首页> 外文期刊>Plant Ecology >Seasonal changes in apparent hydraulic conductance and their implications for water use of European beech (Fagus sylvatica L.) and sessile oak [Quercus petraea (Matt.) Liebl] in South Europe.
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Seasonal changes in apparent hydraulic conductance and their implications for water use of European beech (Fagus sylvatica L.) and sessile oak [Quercus petraea (Matt.) Liebl] in South Europe.

机译:在南欧,欧洲山毛榉(Fagus sylvatica L.)和无梗橡木[Quercus petraea(Matt。)Liebl]的表观水力导率的季节性变化及其对水利用的影响。

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摘要

The water status of Fagus sylvatica L. and Quercus petraea (Matt) Liebl. was analysed during a cycle of progressive natural drought in southern Europe. Predawn ( Psi pd) and midday water potential were measured in transpiring ( Psi leaf) and non-transpiring leaves ( Psi xyl). Furthermore, photosynthesis (A), stomatal conductance to water vapour (gs) and sap flow (Fd) were recorded on the same dates. Apparent leaf specific hydraulic conductance in the soil-plant-air continuum (Kh) and whole tree hydraulic conductance (Khsf) were calculated by using the simple analogy of the Ohm's law. Kh was estimated at different points in the pathway as the ratio between transpiration (E) in the uppermost canopy leaves at midday and the gradient of water potential in the different compartments of the continuum soil-roots-stem-branches-leaves. There was a progressive decrease in water potential measured on non-transpiring leaves at the base of tree crown in both species ( Psi lxyl) from the beginning of the growing season to the end of summer. A similar decrease was shown in shoot water potential ( Psi uxyl) at the uppermost canopy. Predawn water potential ( Psi pd) was high in both species until late July (28 July); afterwards, a significant decrease was registered in F. sylvatica and Q. petraea with minimum values of -0.81+or-0.03 and -0.75+or-0.06 MPa, respectively, by 15 September. In both species, leaf specific hydraulic conductance in the overall continuum soil-plant-air (Kh) decreased progressively as water stress increases. Minimum values of Kh and Khsf were recorded when Psi pd was lower. However, Q. petraea showed higher Kh than F. sylvatica for the same Psi pd. The decrease in Kh with water stress was mainly linked to its fall from the soil to the lowermost canopy (Ksrs). Nevertheless, a significant resistance in the petiole-leaf lamina (Kpl) was also recorded because significant differences in all dates were found on Psi between transpiring and non-transpiring leaves from the same shoot. The decline in Kh was followed by an increase in stomatal control of daily water losses through the decrease of stomatal conductance to water vapour (gs) during the day. It promoted a seasonal increase in the stomatal limitation to carbon dioxide uptake for photosynthesis (A). These facts were more relevant in F. sylvatica, which had concurrently a higher decline in water use at the tree level than Q. petraea. The results showed a strong coupling in F. sylvatica and Q. petraea between processes at leaf and tree level. It may be hypothesised a role of specific hydraulic conductance not only in the regulation of water losses by transpiration but also of carbon uptake..
机译:浅青豆和栎栎(Matt)Liebl的水状况。在南欧自然干旱不断加剧的周期中进行了分析。在蒸腾(Psi叶片)和非蒸腾叶片(Psi xyl)中测量了黎明前(Psi pd)和午间水势。此外,在同一日期记录了光合作用(A),对水蒸气的气孔导度(gs)和树液流量(Fd)。通过使用欧姆定律的简单类比,计算了土壤-植物-空气连续体中的表观叶片比水导率(Kh)和整棵树的水导率(Khsf)。估计Kh在路径的不同点上为中午最上层冠层叶片的蒸腾(E)与连续土壤根茎茎枝叶不同区室中水势梯度之间的比值。从生长季节开始到夏季结束,两种树(Psi lxyl)树冠基部的非蒸腾叶片上测得的水势逐渐降低。在最高冠层的枝条水势(Psi uxyl)也显示出类似的下降。直到7月下旬(7月28日),两个物种的黎明前水势(Psi pd)都很高;此后,到9月15日,西尔弗尼亚镰刀菌和白垩纪香椿菌出现显着下降,最小值分别为-0.81+或-0.03和-0.75+或-0.06 MPa。在这两个物种中,随着水分胁迫的增加,整个土壤-植物-空气中总比叶的水导率逐渐降低。当Psi pd较低时,记录Kh和Khsf的最小值。然而,对于相同的Psi pd,Q。petraea显示出的Kh高于F. sylvatica。水分胁迫导致的Kh降低主要与土壤中Khrs的下降有关。然而,也记录了在叶柄叶片(Kpl)中的显着抗性,因为在同一茎的蒸腾叶和非蒸腾叶上在Psi上发现了所有日期的显着差异。 Kh下降后,通过白天气孔对水蒸气的电导率(gs)的减少,气孔对每日水分损失的控制增加。它促进了气孔对光合作用二氧化碳吸收的气孔限制的季节性增加(A)。这些事实在西番莲中更为相关,西番莲在树木水平上的用水量下降幅度要比古猿Q. petraea高。结果表明,在叶和树水平上,樟子松和桔梗之间的强耦合。可以推测,特定的水力传导不仅在调节蒸腾作用的水损失方面而且在碳吸收方面也起作用。

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