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首页> 外文期刊>Russian Journal of Plant Physiology >Fast Water Uptake and Outflow and Electrophysiological Responses of Roots Induced by Changes in Salinity, Osmotic Pressure, and pH of External Solution
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Fast Water Uptake and Outflow and Electrophysiological Responses of Roots Induced by Changes in Salinity, Osmotic Pressure, and pH of External Solution

机译:盐度,渗透压和外部溶液pH值变化引起的根的快速吸水和流出以及根的电生理响应

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摘要

Fast reversible water losses by roots of intact seedlings of tomato (Lycopersicon esculentum L.) and sunflower (Helianthus annuus L.) in response to changes in composition and concentration of external medium were studied with a highly sensitive fast-response gravimetric method. The dehydrating effect of solutes, applied at low and moderate concentrations (5-100 mM), increased in the following row: ethanol < glycerol < sucrose neutral salts < base < acid. At concentrations below 10 mM, nonelectrolytes did not cause significant water losses from roots. Neutral salts had a characteristic gradual effect in a wide range of concentrations (0.3-500 mM NaCl). Amplitudes of gravimetric responses to treatments with bases and acids were 1.5-2 times higher(NaOH) and more than 3 times higher (HC1) than the response to equimolar concentration (5 mM) of a neutral salt. In all cases the water loss from roots was fast, reversible, and well reproducible. The presence of electrical charge (ions vs. neutral molecules) was crucial for the strength of the solute effect, especially at low concentrations. In parallel experiments with tomato seedlings, fast kinetics of electric potential difference between the root and the hypocotyle (electrophysiological response) was measured after a change in the composition and concentration of external solution. Possible mechanisms of observed phenomena are discussed.
机译:采用高度灵敏的快速反应重量分析法研究了番茄(Lycopersicon esculentum L.)和向日葵(Helianthus annuus L.)的完整幼苗根部对外部培养基组成和浓度变化的响应而引起的可逆快速失水。在下一行中,在低和中等浓度(5-100 mM)下应用的溶质的脱水作用增强:乙醇<甘油<蔗糖中性盐<碱<酸。浓度低于10 mM时,非电解质不会从根部引起明显的水分流失。中性盐在宽范围的浓度(0.3-500 mM NaCl)中具有特征性的渐进作用。碱和酸处理的重量响应幅度比中性盐对等摩尔浓度(5 mM)的响应高1.5-2倍(NaOH),高3倍以上(HCl)。在所有情况下,从根部流失的水分都是快速,可逆和可重复的。电荷的存在(离子对中性分子)对于溶质效应的强度至关重要,尤其是在低浓度下。在番茄幼苗的平行实验中,在改变外部溶液的成分和浓度后,测量了根和次叶间电位差的快速动力学(电生理响应)。讨论了观察到的现象的可能机制。

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