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HO 预培养通过保护叶绿体超微结构和调节初级代谢物来促进玉米的耐盐性。

HO priming promotes salt tolerance in maize by protecting chloroplasts ultrastructure and primary metabolites modulation.

机构信息

Department of Biochemistry and Molecular Biology, Federal University of Ceará, Brazil.

Department of Metallurgical and Materials Engineering and Analytical Center, Federal University of Ceará, Fortaleza, Brazil.

出版信息

Plant Sci. 2021 Feb;303:110774. doi: 10.1016/j.plantsci.2020.110774. Epub 2020 Nov 28.

Abstract

Hydrogen peroxide priming has emerged as a powerful strategy to trigger multiple responses involved in plant acclimation that reinforce tolerance to abiotic stresses, including salt stress. Thus, this study aimed to investigate the impact of foliar HO priming on the physiological, biochemical, and ultrastructural traits related to photosynthesis of salt-stressed plants. Besides, we provided comparative leaf metabolomic profiles of Zea mays plants under such conditions. For this, HO or HO pretreated plants were grown under saline conditions for 12-days. Salinity drastically affected photosynthetic parameters and structural chloroplasts integrity, also increased reactive oxygen species contents promoting disturbance in the plant metabolism when compared to non-saline conditions. Our results suggest that HO-pretreated plants improved photosynthetic performance avoiding salinity-induced energy excess and ultrastructural damage by preserving stacking thylakoids. It displayed modulation of some metabolites, as arabitol, glucose, asparagine, and tyrosine, which may contribute to the maintenance of osmotic balance and reduced oxidative stress. Hence, our study brings new insights into an understanding of plant acclimation to salinity by HO priming based on photosynthesis maintenance and metabolite modulation.

摘要

过氧化氢引发已成为一种强大的策略,可以触发植物适应过程中涉及的多种反应,从而增强对包括盐胁迫在内的非生物胁迫的耐受性。因此,本研究旨在探讨叶面 HO 引发对盐胁迫下植物光合作用相关的生理、生化和超微结构特性的影响。此外,我们还提供了在这种条件下玉米叶片代谢组学的比较分析。为此,HO 或 HO 预处理的植物在盐胁迫条件下生长 12 天。与非盐胁迫条件相比,盐度严重影响光合作用参数和结构叶绿体的完整性,还会增加活性氧物质含量,从而扰乱植物代谢。我们的结果表明,HO 预处理的植物通过保持堆叠类囊体来改善光合作用性能,避免了盐诱导的能量过剩和超微结构损伤。它显示了一些代谢物的调节,如阿拉伯糖醇、葡萄糖、天冬酰胺和酪氨酸,这可能有助于维持渗透平衡和减少氧化应激。因此,本研究通过基于光合作用维持和代谢物调节的 HO 引发,为理解植物对盐胁迫的适应提供了新的见解。

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