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杨树对木质部空穴化的易感性适应了更干燥的土壤条件。

Poplar vulnerability to xylem cavitation acclimates to drier soil conditions.

机构信息

Clermont Université, Université Blaise Pascal, UMR 547 PIAF, F-63177, Aubière, France.

出版信息

Physiol Plant. 2010 Jul 1;139(3):280-8. doi: 10.1111/j.1399-3054.2010.01367.x. Epub 2010 Feb 19.

Abstract

Xylem vulnerability to cavitation differs between tree species according to their drought resistance, more xerophilous species being more resistant to xylem cavitation. Variability in xylem vulnerability to cavitation is also found within species, especially between in situ populations. The origin of this variability has not been clearly identified. Here we analyzed the response of xylem hydraulic traits of Populus tremula x Populus alba trees to three different soil water regimes. Stem xylem vulnerability was scored as the xylem water potential causing 12, 50 and 88% loss of conductivity (P(12), P(50) and P(88)). Vulnerability to cavitation was found to acclimate to growing conditions under different levels of soil water content, with P(50) values of -1.82, -2.03 and -2.45 MPa in well-watered, moderately water-stressed and severely water-stressed poplars, respectively. The value of P(12), the xylem tension at which cavitation begins, was correlated with the lowest value of midday leaf water potential (psi m) experienced by each plant, the difference between the two parameters being approximately 0.5 MPa, consistent with the absence of any difference in embolism level between the different water treatments. These results support the hypothesis that vulnerability to cavitation is a critical trait for resistance to drought. The decrease in vulnerability to cavitation under growing conditions of soil drought was correlated with decreased vessel diameter, increased vessel wall thickness and a stronger bordered pit field (t/b)(2). The links between these parameters are discussed.

摘要

木质部对空化的脆弱性因树种而异,根据其耐旱性,更耐旱的树种对木质部空化的抵抗力更强。木质部对空化的脆弱性在物种内也存在变异性,尤其是在原地种群之间。这种变异性的起源尚未明确确定。在这里,我们分析了欧洲山杨和杂种白杨树木质部水力特性对三种不同土壤水分条件的响应。木质部脆弱性评分作为木质部水势导致 12%、50%和 88%电导率损失的水势(P(12)、P(50)和 P(88))。发现木质部对空化的脆弱性适应于不同土壤含水量水平下的生长条件,在水分充足、中度水分胁迫和严重水分胁迫的白杨中,P(50)值分别为-1.82、-2.03 和-2.45 MPa。开始空化的木质部张力 P(12)值与每个植物经历的最低中午叶片水势(psi m)值相关,这两个参数之间的差异约为 0.5 MPa,与不同水分处理之间不存在任何栓塞水平差异一致。这些结果支持这样一种假设,即对空化的脆弱性是抗旱性的关键特征。在土壤干旱生长条件下,对空化的脆弱性降低与导管直径减小、导管壁增厚和边界坑场增强(t/b)(2)有关。讨论了这些参数之间的联系。

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