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Water Status Related Root-to-Shoot Communication Regulates the Chilling Tolerance of Shoot in Cucumber (Cucumis sativus L.) Plants

机译:与水分状况相关的从根到芽的交流调控黄瓜(Cucumis sativus L.)植物的嫩芽耐寒性

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摘要

Although root-to-shoot communication has been intensively investigated in plants under drought, few studies have examined root-to-shoot communication under chilling. Here we explored whether root-to-shoot communication contributes to the chilling-light tolerance of cucumber shoots and clarified the key signal involves in this communication. After leaf discs chilling-light treatment, the photoinhibitions of Photosystem I (PSI) and Photosystem II (PSII) were similar in leaf discs of two cucumber varieties (JY-3 and JC-4). When the whole plants, including roots, were chilled under light, the photosynthetic performances in JC-4 leaves decreased more seriously than that in JY-3 leaves. However, when the water status of leaves was maintained by warming roots or floating the attached leaves on water, the PSII activity and amount of PSI in the leaves of the two varieties were similar after chilling-light treatment. In addition, the differences of PSII activities and amount of PSI between the two varieties under whole plant chilling-light treatment were independent of ABA pretreatment. Above results indicate that (1) the better water status in leaves under chilling contributes to the higher chilling tolerance of JY-3; (2) the water status, rather than an ABA signal, dominates root-to-shoot communication under chilling and the chilling tolerance of cucumber shoot.
机译:尽管已经对干旱条件下的植物进行了根到根沟通的深入研究,但是很少有研究研究了低温下根到根沟通的问题。在这里,我们探讨了从根到茎的交流是否有助于黄瓜苗的耐寒性,并阐明了该交流中涉及的关键信号。叶盘冷光处理后,两个黄瓜品种(JY-3和JC-4)的叶盘中光系统I(PSI)和光系统II(PSII)的光抑制作用相似。当整株植物,包括根部,在光照条件下冷藏时,JC-4叶片的光合性能下降比JY-3叶片更严重。然而,当通过加热根部或使附着的叶子漂浮在水上来维持叶子的水分状态时,经过冷光处理后,两个品种的叶子中的PSII活性和PSI量相似。此外,在整个植物冷光处理下,两个品种之间PSII活性和PSI量的差异与ABA预处理无关。以上结果表明:(1)低温条件下叶片水分状况的改善有利于JY-3的较高耐寒性; (2)在低温和黄瓜嫩芽的耐寒性下,水分状况而非ABA信号主导着根与茎之间的通讯。

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