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高、低水汽压亏缺下红树莓(Rubus idaeus L.)叶片中叶肉导度持续的负温度响应:脱落酸的作用?

Persistent negative temperature response of mesophyll conductance in red raspberry (Rubus idaeus L.) leaves under both high and low vapour pressure deficits: a role for abscisic acid?

机构信息

Department of Plant Sciences, Laval University, Quebec, Canada.

Department of Soils and Agri-Food Engineering, Laval University, Quebec, Canada.

出版信息

Plant Cell Environ. 2017 Sep;40(9):1940-1959. doi: 10.1111/pce.12997.

DOI:10.1111/pce.12997
PMID:28620951
Abstract

The temperature dependence of mesophyll conductance (g ) was measured in well-watered red raspberry (Rubus idaeus L.) plants acclimated to leaf-to-air vapour pressure deficit (VPDL) daytime differentials of contrasting amplitude, keeping a fixed diurnal leaf temperature (T ) rise from 20 to 35 °C. Contrary to the great majority of g temperature responses published to date, we found a pronounced reduction of g with increasing T irrespective of leaf chamber O level and diurnal VPDL regime. Leaf hydraulic conductance was greatly enhanced during the warmer afternoon periods under both low (0.75 to 1.5 kPa) and high (0.75 to 3.5 kPa) diurnal VPDL regimes, unlike stomatal conductance (g ), which decreased in the afternoon. Consequently, the leaf water status remained largely isohydric throughout the day, and therefore cannot be evoked to explain the diurnal decrease of g . However, the concerted diurnal reductions of g and g were well correlated with increases in leaf abscisic acid (ABA) content, thus suggesting that ABA can induce a significant depression of g under favourable leaf water status. Our results challenge the view that the temperature dependence of g can be explained solely from dynamic leaf anatomical adjustments and/or from the known thermodynamic properties of aqueous solutions and lipid membranes.​.

摘要

在将空气蒸汽压差(VPDL)白天差值保持在不同幅度、使叶片温度(T )从 20 升高到 35°C 的条件下,对适应了这种环境的、水分充足的红树莓(Rubus idaeus L.)植株的叶肉导度(g )的温度依赖性进行了测量。与迄今为止发表的大多数 g 温度响应相反,我们发现 g 随着 T 的升高而明显降低,而与叶室 O 水平和昼夜 VPDL 制度无关。在低(0.75 至 1.5 kPa)和高(0.75 至 3.5 kPa)昼夜 VPDL 制度下,叶片水力导度在温暖的下午时段大大增强,而不像气孔导度(g )那样在下午下降。因此,叶片水分状况在整个白天基本保持等水合状态,因此不能用来解释 g 的昼夜下降。然而,g 和 g 的协同昼夜下降与叶片脱落酸(ABA)含量的增加密切相关,这表明在有利的叶片水分状态下,ABA 可以显著抑制 g 。我们的研究结果挑战了这样一种观点,即 g 的温度依赖性可以仅从叶片解剖结构的动态调整以及水相溶液和脂膜的已知热力学性质来解释。

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