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首页> 外文期刊>American journal of agricultural and biological sciences >Effect of Super Absorbent Application on Antioxidant Enzyme Activities in Canola (Brassica napus L.) Cultivars under Water Stress Conditions
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Effect of Super Absorbent Application on Antioxidant Enzyme Activities in Canola (Brassica napus L.) Cultivars under Water Stress Conditions

机译:水分胁迫条件下高吸水剂对油菜品种抗氧化酶活性的影响。

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Problem statement: Drought stress significantly limits Canola (Brassica napus L.) growth and crop productivity. Hence, efficient management of soil moisture and study metabolic changes which occur in response to drought is important for agricultural production of this Crop. Approach: For a better understanding of drought tolerance mechanisms and improving soil water content management strategies, an experiment was laid out in a randomized complete block design with factorial spilt arrangement with tree replications. Results: Irrigation strategy and super absorbent application were allotted to main plots. Irrigation strategy had two levels: 80% of evaporation as control (Ii), drought stress started from flowering stage (I2) Application of super absorbent had two levels: Non-application of super absorbent as control (Si), application of super absorbent with 7% concentration. Cultivars (Rgs003 (Vj), Sarigol (V2), OptionSOO (V3), Hyola401 (V4), Hyola330 (V5), Hyola420 (V6) were allotted to sub plots. Plants under water deficit stress and application of super absorbent showed a significant increase and decrease, respectively, in SOD, CAT and GPX activities in leaves compared with control plants. In this context, plants with higher levels of antioxidants showed higher resistance to these stress conditions and higher yield and dry matter allocation to grain filling process i.e. harvest index. Conclusion/Recommendations: Our results suggested that drought stress leads to production of oxygen radicals, which results in increased lipid peroxidation and oxidative stress in the plant. In conclusion of present study, Application of super absorbent polymer could reserve different amounts of water in itself and so increases the soil ability of water storing and preserving and at last in water deficiency, produce plant water need and approve its growth under postanthesis water deficiency.
机译:问题陈述:干旱胁迫极大地限制了油菜(Brassica napus L.)的生长和作物生产力。因此,有效管理土壤水分并研究干旱引起的代谢变化对于该作物的农业生产非常重要。方法:为了更好地理解干旱耐受机制并改善土壤水分管理策略,在随机完整块设计中进行了一项试验,该试验采用有因果关系的溢出布置和树木复制。结果:灌溉策略和超吸收剂的应用分配给了主要地块。灌溉策略有两个水平:蒸发量的80%作为对照(Ii),干旱胁迫从开花期开始(I2)。施用超级吸收剂有两个层次:不施用超级吸收剂作为对照(Si),施用超级吸收剂作为对照。浓度为7%。将栽培品种(Rgs003(Vj),Sarigol(V2),OptionSOO(V3),Hyola401(V4),Hyola330(V5),Hyola420(V6)分配给子样地。水分亏缺和使用超级吸收剂的植物表现出显着性。与对照植物相比,叶片中SOD,CAT和GPX的活性分别增加和减少,在这种情况下,抗氧化剂含量较高的植物对这些胁迫条件表现出较高的抵抗力,并且在籽粒灌装过程(即收获)中具有更高的产量和干物质分配结论/建议:我们的研究结果表明干旱胁迫导致植物产生氧自由基,导致植物体内脂质过氧化和氧化胁迫增加,因此,本研究的结论是,高吸收性聚合物的应用可以在植物体内保留不同量的水分。本身,因此提高了土壤的蓄水和保水能力,最后在缺水时产生了植物需水并批准了花后的生长。缺水。

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