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Contrasting Hydraulic Architectures of Scots Pine and Sessile Oak at Their Southernmost Distribution Limits

机译:最南端分布极限的苏格兰松树和无柄橡树的水力结构对比

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摘要

Many temperate European tree species have their southernmost distribution limits in the Mediterranean Basin. The projected climatic conditions, particularly an increase in dryness, might induce an altitudinal and latitudinal retreat at their southernmost distribution limit. Therefore, characterizing the morphological and physiological variability of temperate tree species under dry conditions is essential to understand species’ responses to expected climate change. In this study, we compared branch-level hydraulic traits of four Scots pine and four sessile oak natural stands located at the western and central Mediterranean Basin to assess their adjustment to water limiting conditions. Hydraulic traits such as xylem- and leaf-specific maximum hydraulic conductivity (KS-MAX and KL-MAX), leaf-to-xylem area ratio (AL:AX) and functional xylem fraction (FX) were measured in July 2015 during a long and exceptionally dry summer. Additionally, xylem-specific native hydraulic conductivity (KS-N) and native percentage of loss of hydraulic conductivity (PLC) were measured for Scots pine. Interspecific differences in these hydraulic traits as well as intraspecific variability between sites were assessed. The influence of annual, summer and growing season site climatic aridity (P/PET) on intraspecific variability was investigated. Sessile oak displayed higher values of KS-MAX, KL-MAX, AL:AX but a smaller percentage of FX than Scots pines. Scots pine did not vary in any of the measured hydraulic traits across the sites, and PLC values were low for all sites, even during one of the warmest summers in the region. In contrast, sessile oak showed significant differences in KS-MAX, KL-MAX, and FX across sites, which were significantly related to site aridity. The striking similarity in the hydraulic traits across Scots pine sites suggests that no adjustment in hydraulic architecture was needed, likely as a consequence of a drought-avoidance strategy. In contrast, sessile oak displayed adjustments in the hydraulic architecture along an aridity gradient, pointing to a drought-tolerance strategy.
机译:欧洲许多温带树种在地中海盆地的分布范围最南端。预计的气候条件,特别是干燥度的增加,可能会在其最南端的分布极限处引起高度和纬度的后退。因此,表征干燥条件下温带树种的形态和生理变异性对于了解树种对预期气候变化的反应至关重要。在这项研究中,我们比较了位于地中海盆地中部和西部的四个苏格兰松树和四个无柄橡树天然林的分支级水力特征,以评估它们对水限制条件的调整。 2015年7月,在较长的一段时间内测量了木质部和叶片的最大水力传导率(KS-MAX和KL-MAX),叶片与木质部的面积比(AL:AX)和木质部功能比(FX)等水力特性。夏季异常干燥。此外,还对苏格兰松树测量了木质部特有的天然水力传导率(KS-N)和天然水力传导率损失百分比(PLC)。评估了这些水力性状的种间差异以及位点之间的种内变异性。研究了年度,夏季和生长季节的现场气候干旱(P / PET)对种内变异性的影响。无梗橡木的KS-MAX,KL-MAX,AL:AX值较高,但FX的百分比比苏格兰松树小。整个地点的任何测得的水力性状都不存在苏格兰松,并且即使在该地区最温暖的夏季之一期间,所有地点的PLC值也较低。相比之下,无梗橡树在各部位之间的KS-MAX,KL-MAX和FX上显示出显着差异,这与部位的干旱显着相关。整个苏格兰松树水力特征的惊人相似性表明,无需采取水力结构调整,这可能是避免干旱策略的结果。相比之下,无梗橡树在水力建筑中显示出沿干旱梯度的调整,这表明了耐旱策略。

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