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首页> 外文期刊>Journal of Plant Growth Regulation >Silicon Alleviates Nickel-Induced Oxidative Stress by Regulating Antioxidant Defense and Glyoxalase Systems in Mustard Plants
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Silicon Alleviates Nickel-Induced Oxidative Stress by Regulating Antioxidant Defense and Glyoxalase Systems in Mustard Plants

机译:硅通过调节芥末植物中的抗氧化剂和乙醛酸酶系统来减轻镍诱导的氧化胁迫

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摘要

Soil polluted with heavy metals is a continuous threat to global crop production. The present study deals with growth, biochemical attributes, photosynthetic pigments, antioxidant responses and gyloxalase systems of mustard plants under varying concentrations of nickel (Ni) stress. Ni stress (150 mu M) reduced growth (shoot length by 34.46% and root length by 52.49%), chlorophyll (57.63%), gas exchange parameters (P-N by 36.84%, A by 55.61%), leaf relative water content (LRWC by 24.34%), and enhanced hydrogen peroxide (H2O2 by3.23 fold) malondialdehyde (MDA by 2.07 fold), and methylglyoxal (MG by 3.32 fold) content. Si (10(- 5) M) application ameliorated the negative effects of Ni on growth, chlorophyll content, photosynthetic traits and also elevated the activities of antioxidant enzymes and enzymes associated with the ascorbate glutathione (AsA-GSH) cycle and glyoxylase systems. Nevertheless, Si application to Ni-stressed plants had an additive effect on the enzyme activities of antioxidants and enzymes of AsA-GSH cycle. Exogenous Si supplementation elevated endogenous Si content which decreased root to shoot Ni translocation and maintained optimum osmolyte and secondary metabolite accumulation. We conclude that Si-induced Ni stress tolerance in mustard plants could be correlated with the upregulation of enzymes associated with antioxidant defence, glyoxalase detoxification systems and sufficient primary and secondary osmoprotectant accumulation.
机译:用重金属污染的土壤是对全球作物生产的持续威胁。本研究涉及在不同浓度的镍(Ni)胁迫下的芥菜植物的生长,生化属性,光合色素,抗氧合反应和腺氧碱基体系。 Ni应激(150μm)将生长减少(射击长度为34.46%,根长度52.49%),叶绿素(57.63%),气体交换参数(Pn×36.84%,a均为55.61%),叶相对含水量(LRWC通过24.34%),并增强过氧化氢(H2O2×3.23倍)丙二醛(MDA倍数2.07倍),和甲基乙醛(Mg×3.32倍)含量。 Si(10( - 5)m)申请改善了Ni对生长,叶绿素含量,光合性状的负面影响,并且还升高了与抗坏血酸谷胱甘肽(ASA-GSH)循环和乙醛酸酶系统相关的抗氧化酶和酶的活性。然而,Si应用于Ni-Regressed植物对抗氧化剂和ASA-GSH循环酶的酶活性具有添加剂。外源性Si补充升高的内源性Si含量,降低了根部的根部易位,保持最佳的渗透压和次级代谢物积累。我们得出结论,芥末植物中的Si诱导的Ni应力耐受性可以与抗氧化防御,乙醛酸酶排毒系统和足够的初级和次级渗透剂积累相关的酶的上调相关。

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