continuum in the degree of vulnerability segmentation, eight species showed a positive vulnerability segmentation (leaves less resistant to embolism than stems), whereas the remaining species studied exhibited a negative or no vulnerability segmentation. The degree of vulnerability segmentation was positively related to the degree of hydraulic segmentation, such that segmented species promote both mechanisms to hydraulically decouple leaf xylem from stem xylem. To what extent hydraulic and vulnerability segmentation determine drought resistance requires further integration of the leaf–stem transition at the whole‐plant level, including both xylem and outer xylem tissue.

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