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Agricultural and Physiological Responses of Tomato Plants Grown in Different Soilless Culture Systems with Saline Water under Greenhouse Conditions

机译:温室条件下不同咸水条件下无土栽培系统下番茄植株的农业和生理响应

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摘要

Tomato is the most important horticultural crop in the world. The yields for this crop are highest in Southeastern Spain. In this work we studied a commercial variety of tomato, with different soilless culture systems (deep flow technique, nutrient film technique, and the perlite substrate) and three levels of salinity (2.2, 6.3, and 10.2 dS·m−1) typical of Southeastern Spain. The irrigation management was carried out for optimizing the water use efficiency. Alterations in the water status of the plants, Cl and Na+ toxicity, and nutritional imbalances altered the vegetative growth and physiology of the plants. The marketable yield was affected by both soilless culture system and salinity. Regarding the soilles culture system, yield decreased in the order: deep flow technique > perlite > nutrient film technique. The salinity treatments improved the fruits quality by increasing the total soluble solids and titratable acidity. Plants cultivated with the nutrient film technique had the highest concentrations of Cl and Na+ and the highest Na+/K+ ratio. The concentrations of Cl and Na+ in the plants were not related directly to the yield loss. Therefore, the influence of the toxicity, osmotic effect, and nutritional imbalance seems to have been responsible for the yield loss.
机译:番茄是世界上最重要的园艺作物。该作物的产量在西班牙东南部最高。在这项工作中,我们研究了一种商业化的番茄品种,具有不同的无土栽培系统(深流技术,营养膜技术和珍珠岩基质)和三个盐度水平(2.2、6.3和10.2 dS·m -1) )典型的西班牙东南部。进行灌溉管理以优化用水效率。植物水分状况的变化,Cl -和Na + 的毒性以及营养失衡改变了植物的营养生长和生理。无土栽培系统和盐度都会影响可销售的产量。关于土壤的栽培体系,产量依次下降:深流技术→珍珠岩→营养膜技术。盐度处理通过增加总可溶性固形物和可滴定的酸度来改善果实品质。用营养膜技术培育的植物的Cl -和Na + 浓度最高,Na + / K + < / sup>比率。植物中Cl -和Na + 的浓度与产量损失没有直接关系。因此,毒性,渗透作用和营养失衡的影响似乎是造成产量损失的原因。

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