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Differential changes in antioxidants, proteases, and lipid peroxidation in flag leaves of wheat genotypes under different levels of water deficit conditions

机译:不同水分亏缺水平下小麦基因型剑叶抗氧化剂,蛋白酶和脂质过氧化的差异性变化

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Changes in enzymatic antioxidants and oxidative injury were evaluated in flag leaves of seven wheat genotypes under well watered (WW), medium watered (MW), low watered (LW) and soil stored moisture (SSM) conditions maintained in lysimeters through neutron moisture prob. Genotypes behaved differentially in terms of antioxidant response and stress induced injury under above indicated water deficit levels. In general, antioxidant enzymes were rarely enhanced under MW condition, often increased under LW condition while remained unchanged, elevated or diminished under SSM condition (severe stress). Higher CAT and POD activities were observed in NR-234 and in Pfau followed by FD-83 respectively under LW conditions. Under SSM condition, APX and POD increased significantly in Nesser and Pfau and CAT in NR-234, Nesser and Pfau, while remained at control level or decreased in other genotypes. In NR-234, SOD activity enhanced only under LW condition. However, SOD rose in Nesser, FD-83 and Sarsabz while remained unaffected in NR-241, Sitta and Pfau under all water deficit conditions. Lipid peroxidation increased significantly in FD-83 only under MW condition along with raised protease activity and protein contents. However, peroxidation of lipids was significantly enhanced in all genotypes under LW and SSM conditions. It was concluded that response of genotypes vary under different levels of water deficit. Hydrogen peroxide scavenging system was more actively involved in detoxification of oxidative stress induced by water deficit. Raised antioxidants (CAT, POD) resulting in comparatively lower lipid peroxidation in Pfau under SSM condition and in Sitta under LW condition confer stress tolerance in these genotypes.
机译:在7种基因型小麦的旗叶上,通过中子水分探测仪,在保持良好水分(WW),中等水分(MW),低水分(LW)和土壤贮藏水分(SSM)的条件下,在蒸煮器中对酶抗氧化剂的变化和氧化损伤进行了评估。在上述缺水水平下,基因型在抗氧化剂反应和应激诱导的伤害方面表现不同。通常,抗氧化酶在MW条件下很少增强,在LW条件下通常增加,而在SSM条件下(严重压力)则保持不变,升高或减弱。在LW条件下,分别在NR-234和Pfau中观察到较高的CAT和POD活性,其次是FD-83。在SSM条件下,Nesser和Pfau的APX和POD显着增加,而NR-234,Nesser和Pfau的CAT显着增加,而其他基因型则保持在对照水平或下降。在NR-234中,SOD活性仅在LW条件下增强。然而,在所有缺水条件下,Nesser,FD-83和Sarsabz的SOD均上升,而NR-241,Sitta和Pfau的SOD却未受影响。仅在MW条件下,FD-83中的脂质过氧化显着增加,同时蛋白酶活性和蛋白质含量也升高。然而,在LW和SSM条件下,所有基因型的脂质过氧化作用均显着增强。结论是,基因型的响应在不同水平的缺水情况下有所不同。过氧化氢清除系统更积极地参与了缺水引起的氧化应激的解毒。提高的抗氧化剂(CAT,POD)在SSM条件下导致Pfau中脂质过氧化程度相对较低,在LW条件下导致Sitta中脂质过氧化程度较低,从而赋予这些基因型耐胁迫性。

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