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Silicon Supply Improves Leaf Gas Exchange Antioxidant Defense System and Growth in Saccharum officinarum Responsive to Water Limitation

机译:硅电源改善了叶片煤气交换抗氧化防御系统和骶文官员的生长响应于水限制

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摘要

Silicon (Si) is not categorized as a biologically essential element for plants, yet a great number of scientific reports have shown its significant effects in various crop plants and environmental variables. Plant Si plays biologically active role in plant life cycle, and the significant impact depends on its bioaccumulation in plant tissues or parts. In particular, it has been investigated for its involvement in limited irrigation management. Therefore, this experiment was conducted to examine the effect of Si application in eco-physiological, enzymatic and non-enzymatic activities of sugarcane plants against water stress. Four irrigation levels, i.e., normal (100–95% of soil moisture), 80–75, 55–50, and 35–30% of soil moisture were treated for the sugarcane cultivar GT 42 plants supplied with 0, 100, 200, 300, 400 and 500 mg Si L and exposed for 60 days after Si application. Under stress, reduction in plant length (~26–67%), leaf area-expansion (~7–51%), relative water content (~18–57%), leaf greenness (~12–35%), photosynthetic pigments (~12–67%), physiological responses such as photosynthesis (22–63%), stomatal conductance (~25–61%), and transpiration rate (~32–63%), and biomass production were observed in the plants without Si application. The drought condition also inhibited the activities of antioxidant enzymes like catalase (~10–52%), peroxidase (ca. 4–35), superoxide dismutase (10–44%) and enhanced proline (~73–410%), and malondialdehyde content (ca. 15–158%), respectively. However, addition of Si ameliorated drought induced damage in sugarcane plants. The findings suggest that the active involvement of Si in sugarcane responsive to water stress ranges from plant performance and physiological processes, to antioxidant defense systems.
机译:硅(Si)未作为植物的生物学基本要素分类,但大量的科学报告在各种作物植物和环境变量中表现出其显着影响。植物Si在植物生命周期中发挥生物活跃作用,显着的影响取决于其在植物组织或零件中的生物累积。特别是,已经研究其参与有限的灌溉管理。因此,进行了该实验以检测Si应用在甘蔗植物的生态生理,酶和非酶活中抵抗水胁迫的影响。四种灌溉水平,即正常(土壤水分的100-95%),80-75,55-50和35-30%的土壤水分进行治疗,为0,100,200提供的甘蔗品种GT 42植物进行治疗, 300,400和500 mg Si L和Si应用后60天暴露。在应力下,植物长度降低(〜26-67%),叶面积膨胀(〜7-51%),相对含水量(〜18-57%),叶绿度(〜12-35%),光合色素(〜12-67%),生理反应,如光合作用(22-63%),气孔电导(〜25-61%)和蒸腾率(〜32-63%),在植物中观察到生物量产生SI应用。干旱病症还抑制了抗氧化酶,如过氧化氢酶(〜10-52%),过氧化物酶(Ca.4-35),超氧化物歧化酶(10-44%)和增强脯氨酸(〜73-410%)和丙二醛内容分别(约15-158%)。然而,添加Si改善干旱诱导甘蔗植物损伤。该研究结果表明,Si在甘蔗的主动参与响应于植物性能和生理过程的水分应激范围,对抗氧化剂防御系统。

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