首页> 外文期刊>Journal of Plant Physiology >Salicylic acid alleviates decreases in photosynthesis under salt stress by enhancing nitrogen and sulfur assimilation and antioxidant metabolism differentially in two mungbean cultivars
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Salicylic acid alleviates decreases in photosynthesis under salt stress by enhancing nitrogen and sulfur assimilation and antioxidant metabolism differentially in two mungbean cultivars

机译:水杨酸通过增强两个绿豆品种的氮和硫同化作用和抗氧化代谢,缓解盐胁迫下的光合作用降低

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摘要

Salicylic acid (SA) is known to affect photosynthesis under normal conditions and induces tolerance in plants to biotic and abiotic stresses through influencing physiological processes. In this study, physiological processes were compared in salt-tolerant (Pusa Vishal) and salt-sensitive (T44) cultivars of mungbean and examined how much these processes were induced by SA treatment to alleviate decrease in photosynthesis under salt stress. Cultivar T44 accumulated higher leaf Na+ and Cl- content and exhibited greater oxidative stress than Pusa Vishal. Activity of antioxidant enzymes, ascorbate peroxidase (APX) and glutathione reductase (GR) was greater in Pusa Vishal than T44. Contrarily, activity of superoxide dismutase (SOD) was greater in T44. The greater accumulation of leaf nitrogen and sulfur through higher activity of their assimilating enzymes, nitrate reductase (NR) and ATP-sulfurylase (ATPS) increased reduced glutathione (GSH) content more conspicuously in Pusa Vishal than T44. Application of 0.5 mM SA increased nitrogen and sulfur assimilation, GSH content and activity of APX and GR. This resulted in the increase in photosynthesis under non-saline condition and alleviated the decrease in photosynthesis under salt stress. It also helped in restricting Na+ and Cl-. content in leaf, and maintaining higher efficiency of PSII, photosynthetic N-use efficiency (NUE) and water relations in Pusa Vishal. However, application of 1.0 mM SA resulted in inhibitory effects. The effect of SA was more pronounced in Pusa Vishal than T44. These results indicate that SA application alleviates the salt-induced decrease in photosynthesis mainly through inducing the activity of NR and ATPS, and increasing antioxidant metabolism to a greater extent in Pusa Vishal than T44
机译:水杨酸(SA)在正常条件下会影响光合作用,并通过影响生理过程而诱导植物对生物和非生物胁迫的耐受性。在这项研究中,比较了耐盐(Pusa Vishal)和对盐敏感(T44)的绿豆品种的生理过程,并研究了SA处理诱导这些过程多少以减轻盐胁迫下光合作用的降低。与Pusa Vishal相比,品种T44积累更高的叶片Na +和Cl-含量,并表现出更大的氧化胁迫。 Pusa Vishal的抗氧化酶,抗坏血酸过氧化物酶(APX)和谷胱甘肽还原酶(GR)的活性高于T44。相反,T44中的超氧化物歧化酶(SOD)活性更高。与P44相比,Pusa Vishal叶片中的氮和硫的同化酶,硝酸还原酶(NR)和ATP硫酰化酶(ATPS)的活性更高,从而增加了叶片氮和硫的累积量,从而更显着地降低了谷胱甘肽(GSH)含量。施用0.5 mM SA可以增加氮和硫的同化作用,GSH含量以及APX和GR的活性。这导致在非盐条件下光合作用的增加,并减轻了盐胁迫下光合作用的减少。它还有助于限制Na +和Cl-。在Pusa Vishal中保持叶片中的磷含量,并保持较高的PSII效率,光合氮利用效率(NUE)和水关系。但是,使用1.0 mM SA会产生抑制作用。 SA的作用在Pusa Vishal中比在T44中更为明显。这些结果表明,SA的应用主要是通过诱导NR和ATPS的活性,以及​​比T44更大程度地增加Pusa Vishal中抗氧化代谢,从而减轻盐诱导的光合作用降低。

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