Plant Physiology and Biochemistry Section, Department of Botany, Aligarh Muslim University, Aligarh, 202002, India.
Department of Physiology and Cell Biology, Leibniz Institute of Plant Genetics and Crop Plant Research, Gatersleben, Germany.
Environ Sci Pollut Res Int. 2019 Jun;26(17):17163-17172. doi: 10.1007/s11356-019-04938-0. Epub 2019 Apr 18.
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 (0.8 mM) through the sand, and the plants at 20, 22, or 24 days after sowing (DAS) were given EBL (0.01μM) through foliage. Plants were treated to high-temperature stress (35/28 or 40/35 °C), for 24 h 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 35 days 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 stress through elevated antioxidant system and osmoprotectant.
高温对许多作物的生产力构成了严重威胁,小麦就是其中之一。因此,本研究旨在评估在高温胁迫下,硅介导的油菜素内酯(BR)和硅对小麦(Triticum aestivum L. Var. PBW-343)的响应。在播种后 10-12 天,通过沙子给幼苗施硅(0.8mM),在播种后 20、22 或 24 天(DAS),通过叶面给植株施油菜素内酯(0.01μM)。在生长室中,以 25-26 天的生长阶段,在 12 小时光照和 25-26 天的生长阶段,用 35/28 或 40/35°C 的高温处理 24 小时。高温导致在播种后 35 天生长性能和光合作用相关属性显著下降。然而,抗氧化酶和脯氨酸含量也随着温度的升高而大幅增加。BR 和 Si 增强了抗氧化活性和脯氨酸含量,这在高温下已经增加了。研究表明,BR 和 Si 的相互作用通过提高抗氧化系统和渗透保护剂,显著改善了高温胁迫下的生长特性、光合作用效率和几种生化特性。