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叶中脉的轴向解剖结构为 Acer pseudoplatanus 叶片的水力结构和空蚀模式提供了新的见解。

Axial anatomy of the leaf midrib provides new insights into the hydraulic architecture and cavitation patterns of Acer pseudoplatanus leaves.

机构信息

Department Territorio e Sistemi Agro-Forestali, University of Padova, Padova, Italy.

Department of Ecology and Ecosystem Modelling, University of Potsdam, Potsdam, Germany.

出版信息

J Exp Bot. 2019 Nov 18;70(21):6195-6201. doi: 10.1093/jxb/erz347.

Abstract

The structure of leaf veins is typically described by a hierarchical scheme (e.g. midrib, 1st order, 2nd order), which is used to predict variation in conduit diameter from one order to another whilst overlooking possible variation within the same order. We examined whether xylem conduit diameter changes within the same vein order, with resulting consequences for resistance to embolism. We measured the hydraulic diameter (Dh), and number of vessels (VN) along the midrib and petioles of leaves of Acer pseudoplatanus, and estimated the leaf area supplied (Aleaf-sup) at different points of the midrib and how variation in anatomical traits affected embolism resistance. We found that Dh scales with distance from the midrib tip (path length, L) with a power of 0.42, and that VN scales with Aleaf-sup with a power of 0.66. Total conductive area scales isometrically with Aleaf-sup. Embolism events along the midrib occurred first in the basipetal part and then at the leaf tip where vessels are narrower. The distance from the midrib tip is a good predictor of the variation in vessel diameter along the 1st order veins in A. pseudoplatanus leaves and this anatomical pattern seems to have an effect on hydraulic integrity since wider vessels at the leaf base embolize first.

摘要

叶脉的结构通常采用层次结构来描述(例如中脉、1 级、2 级),这种结构用于预测导管直径在不同等级之间的变化,而忽略了同一等级内可能存在的变化。我们研究了同一叶脉等级内木质部导管直径是否发生变化,以及这对栓塞抗性有何影响。我们测量了槭树叶片中脉和叶柄上的水力直径(Dh)和血管数量(VN),并估计了中脉不同位置的叶片供应面积(Aleaf-sup),以及解剖结构特征的变化如何影响栓塞抗性。我们发现,Dh 与从中脉尖端到测量点的距离(路径长度,L)呈 0.42 的幂律关系,而 VN 与 Aleaf-sup 呈 0.66 的幂律关系。总传导面积与 Aleaf-sup 呈等比关系。栓塞事件首先发生在从中脉尖端开始的向基部分,然后在叶片尖端,那里的血管较窄。从中脉尖端的距离是预测槭树叶片 1 级叶脉上血管直径变化的良好指标,这种解剖结构模式似乎对水力完整性有影响,因为叶片基部较宽的血管首先栓塞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5109/6859715/ecfa62ef53b5/erz347f0001.jpg

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