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Effects of Electrical Conductivity of Hydroponic Nutrient Solution on Leaf Gas Exchange of Fife Greenhouse Tomato Cultivars

机译:水培营养液的电导率对横笛大棚番茄品种叶片气体交换的影响

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摘要

Five cultivars (Blitz, Mariachi, Quest, Rapsodie, and Trust) of tomato (Solanum lycopersicum) were grown hydroponically in a greenhouse to determine photosynthetic and transpirational responses to three electrical conductivities (EC) [2.3 (control), 4.8, and 8.4 dS-m~(-1)] of inflow nutrient solution. Leaf photosynthetic light response curves were measured during the early vegetative growth stage for cv Mariachi and Rapsodie and during the reproductive growth stage for all five cultivars. Leaf transpiration rate and leaf conductance were measured for all five cultivars in both stages. During the vegetative growth stage, high EC treatment of 8.4/14.3 dS-m~(-1) inflow/efflux solution reduced leaf conductance and transpiration rate by 28% and 29%, respectively, compared with low EC treatment (2.3/5.9 dS-m~(-1)), regardless of cultivar. Effects of EC treatments on leaf photosynthetic light response curves were cultivar specific. For 'Mariachi', moderate EC (4.8/8.7 dS-m~(-1)) and high EC treatments inthe vegetative growth stage reduced the maximum photosynthetic rate by 49% compared with the low EC treatment. However, for 'Rapsodie', the moderate EC treatment increased the maximum photosynthetic rate during the vegetative stage by 8% and 47% comparedwith low and high EC treatments, respectively. During reproductive growth stage, EC treatment did not significantly affect the transpiration rate, but high EC treatment reduced the leaf conductance by 15%, regardless of cultivar. Parameters of leaf photosynthetic response curves were affected by cultivar and EC treatment. Compared with the low EC treatment, the moderate EC treatment did not significantly affect the maximum photosynthetic rate of any cultivar except 'Rapsodie', which showed the greatestmaximum photosynthetic rate in the moderate EC treatment. The results showed that the plant physiological response under elevated EC was cultivar and growth-stage specific, and increasing the inflow EC to the moderate level of around 4.8 dS-m~(-1) during the reproductive growth stage would not negatively impact photosynthesis, transpiration, and leaf conductance of tomato plants, for all cultivars tested in the present experiment.
机译:将五个栽培品种(Blitz,Mariachi,Quest,Rapsodie和Trust)番茄(Solanum lycopersicum)在温室中水培生长,以确定对三种电导率(EC)的光合作用和蒸腾作用[2.3(对照),4.8和8.4 dS -m〜(-1)]流入营养液。在五个营养栽培品种的墨西哥流浪鱼和小菜蛾的营养生长早期和生殖生长阶段,测定了叶片的光合光响应曲线。在两个阶段中测量了所有五个品种的叶片蒸腾速率和叶片电导。在营养生长阶段,与低EC处理(2.3 / 5.9 dS)相比,高EC处理8.4 / 14.3 dS-m〜(-1)流入/流出溶液分别使叶片电导和蒸腾速率降低28%和29%。 -m〜(-1)),与品种无关。 EC处理对叶片光合光响应曲线的影响是特定品种的。对于'Mariachi',在营养生长阶段中度EC(4.8 / 8.7 dS-m〜(-1))和高EC处理与低EC处理相比使最大光合速率降低了49%。然而,对于“ Rapsodie”,与低和高EC处理相比,中度EC处理在营养阶段的最大光合速率分别提高了8%和47%。在生殖生长阶段,EC处理并没有显着影响蒸腾速率,但是无论品种如何,高EC处理都使叶片电导降低了15%。叶片和EC处理对叶片光合作用响应曲线参数的影响。与低EC处理相比,中EC处理没有显着影响除'Rapsodie'以外的任何品种的最大光合速率,后者在中EC处理中表现出最大的最大光合速率。结果表明,EC升高对植物的生理反应具有特定的品种和生长阶段,在生殖生长阶段将流入EC增加到4.8 dS-m〜(-1)左右的中等水平不会对光合作用产生负面影响,对于本实验中测试的所有品种,番茄植株的蒸腾作用和叶片电导率。

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