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Electrical signaling related to water stress acclimation

机译:与水压力适应相关的电信号

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Nowadays, the debate involving climate change concerns safeguarding the water resources of the planet, an extremely important topic also in agriculture. In particular, the problem of scarce water availability becomes more and more pressing every year and at the agronomic level it is necessary to make intelligent use of water without affecting the quality and quantity of production. The aim of this work is to understand when the plant is under water stress conditions at the electrical signal level, in order to achieve the information of true needs of water in plants. The proposed methodology considered the plant black kale cultivated in hydroponic condition: the plants were based in an electrically isolated environment, with electrodes inserted in their stems to acquire and study the electrical activity associated with determined irrigation cycles. By using different stop/flow water irrigation regimes, an acclimated and a not-acclimated group of plants have been selected to experience different periods of prolonged water flow stress. Results indicated that the evaluation of a measure of statistical dispersion, the daily variance of the electrical resistance, can be closely related to the induced water stop/flow stress. Moreover, experiencing an acclimation stage has shown to allow a better recovery response for the plant.
机译:如今,涉及气候变化的辩论涉及维护地球的水资源,这是农业的极其重要的话题。特别是,每年稀缺的水可用性问题变得越来越迫切,并且在农艺水平上是必要的,以便在不影响生产质量和数量的情况下进行智能使用。这项工作的目的是了解工厂在电信号水平的水胁迫条件下,为了实现植物中水的真实需求的信息。所提出的方法考虑了水培条件中培养的植物黑色羽衣甘蓝:植物基于电隔离环境,电极插入其茎中以获取和研究与确定的灌溉循环相关的电活动。通过使用不同的止动水灌溉制度,选择了适应的和未适应的植物组,以体验不同的延长水流应力。结果表明,评价统计分散量,电阻的日常方差,可以与诱导的水停止/流应力密切相关。此外,经历适应阶段已经显示出允许植物更好的恢复响应。

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