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首页> 外文期刊>Asian Journal of Agricultural Sciences >Pretreatment Effect of Salicylic Acid on Protein and Hydrolytic Enzymes in Salt Stressed Mung Bean Seedlings
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Pretreatment Effect of Salicylic Acid on Protein and Hydrolytic Enzymes in Salt Stressed Mung Bean Seedlings

机译:水杨酸对盐胁迫绿豆幼苗蛋白质和水解酶的预处理作用

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摘要

Salinity is a known abiotic stress that exhibit changes in biochemical and metabolic activities thus responsible for the reduction in crop yield. Salicylic Acid (SA) is a growth regulator that plays an important role in number of abiotic stresses including salt stress. We investigate the effect of salicylic acid on biochemical response of plant to salt stress. In the present study two mung bean genotypes (NM 19-19 and NM 20-21) were taken as experimental material and imbibed in distilled water (d/w) and solution of SA (50, 100 and 1000 μM) for 13 h prior to salt stress. Then seedlings were treated with 0, 50 and 100 mM NaCl. It was observed that 50 mM NaCl treatment enhanced protein synthesis which was reduced in seedlings treated with 100 mM NaCl as compared to control. However the pretreatment of SA before NaCl treatment enhanced protein synthesis. Salt stress caused reduction in α-amylase activity (AMY) with the promotion in the activity of Acid Phosphatase (AP). The pretreatment of low concentrations of SA (50 and 100 μM) induced AMY activity as compared to salt treated samples with the reduction in AP activity. Highest concentration of SA (1000 μM) showed reduction in the activity of both enzymes. It was further observed that the overall biochemical performance of NM 19-19 was better than NM 20-21.
机译:盐度是已知的非生物胁迫,其表现出生化和代谢活性的变化,从而导致农作物减产。水杨酸(SA)是一种生长调节剂,在许多非生物胁迫(包括盐胁迫)中发挥重要作用。我们调查了水杨酸对植物对盐胁迫的生化反应的影响。在本研究中,以两种绿豆基因型(NM 19-19和NM 20-21)为实验材料,并在蒸馏水(d / w)和SA溶液(50、100和1000μM)中吸收了13 h。盐胁迫。然后用0、50和100 mM NaCl处理幼苗。观察到50mM NaCl处理增强了蛋白质合成,与对照相比,在用100mM NaCl处理的幼苗中蛋白质合成减少了。但是,在NaCl处理之前对SA进行预处理可以增强蛋白质合成。盐胁迫导致α-淀粉酶活性(AMY)降低,酸性磷酸酶(AP)活性增强。与盐处理的样品相比,低浓度的SA(50和100μM)的预处理诱导的AMY活性降低了AP活性。最高浓度的SA(1000μM)显示两种酶的活性均降低。进一步观察到,NM 19-19的总体生化性能优于NM 20-21。

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