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Seasonal variations of gas exchange and water relations in deciduous and evergreen trees in monsoonal dry forests of Thailand

机译:泰国季风干燥森林的落叶和常绿乔木中气体交换和水关系的季节性变化

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This study compared leaf gas exchange, leaf hydraulic conductance, twig hydraulic conductivity and leaf osmotic potential at full turgor between two drought-deciduous trees, Vitex peduncularis Wall. and Xylia xylocarpa (Roxb.) W. Theob., and two evergreen trees, Hopea ferrea Lanessan and Syzygium cumini (L.) Skeels, at the uppermost canopies in tropical dry forests in Thailand. The aims were to examine (i) whether leaf and twig hydraulic properties differ in relation to leaf phenology and (ii) whether xylem cavitation is a determinant of leaf shedding during the dry season. The variations in almost all hydraulic traits were more dependent on species than on leaf phenology. Evergreen Hopea exhibited the lowest leaf-area-specific twig hydraulic conductivity (leaf-area-specific K-twig), lamina hydraulic conductance (K-lamina) and leaf osmotic potential at full turgor (Psi(o)) among species, whereas evergreen Syzygium exhibited the highest leaf-area-specific K-twig, K-lamina and Psi(o). Deciduous Xylia had the highest sapwood-area-specific K-twig, along with the lowest Huber value (sapwood area/leaf area). More negative osmotic Psi(o) and leaf osmotic adjustment during the dry season were found in deciduous Vitex and evergreen Hopea, accompanied by low sapwood-area-specific K-twig. Regarding seasonal changes in hydraulics, no remarkable decrease in K-lamina and K-twig was found during the dry season in any species. Results suggest that leaf shedding during the dry season is not always associated with extensive xylem cavitation.
机译:这项研究比较了两棵干旱落叶乔木Vitex peduncularis Wall的全膨胀下的叶片气体交换,叶片水力传导率,树枝水力传导率和叶片渗透势。和泰国的Xylia xylocarpa(Roxb。W. Theob。)和两棵常绿的树,Hope ferrea Lanessan和Syzygium cumini(L.)龙骨,位于泰国热带干旱森林的最高冠层。目的是检查(i)叶片和嫩枝的水力特性是否与叶片物候有关,以及(ii)木质部空化是否是干旱季节叶片脱落的决定因素。几乎所有水力性状的变化更多地取决于物种,而不是叶片物候。在所有物种中,常绿Hopea在全膨胀下(Psi(o))表现出最低的叶面特定小枝水力传导率(叶面积特定的K小枝),叶片水力传导率(K-lamina)和叶片渗透势。蒲桃表现出最高的叶面积特异性K-小枝,K-薄层和Psi(o)。落叶木聚糖具有最高的边材面积特定的K-枝条,最低的Huber值(边材面积/叶面积)。在落叶的Vitex和常绿的Hopea中发现了更多的负渗透压Psi(o)和叶片渗透压调节,并伴有边材面积低的K型树枝。关于水力学的季节性变化,在任何季节中,在干燥季节中均未发现K叶片和K枝的明显减少。结果表明,干旱季节的叶片脱落并不总是与大量的木质部空化有关。

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