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Regulation of Arabidopsis Leaf Hydraulics Involves Light-Dependent Phosphorylation of Aquaporins in Veins

机译:拟南芥叶片水力学的调控涉及静脉内水通道蛋白的光依赖性磷酸化

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摘要

The water status of plant leaves depends on the efficiency of the water supply, from the vasculature to inner tissues. This process is under hormonal and environmental regulation and involves aquaporin water channels. In Arabidopsis thaliana, the rosette hydraulic conductivity () is higher in darkness than it is during the day. Knockout plants showed that three plasma membrane intrinsic proteins (PIPs) sharing expression in veins (PIP1;2, PIP2;1, and PIP2;6) contribute to rosette water transport, and PIP2;1 can fully account for responsiveness to darkness. Directed expression of PIP2;1 in veins of a pip2;1 mutant was sufficient to restore . In addition, a positive correlation, in both wild-type and PIP2;1-overexpressing plants, was found between and the osmotic water permeability of protoplasts from the veins but not from the mesophyll. Thus, living cells in veins form a major hydraulic resistance in leaves. Quantitative proteomic analyses showed that light-dependent regulation of is linked to diphosphorylation of PIP2;1 at Ser-280 and Ser-283. Expression in pip2;1 of phosphomimetic and phosphorylation-deficient forms of PIP2;1 demonstrated that phosphorylation at these two sites is necessary for enhancement under darkness. These findings establish how regulation of a single aquaporin isoform in leaf veins critically determines leaf hydraulics.
机译:植物叶片的水状态取决于从脉管系统到内部组织的供水效率。此过程受激素和环境法规的管制,涉及水通道蛋白水通道。在拟南芥中,玫瑰花在黑暗中的水力传导率()比白天高。敲除植物显示,三个共享在静脉中表达的质膜内在蛋白(PIPs; 2,PIP2; 1和PIP2; 6)促进了莲座丛的水运输,而PIP2; 1可以充分说明对黑暗的响应。在pip2; 1突变体的静脉中直接表达PIP2; 1足以恢复。此外,在野生型植物和PIP2; 1-过表达植物中,原生质体之间的渗透水渗透性与来自静脉而非叶肉的渗透性呈正相关。因此,静脉中的活细胞在叶片中形成主要的水力阻力。定量蛋白质组学分析表明,Ser-280和Ser-283的光依赖性调节与PIP2; 1的双磷酸化有关。在pip2; 1中磷酸化和磷酸化缺陷形式的PIP2; 1的表达表明,这两个位点的磷酸化对于在黑暗中增强是必需的。这些发现确定了叶脉中单个水通道蛋白同工型的调控如何关键性地决定了叶的水力学。

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