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首页> 外文期刊>Environmental Science and Pollution Research >Exogenously applied zinc and copper mitigate salinity effect in maize (Zea mays L.) by improving key physiological and biochemical attributes
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Exogenously applied zinc and copper mitigate salinity effect in maize (Zea mays L.) by improving key physiological and biochemical attributes

机译:通过改善关键的生理和生化属性,在玉米(Zea Mays L.)中发生外源施用锌和铜减轻盐度效应

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摘要

Zinc or copper deficiency and salinity are known soil problems and often occur simultaneously in agriculture soils. Plants undergo various changes in physiological and biochemical processes to respond to high salt in the growing medium. There is lack of information on the relation of exogenous application of Zn and Cu with important salinity tolerance mechanisms in plants. Therefore, the present study was conducted to determine the effect of foliar Zn and Cu on two maize cultivars (salt-tolerant cv. Yousafwala Hybrid and salt-sensitive cv. Hybrid 1898). Salinity caused a significant reduction in water and turgor potentials, stomatal conductance, and transpiration and photosynthetic rate, while increase in glycine betaine, proline, total soluble sugars, and total free amino acids was evident in plants under saline regimes. Furthermore, there was significant decline in P, N, Ca, K, Mn, Fe, Zn, and Cu and increase in Na and Cl contents in plants fed with NaCl salinity. Nitrate reductase activity was lower in salt-stressed plants. However, foliar application of Zn and Cu circumvented salinity effect on water relations, photosynthesis, and nutrition and this was attributed to the better antioxidant system and enhanced accumulation of glycine betaine, proline, total free amino acids, and sugars. The results of the present study suggested that Zn application was superior to Cu for mediating plant defense responses under salinity.
机译:锌或铜缺乏和盐度是已知的土壤问题,并且通常在农业土壤中同时发生。植物经历了生理和生化过程的各种变化,以应对生长培养基中的高盐。缺乏有关Zn和Cu的外源应用与植物中重要盐度耐受机制的关系的信息。因此,进行本研究以确定叶面Zn和Cu对两种玉米品种的影响(耐盐性CV。yousafwala杂种和盐敏感的CV。杂交1898)。盐度导致水和Turgor潜力,气孔导电和蒸发和光合速率显着降低,而甘氨酸甜菜碱,脯氨酸,总可溶性糖和总自由氨基酸在盐水制度下显而易见。此外,P,N,Ca,K,Mn,Fe,Zn和Cu显着下降,植物中Na和Cl含量的增加,含NaCl盐度。盐胁迫植物中硝酸还原酶活性较低。然而,叶片和Cu的叶面施加在水关系,光合作用和营养上的脾气分析,这归因于更好的抗氧化系统和增强甘氨酸甜菜碱,脯氨酸,总游离氨基酸和糖的积累。本研究的结果表明,Zn应用优于Cu,用于在盐度下介导植物防御反应。

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