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Elevated air movement enhances stomatal sensitivity to abscisic acid in leaves developed at high relative air humidity

机译:较高的空气流动会增强在较高的相对空气湿度下发育的叶片中的气孔对脱落酸的敏感性

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摘要

High relative air humidity (RH ≥ 85%) during growth leads to stomata malfunctioning, resulting in water stress when plants are transferred to conditions of high evaporative demand. In this study, we hypothesized that an elevated air movement (MOV) 24 h per day, during the whole period of leaf development would increase abscisic acid concentration ([ABA]) enhancing stomatal functioning. Pot rose ‘Toril’ was grown at moderate (61%) or high (92%) RH combined with a continuous low (0.08 m s-1) or high (0.92 m s-1) MOV. High MOV reduced stomatal pore length and aperture in plants developed at high RH. Moreover, stomatal function improved when high MOV-treated plants were subjected to leaflet desiccation and ABA feeding. Endogenous concentration of ABA and its metabolites in the leaves was reduced by 35% in high RH, but contrary to our hypothesis this concentration was not significantly affected by high MOV. Interestingly, in detached leaflets grown at high RH, high MOV increased stomatal sensitivity to ABA since the amount of exogenous ABA required to decrease the transpiration rate was significantly reduced. This is the first study to show that high MOV increases stomatal functionality in leaves developed at high RH by reducing the stomatal pore length and aperture and enhancing stomatal sensitivity to ABA rather than increasing leaf [ABA].
机译:生长期间较高的相对空气湿度(RH≥85%)会导致气孔发生故障,当将植物转移到高蒸发需求条件下会导致水分胁迫。在这项研究中,我们假设在整个叶片发育过程中,每天24小时的空气运动(MOV)升高会增加脱落酸浓度([ABA]),从而增强气孔功能。盆栽玫瑰'Toril'在相对湿度(61%)或较高(92%)的条件下生长,同时持续较低(0.08 ms -1 )或较高(0.92 ms -1 )MOV。高MOV降低了在高RH条件下发育的植物的气孔孔径和孔径。此外,当高MOV处理的植物进行小叶干燥和ABA饲喂时,气孔功能得到改善。在高相对湿度下,叶片中ABA及其代谢产物的内源性浓度降低了35%,但与我们的假设相反,该浓度不受高MOV的影响。有趣的是,在高RH下生长的分离小叶中,高MOV增强了对ABA的气孔敏感性,因为降低蒸腾速率所需的外源ABA量显着减少。这是第一项显示高MOV通过减少气孔孔径和孔径并增强对ABA的气孔敏感性而不是增加叶片[ABA]来增加在高RH下发育的叶片中气孔功能的研究。

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