首页> 外文期刊>Ecotoxicology and Environmental Safety >Silicon supplementation mitigates salinity stress on Ocimum basilicum L. via improving water balance, ion homeostasis, and antioxidant defense system
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Silicon supplementation mitigates salinity stress on Ocimum basilicum L. via improving water balance, ion homeostasis, and antioxidant defense system

机译:硅补充剂可以通过改善水平衡,离子稳态和抗氧化防御系统来减轻盐度胁迫。通过改善水平衡

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Salinity is a key worldwide ecological restriction to sustainable crop production and food security. Various methods were used for inducing salinity tolerance including biotechnological approaches or application of stress tolerance-inducing substances. Silicon supplementation has a decisive role in alleviating of salinity injury, however, the definite mechanisms behind stay scantily understood, and must be examined. The imperative roles of sodium metasilicate (Si, 100 ppm) application methods (foliar spraying at 100 mg/l; soil additive at 100 mg/kg soil; foliar spraying at 100 mg/l plus soil additive at 100 mg/kg soil), in improving growth and essential oil yield, maintaining water status, activating antioxidant system, and keeping ion homeostasis of salt affected-sweet basil (6000 mg NaCl/kg soil) were studied. Salinity induced a notable increase in oxidative biomarkers, coupled with higher osmolyte concentration and osmotic potential (OP) values, as well as increased superoxide dismutase and peroxidase activities. Alternatively, sweet basil growth, essential oil yield, and catalase activity were reduced under salinity. Furthermore, salinity aggravated ion imbalance, decreased photosynthetic pigment and disrupted the plants' water status. Silicon application drastically increased osmolyte accumulation associated with sustained water status, increased OP, and improved osmotic adjustment (OA) capacity. Additionally, Si application enhanced antioxidant aptitude associated with decreased oxidative biomarkers and improved growth, photosynthetic pigment, and essential oil yield. Greater outcomes were achieved with the foliar spraying method, compared with other application methods. Salinity stress evoked modification in protein assimilation capacity and possibly will withdraw protein biosynthesis and reduce total protein band number; however, Si application may adjust the expression of salinity inducible proteins. Foliar spraying of Si with or without soil additive accelerates the expression of peroxidase isozyme over salinized or control plants. Collectively, Si foliar spraying alleviated salinity-related injuries on sweet basil by maintaining water status, increasing osmolyte assimilation, improving OA, enhancing redox homeostasis, and antioxidant capacity.
机译:盐度是全球对可持续作物生产和粮食安全的重点。各种方法用于诱导盐度耐受,包括生物技术方法或施加应力耐受诱导物质。硅补充剂在减轻盐度损伤方面具有决定性作用,然而,保持幻想的明确机制尚容理解,并且必须检查。碳酸钠(Si,100ppm)施用方法的命令作用(叶片喷洒在100mg / L; 100mg / kg土壤中的土壤添加剂;叶面喷洒100mg / L加土壤添加剂100mg / kg土壤),在提高增长和精油产量,维持水位,活化抗氧化系统和保持盐影响甜罗勒(6000mg NaCl / kg土壤)的离子稳态。盐度诱导氧化生物标志物的显着增加,与较高的Osmolyte浓度和渗透势(Op)值相结合,以及增加的超氧化物歧化酶和过氧化物酶活性。或者,在盐度下降低了甜罗勒生长,精油产量和过氧化氢酶活性。此外,盐度加重离子不平衡,降低光合色素并破坏了植物的水位。硅应用急剧增加了与持续水位,增加的OP和改善的渗透调整(OA)容量相关的渗透物积累。另外,Si申请增强了与降低的氧化生物标志物相关的抗氧化能力和改善的生长,光合色素和精油产量。与其他应用方法相比,叶面喷涂方法实现了更大的结果。盐度应力诱发蛋白质同化能力的修饰,并且可能会脱离蛋白质生物合成并减少总蛋白质频带数;然而,Si应用可以调节盐度诱导蛋白的表达。叶面喷洒Si或没有土壤添加剂加速过氧化物酶同工酶在盐化或对照植物上的表达。 Si叶面通过维持水状况,增加渗透剂同化,改善OA,增强氧化还原性稳态和抗氧化能力来统一喷洒缓解甜罗勒上的盐度相关伤害。

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