首页> 外文期刊>Physiology and Molecular Biology of Plants >Exogenous salicylic acid regulates reactive oxygen species metabolism and ascorbate-glutathione cycle in Nitraria tangutorum Bobr. under salinity stress
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Exogenous salicylic acid regulates reactive oxygen species metabolism and ascorbate-glutathione cycle in Nitraria tangutorum Bobr. under salinity stress

机译:外源水杨酸在Nitraria TangorumBobr中调节反应性氧物种代谢和抗坏血酸谷胱甘肽循环。 在盐度压力下

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The effect of 0.5-1.5 mM salicylic acid (SA) on modulating reactive oxygen species metabolism and ascorbate-glutathione cycle in NaCl-stressed Nitraria tangutorum seedlings was investigated. The individual plant fresh weight (PFW) and plant dry weight (PDW) significantly increased under 100 mM NaCl while remained unchanged or decreased under 200-400 mM NaCl compared to the control. Superoxide anion (O-2(center dot-)), hydrogen peroxide (H2O2), thiobarbituric acid reactive substances (TBARS), reduced ascorbate (AsA), dehydroascorbate (DHA), reduced glutathione (GSH) and oxidized glutathione (GSSG) increased whereas the ratios of AsA/DHA and GSH/GSSG decreased under varied NaCl treatments. Ascorbate peroxidase (APX) and glutathione reductase (GR) activities were enhanced while dehydroascorbate reductase (DHAR) and monodehydroascorbate reductase (MDHAR) activities remained unvaried under 100-400 mM NaCl stresses. In addition, exogenous SA further increased PFW, PDW and root/shoot ratio. SA effectively diminished O-2(center dot-) accumulation. H2O2 and TBARS decreased under 0.5 and 1.0 mM SA treatments compared to those without SA. 0.5 mM of SA increased while 1.0 and 1.5 mM SA decreased APX activities. DHAR activities were elevated by 0.5 and 1.0 mM SA but not by 1.5 mM SA. MDHAR and GR activities kept constant or significantly increased at varying SA concentrations. Under SA treatments, AsA and GSH contents further increased, DHA and GSSG levels remained unaltered, while the decreases in AsA/DHA and GSH/GSSG ratios were inhibited. The above results demonstrated that the enhanced tolerance of N. tangutorum seedlings conferred by SA could be attributed mainly to the elevated GR and DHAR activities as well as the increased AsA/DHA and GSH/GSSG ratios.
机译:研究了0.5-1.5mM水杨酸(SA)对调节反应性氧物质代谢和抗坏血酸谷胱甘肽循环的影响,效应NaCl胁迫下的Nactared Nitraria曲线幼苗。与对照相比,个体植物新鲜重量(PFW)和植物干重(PDW)明显增加,而在100mm NaCl下显着增加或在200-400mM NaCl下保持不变或减少。超氧化物阴离子(O-2(中心点)),过氧化氢(H2O2),硫酰比尿酸反应性物质(TBARS),降低抗坏血酸(ASA),脱氢原料(DHA),降低的谷胱甘肽(GSH)和氧化谷胱甘肽(GSSG)增加虽然ASA / DHA和GSH / GSSG的比例在不同的NACL处理下降低。抗坏血酸过氧化物酶(APX)和谷胱甘肽还原酶(GR)活性增强,而脱氢血酸盐还原酶(DHAR)和单羟基血冰酸盐还原酶(MDHAR)活性仍然不变,在100-400mM NaCl应力下保持不变。此外,外源SA进一步增加了PFW,PDW和根/芽比。 SA有效地减少了O-2(中心点)累积。与没有SA的那些,H2O2和TBAR减小0.5和1.0mm SA处理。 0.5 mm的SA增加,而1.0和1.5 mm SA减少了APX活动。 DHAR活动升高0.5和1.0 mm SA,但不升高1.5 mm。 MDHAR和GR活动在不同的SA浓度下保持恒定或显着增加。在SA治疗中,ASA和GSH含量进一步增加,DHA和GSSG水平仍未妨碍,而ASA / DHA和GSH / GSSG比率的降低则受到抑制。上述结果表明,SA赋予的N.丹特氏幼苗的增强耐受性主要归因于升高的GR和DHAR活动以及增加的ASA / DHA和GSH / GSSG比率。

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