树干内皮厚度与木质部水势和韧皮部膨胀的日变化。

Q3 Agricultural and Biological Sciences Plant-environment interactions (Hoboken, N.J.) Pub Date : 2021-06-01 DOI:10.1002/pei3.10045
Daniel Epron, Mai Kamakura, Wakana Azuma, Masako Dannoura, Yoshiko Kosugi
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引用次数: 1

摘要

内树皮在树干中起着重要的作用,包括与木质部径向交换水分和碳水化合物的转运。这两个过程都会影响树皮的含水量和厚度。本研究首次采用点式树木测厚仪同时测量了日本柏树(Chamaecyparis obtusa)树皮内部厚度的日变化,并利用放置在树木测厚仪旁的茎干湿度计同时测量了局部木质部电位的日变化,以确定这些变化与韧皮部膨胀和碳水化合物运输的关系。我们还通过测量从内部树皮中提取的汁液的渗透压来估计轴向静水压力梯度。内部树皮在白天收缩,在夜间膨胀,其幅度与气候的日常和季节变化有关。木质部水势与树皮内层厚度的变化在白天呈滞后曲线,中位滞后为2 h。树皮内层厚度的日变化可以获得韧皮部膨胀的相关信号,沿树干向上的位置高于向下的位置。然而,只有在黎明时才观察到向下的静水压力梯度,这表明韧皮部液流速度的日变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Diurnal variations in the thickness of the inner bark of tree trunks in relation to xylem water potential and phloem turgor.

The inner bark plays important roles in tree stems, including radial exchange of water with the xylem and translocation of carbohydrates. Both processes affect the water content and the thickness of the inner bark on a diurnal basis. For the first time, we simultaneously measured the diurnal variations in the inner bark thickness of hinoki cypress (Chamaecyparis obtusa) by using point dendrometers and those of local xylem potential by using stem psychrometers located next to the dendrometers to determine how these variations were related to each other, to phloem turgor and carbohydrate transport. We also estimated the axial hydrostatic pressure gradient by measuring the osmolality of the sap extracted from the inner bark. The inner bark shrunk during the day and swelled during the night with an amplitude related to day-to-day and seasonal variations in climate. The relationship between changes in xylem water potential and inner bark thickness exhibited a hysteresis loop during the day with a median lag of 2 h. A phloem turgor-related signal can be retrieved from the diurnal variations in the inner bark thickness, which was higher at the upper than at the lower position along the trunk. However, a downward hydrostatic pressure gradient was only observed at dawn, suggesting diurnal variations in the phloem sap flow velocity.

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来源期刊
CiteScore
2.70
自引率
0.00%
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审稿时长
15 weeks
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