首页> 外文期刊>Planta: An International Journal of Plant Biology >Metabolomics and physiological analyses reveal beta-sitosterol as an important plant growth regulator inducing tolerance to water stress in white clover
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Metabolomics and physiological analyses reveal beta-sitosterol as an important plant growth regulator inducing tolerance to water stress in white clover

机译:代谢组科和生理分析显示β-席甾醇作为一种重要的植物生长调节剂,诱导白色三叶草水分胁迫的耐受性

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Main conclusion beta-sitosterol influences amino acids, carbohydrates, organic acids, and other metabolite metabolism and homeostasis largely contributing to better tolerance to water stress in white clover. beta-sitosterol (BS) could act as an important plant growth regulator when plants are subjected to harsh environmental conditions. Objective of this study was to examine effects of BS on growth and water stress tolerance in white clover based on physiological responses and metabolomics. White clover was pretreated with or without BS and then subjected to water stress for 7 days in controlled growth chambers. Physiological analysis demonstrated that exogenous application of BS (120 mu M) could significantly improve stress tolerance associated with better growth performance and photosynthesis, higher leaf relative water content, and less oxidative damage in white clover in response to water stress. Metabolic profiling identified 78 core metabolites involved in amino acids, organic acids, sugars, sugar alcohols, and other metabolites in leaves of white clover. For sugars and sugar alcohol metabolism, the BS treatment enhanced the accumulation of fructose, glucose, maltose, and myo-inositol contributing to better antioxidant capacity, growth maintenance, and osmotic adjustment in white clover under water stress. The application of BS was inclined to convert glutamic acid into proline, 5-oxoproline, and chlorophyll instead of going to pyruvate and alanine; the BS treatment did not significantly affect intermediates of tricarboxylic acid cycle (citrate, aconitate, and malate), but promoted the accumulation of other organic acids including lactic acid, glycolic acid, glyceric acid, shikimic acid, galacturonic acid, and quinic acid in white clover subjected to water stress. In addition, cysteine, an important antioxidant metabolite, was also significantly improved by BS in white clover under water stress. These altered amino acids and organic acids metabolism could play important roles in growth maintenance and modulation of osmotic and redox balance against water stress in white clover. Current findings provide a new insight into BS-induced metabolic homeostasis related to growth and water stress tolerance in plants.
机译:主要结论β-谷甾醇影响氨基酸,碳水化合物,有机酸和其他代谢产物代谢和稳态,主要有助于更好地耐受白三叶草水分胁迫。当植物受到苛刻的环境条件时,β-谷甾醇(BS)可以作为重要的植物生长调节剂。本研究的目的是研究BS基于生理反应和代谢组学的白三叶草生长和水胁迫耐受的影响。白色三叶草用或没有BS预处理,然后在受控生长室中进行水胁迫7天。生理分析表明,BS(120μm)的外源性应用可以显着改善与更好的生长性能和光合作用,更高的叶片相对含水量,以及响应于水胁迫的白色三叶草的氧化损伤而相关的胁迫耐受性。代谢分析确定了氨基酸,有机酸,糖,糖醇和白色三叶草叶片中的78个核心代谢物。对于糖和糖醇代谢,BS治疗增强了果糖,葡萄糖,麦芽糖和肌醇肌醇的积累,有助于更好的抗氧化能力,生长维护和水胁迫下的白色三叶草的渗透调整。 BS的应用倾向于将谷氨酸转化为脯氨酸,5-氧中和叶绿素,而不是将丙酮酸和丙氨酸进行氯氰酸酯; BS治疗没有显着影响三羧酸循环的中间体(柠檬酸盐,焦炭和苹果酸),但促进了其他有机酸的积累,包括乳酸,乙醇酸,甘氨酸,植物酸,半乳糖酸和白色醋酸三叶草受水胁迫。此外,在水胁迫下,BS在白色三叶草中也显着改善了一种重要的抗氧化代谢物。这些改变的氨基酸和有机酸代谢可以在渗透和氧化还原平衡对白三叶草中的水分胁迫下发挥重要作用。目前的调查结果为BS诱导的代谢性稳态有关植物的生长和水胁迫耐受性提供了新的洞察力。

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