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Silicon-mediated role of 24-epibrassinolide in wheat under high-temperature stress

机译:在高温胁迫下,硅介导的24倍蛋白醇在小麦中的作用

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摘要

High temperature poses a severe extortion to productivity of many crops like wheat. Therefore, well documented roles of brassinosteroid (BR) and silicon (Si) in terms of abiotic stress tolerance, the current study was designed to evaluate the response of wheat (Triticum aestivum L. Var. PBW-343) to 24-epibrassinolide (EBL) mediated by silicon grown under high temperature stress. At 10- and 12-day stage after sowing, the seedlings were administered Si (0.8mM) through the sand, and the plants at 20, 22, or 24days after sowing (DAS) were given EBL (0.01M) through foliage. Plants were treated to high-temperature stress (35/28 or 40/35 degrees C), for 24h with 12-h photoperiod in plant growth chamber at 25- and 26-day stage of growth. High temperatures cause significant reduction in growth performance and photosynthesis-related attributes at 35days after sowing. However, antioxidant enzymes and proline content also augmented substantially with increasing temperature. BR and Si enhanced antioxidant activity and proline content, which was earlier increased by the high temperature. It is established that interaction of EBL and Si considerably improved the growth features, photosynthetic efficacy, and several biochemical traits under high-temperature stressthrough elevated antioxidant system and osmoprotectant.
机译:高温提出了严峻的勒索许多作物如小麦的生产力。因此,在非生物胁迫耐受性方面油菜素类固醇(BR)和硅(Si)的有据可查的角色,目前的研究的目的是评估小麦的响应(普通小麦变种PBW-343),以24表油菜素内酯(EBL )通过高温胁迫下生长硅介导的。在播种后10和12天的阶段,将幼苗通过砂施用的Si(0.8毫米),并通过在叶子20,后22或24天播种(DAS)给予EBL(0.01M)的植物。植物在生长的25-和26天的阶段处理,以高温应力(35/28 40/35或摄氏度),用于与在植物生长室中12小时光周期24小时。高温导致业绩增长显著减少和播种后35天光合作用相关的属性。然而,抗氧化酶和脯氨酸含量也随着温度的增加基本上增加。 BR和Si增强抗氧化活性和脯氨酸含量,这是前面增加的高的温度。已经确定,EBL和Si的相互作用显着改善的生长特征,光合效力,和几个生化性状高温下stressthrough升高抗氧化系统和渗透保护剂。

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