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藤本植物的水力模式与树木不同吗?来自常春藤的新见解。

Are hydraulic patterns of lianas different from trees? New insights from Hedera helix.

机构信息

Department of Botany, University of Innsbruck, Sternwartestrasse, Innsbruck, Austria.

出版信息

J Exp Bot. 2019 May 9;70(10):2811-2822. doi: 10.1093/jxb/erz071.

Abstract

Lianas form long and flexible but disproportionately narrow stems, and thus require particular strategies to maintain the integrity of xylem water transport and ensure supply to large crown areas. The hydraulic architecture of lianas and the respective within-plant coordination of transport efficiency and safety, and the underlying anatomical variations in xylem, are largely unexplored. We analysed Hedera helix, a liana widespread in European temperate forests, with respect to hydraulic and xylem anatomical variations between the main stem and branches, between juvenile and adult life phases, and along the vertical axis. Main stems were significantly less embolism resistant but exhibited a higher hydraulic conductivity than branches. In branches, the cell turgor loss point of leaves decreased, while the embolism resistance and conductivity of xylem, as well as conduit diameters, increased with height. High water-transport capacities allow ivy to compensate for the small cross-section of stems, while the limited resistance to drought-induced xylem dysfunction of the main stem is probably linked to conservative stomatal regulation. Pronounced differences in xylem anatomy, hydraulic efficiency, and safety between the main stem and branches and along the vertical axis are surprisingly similar to those of self-supporting plants, and indicate that the coordination of carbon and water economies requires similar internal adjustments in tall plants.

摘要

藤本植物形成长而灵活但不成比例的狭窄茎,因此需要特别的策略来维持木质部水分运输的完整性,并确保向大冠层区域供应水分。藤本植物的水力结构以及运输效率和安全性的植物内协调,以及木质部的潜在解剖变异,在很大程度上尚未得到探索。我们分析了欧洲温带森林中广泛分布的常春藤,研究了主茎和侧枝之间、幼年期和成年期之间以及垂直轴向上的水力和木质部解剖变异。主茎的抗栓塞能力明显较低,但导水率高于侧枝。在侧枝中,叶片的细胞膨压损失点降低,而木质部的栓塞阻力和导水率以及导管直径随高度增加而增加。高水传输能力使常春藤能够补偿茎干的小横截面积,而主茎对干旱诱导的木质部功能障碍的阻力有限,可能与保守的气孔调节有关。主茎和侧枝之间以及垂直轴上的木质部解剖结构、水力效率和安全性的显著差异与自支撑植物非常相似,这表明碳和水经济的协调需要高大植物进行类似的内部调整。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d217/6506770/d701b6c60779/erz071f0001.jpg

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