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A putative role for TIP and PIP aquaporins in dynamics of leaf hydraulic and stomatal conductances in grapevine under water stress and re-watering

机译:TIp和pIp水孔蛋白在水分胁迫和重新浇水下葡萄叶片水力和气孔导度动态变化中的推定作用

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摘要

We examined the role of aquaporins (AQPs) in regulating leaf hydraulic conductance (Kleaf) in Vitis vinifera L. (cv Chardonnay) by studying effects of AQP inhibitors, and AQP gene expression during water stress (WS) and recovery (REC). Kleaf was measured after 3 h of petiole perfusion with different solutions and to introduce inhibitors. The addition of 0.1 mm HgCl2 to 15 mm KCl reduced Kleaf compared with perfusion in 15 mM KNO3 or KCl, and these solutions were used for leaves from control, WS and REC plants. Perfusion for 3 h did not significantly alter stomatal conductance (gs) though expression of VvTIP1;1 was increased. WS decreased Kleaf by about 30% and was correlated with gs. The expression of VvTIP2;1 and VvPIP2;1 correlated with Kleaf, and VvTIP2;1 was highly correlated with gs. There was no association between the expression of particular AQPs during WS and REC and inhibition of Kleaf by HgCl2; however, HgCl2 treatment itself increased expression of VvPIP2;3 and decreased expression of VvPIP2;1. Inhibition by HgCl2 of Kleaf only at early stages of WS and then after REC suggested that apoplasmic pathways become more important during WS. This was confirmed using fluorescent dyes confined to apoplasm or preferentially accumulated in symplasm.
机译:我们通过研究AQP抑制剂的作用以及水分胁迫(WS)和恢复(REC)期间AQP基因的表达,研究了水通道蛋白(AQPs)在调节葡萄(Vv霞多丽)中的叶片水力传导(Kleaf)中的作用。在叶柄用不同溶液灌注3小时后,并引入抑制剂,测定了Kleaf。与在15 mM KNO3或KCl中灌注相比,向15 mm KCl中添加0.1 mm HgCl2减少了Kleaf,这些溶液用于对照,WS和REC植物的叶片。尽管增加了VvTIP1; 1的表达,但灌注3 h并没有显着改变气孔导度(gs)。 WS使Kleaf降低约30%,并与gs相关。 VvTIP2; 1和VvPIP2; 1的表达与Kleaf相关,而VvTIP2; 1的表达与gs高度相关。在WS和REC期间特定AQP的表达与HgCl2对Kleaf的抑制之间没有关联。但是,HgCl2处理本身会增加VvPIP2; 3的表达并降低VvPIP2; 1的表达。仅在WS的早期阶段,然后在REC之后,Kleaf的HgCl2抑制作用表明WS期间,无质子途径变得更加重要。使用仅限于无融合质或优先积累在同质质中的荧光染料证实了这一点。

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