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Disruption of the Arabidopsis thaliana Inward-Rectifier K+ Channel AKT1 Improves Plant Responses to Water Stress

机译:拟南芥内向整流子K +通道AKT1的破坏改善了植物对水分胁迫的响应

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The Arabidopsis thaliana inward-rectifier K+ channel AKT1 plays an important role in root K+ uptake. Recent results show that the calcineurin B-like (CBL)-interacting protein kinase (CIPK) 23–CBL1/9 complex activates AKT1 in the root to enhance K+ uptake. In addition, this CIPK–CBL complex has been demonstrated to regulate stomatal movements and plant transpiration. However, a role for AKT1 in plant transpiration has not yet been demonstrated. Here we show that disruption of AKT1 conferred an enhanced response to water stress in plants. Experiments performed in hydroponics showed that, when water potential was diminished by adding polyethylene glycol, akt1 adult plants lost less water than wild-type (WT) plants. Under long-term water stress in soil, adult akt1 plants displayed lower transpiration and less water consumption than WT plants. Finally, akt1 stomata closed more efficiently in response to ABA. Such results were also observed in cipk23 plants. The similar responses shown by cipk23 and akt1 plants to water stress denote that the regulation of AKT1 by CIPK23 may also take place in stomata and has a negative impact on plant performance under water stress conditions.
机译:拟南芥内向整流子K + 通道AKT1在根K + 吸收中起重要作用。最新结果表明,钙调神经磷酸酶B样(CBL)相互作用蛋白激酶(CIPK)23–CBL1 / 9复合物激活根中的AKT1以增强K + 的吸收。此外,该CIPK–CBL复合物已被证明可调节气孔运动和植物蒸腾作用。但是,尚未证明AKT1在植物蒸腾中的作用。在这里,我们表明破坏AKT1赋予植物对水分胁迫的增强响应。在水培法中进行的实验表明,当通过添加聚乙二醇降低水势时,与野生型(WT)植物相比,akt1成年植物损失的水分更少。在长期的水分胁迫下,与野生型植物相比,成年akt1植物表现出更低的蒸腾作用和更少的水消耗。最后,akt1气孔对ABA的响应更有效。在cipk23植物中也观察到了此类结果。 cipk23和akt1植物对水分胁迫的相似反应表明,CIPK23对AKT1的调节也可能发生在气孔中,并且在水分胁迫条件下对植物性能产生负面影响。

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