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首页> 外文期刊>Functional Plant Biology >Rapid changes in root HvPIP2; 2 aquaporins abundance and ABA concentration are required to enhance root hydraulic conductivity and maintain leaf water potential in response to increased evaporative demand
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Rapid changes in root HvPIP2; 2 aquaporins abundance and ABA concentration are required to enhance root hydraulic conductivity and maintain leaf water potential in response to increased evaporative demand

机译:根HVPIP2的快速变化; 需要2 Aquaporins丰度和ABA浓度来增强根液压导电性并保持叶水潜力,以响应蒸发需求增加

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摘要

To address the involvement of abscisic acid (ABA) in regulating transpiration and root hydraulic conductivity (Lp(Root)) and their relative importance for maintaining leaf hydration, the ABA-deficient barley mutant Az34 and its parental wild-type (WT) genotype (cv. Steptoe) were grown in hydroponics and exposed to changes in atmospheric vapour pressure deficit (VPD) imposed by air warming. WTplants were capable of maintaining leaf water potential (psi(L)) that was likely due to increased Lp(Root) enabling higher water flow from the roots, which increased in response to air warming. The increased Lp(Root) and immunostaining for HvPIP2; 2 aquaporins (AQPs) correlated with increased root ABA content of WT plants when exposed to increased air temperature. The failure of Az34 to maintain psi(L) during air warming may be due to lower Lp(Root) than WT plants, and an inability to respond to changes in air temperature. The correlation between root ABA content and Lp(Root) was further supported by increased root hydraulic conductivity in both genotypes when treated with exogenous ABA (10(-5) M). Thus the ability of the root system to rapidly regulate ABA levels (and thence aquaporin abundance and hydraulic conductivity) seems important to maintain leaf hydration.
机译:解决脱离酸(ABA)在调节蒸腾蒸腾和根液态电导率(LP(根))中的累积及其对维持叶水合的相对重要性,ABA缺陷的大麦突变体AZ34及其亲本野生型(WT)基因型( CV。Steptoe)在水培中生长,暴露于空气变暖施加的大气蒸汽压力缺陷(VPD)的变化。 Wtplants能够维持可能由于LP(根)增加的叶水电位(PSI(L)),从而使从根部的根部流动增加水流,这响应于空气变暖而增加。 HVPIP2增加的LP(根)和免疫抑制; 2个水蛋白(AQP)与WT植物的增加的根ABA含量相关,当暴露于增加的空气温度时。 AZ34在空气变暖期间保持PSI(L)的失败可能是由于低于WT植物的LP(根),并且无法响应空气温度的变化。在用外源性ABA处理时,通过在两种基因型中增加根液态电导率(10(-5)m)时,进一步支持根ABA含量和LP(根)之间的相关性。因此,根系能够快速调节ABA水平的能力(以及所以Aquaporin丰富和液压导电性)似乎是保持叶水合的重要性。

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