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Water stress reveals differential antioxidant responses of tolerant and non-tolerant sugarcane genotypes

机译:水分胁迫揭示了耐性和非耐性甘蔗基因型的不同抗氧化反应

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摘要

The biochemical responses of the enzymatic antioxidant system of a drought-tolerant cultivar (IACSP 94-2094) and a commercial cultivar in Brazil (IACSP 95-5000) grown under two levels of soil water restriction (70% and 30% Soil Available Water Content) were investigated. IACSP 94-2094 exhibited one additional active superoxide dismutase (Cu/Zn-SOD VI) isoenzyme in comparison to IACSP 95-5000, possibly contributing to the heightened response of IACSP 94-2094 to the induced stress. The total glutathione reductase (GR) activity increased substantially in IACSP 94-2094 under conditions of severe water stress; however, the appearance of a new GR isoenzyme and the disappearance of another isoenzyme were found not to be related to the stress response because the cultivars from both treatment groups (control and water restrictions) exhibited identical changes. Catalase (CAT) activity seems to have a more direct role in H_2O_2 detoxification under water stress condition and the shift in isoenzymes in the tolerant cultivar might have contributed to this response, which may be dependent upon the location where the excessive H_2O_2 is being produced under stress. The improved performance of IACSP 94-2094 under drought stress was associated with a more efficient antioxidant system response, particularly under conditions of mild stress.
机译:在两个土壤水分限制水平(70%和30%土壤有效水分含量)下生长的耐旱品种(IACSP 94-2094)和巴西商业品种(IACSP 95-5000)的酶促抗氧化系统的生化响应)进行了调查。与IACSP 95-5000相比,IACSP 94-2094表现出一种额外的活性超氧化物歧化酶(Cu / Zn-SOD VI)同工酶,可能有助于IACSP 94-2094对诱导应力的增强反应。在严重的水分胁迫条件下,IACSP 94-2094中的总谷胱甘肽还原酶(GR)活性显着增加。然而,发现新的GR同工酶的出现和另一种同工酶的消失与胁迫反应无关,因为两个处理组(对照和水分限制)的品种表现出相同的变化。过氧化氢酶(CAT)活性似乎在水分胁迫条件下对H_2O_2的解毒中具有更直接的作用,并且耐性品种中同工酶的移动可能促成了这种反应,这可能取决于在此条件下产生过量H_2O_2的位置。强调。 IACSP 94-2094在干旱胁迫下的性能改善与更有效的抗氧化系统响应相关,尤其是在轻度胁迫条件下。

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