Suppr超能文献

己酸二乙氨基乙醇酯(DA-6)调控的两种白三叶草基因型对有限水分供应的适应性增强与脂质组重编程相关

Enhanced Adaptability to Limited Water Supply Regulated by Diethyl Aminoethyl Hexanoate (DA-6) Associated With Lipidomic Reprogramming in Two White Clover Genotypes.

作者信息

Hassan Muhammad Jawad, Qi Hongyin, Cheng Bizhen, Hussain Shafiq, Peng Yan, Liu Wei, Feng Guangyan, Zhao Junming, Li Zhou

机构信息

College of Grassland Science and Technology, Sichuan Agricultural University, Chengdu, China.

College of Horticulture, Sichuan Agricultural University, Chengdu, China.

出版信息

Front Plant Sci. 2022 May 20;13:879331. doi: 10.3389/fpls.2022.879331. eCollection 2022.

Abstract

Membrane lipid reprogramming is one of the most important adaptive strategies in plant species under unfavorable environmental circumstances. Therefore, the present experiment was conducted to elucidate the effect of diethyl aminoethyl hexanoate (DA-6), a novel synthetic plant growth regulator, on oxidative damage, photosynthetic performance, changes in lipidomic profile, and unsaturation index of lipids in two white clover () cultivars (drought-sensitive "Ladino" and drought-resistant "Riverdel") under PEG-6000-induced water-deficit stress. Results revealed that water-deficit stress significantly enhanced oxidative damage and decreased photosynthetic functions in both cultivars. However, the damage was less in Riverdel. In addition, water-deficit stress significantly decreased the relative content of monogalactocyl-diacylglycerols (MGDG), sulfoquinovosyl-diacylglycerols (SQDG), phosphatidic acisd (PA), phosphatidyl-ethanolamines (PE), phosphatidyl-glycerols (PG), phosphatidyl-serines (PS), ceramides (Cer), hexosylmonoceramides (Hex1Cer), sphingomyelins (SM), and sphingosines (Sph) in both cultivars, but a more pronounced decline was observed in Ladino. Exogenous application of DA-6 significantly increased the relative content of digalactocyl-diacylglycerols (DGDG), monogalactocyl-diacylglycerolsabstra (MGDG), sulfoquinovosyl-diacylglycerols (SQDG), phosphatidic acids (PA), phosphatidyl-ethanolamines (PE), phosphatidyl-glycerols (PG), phosphatidyl-inositols (PI), phosphatidyl-serines (PS), ceramides (Cer), hexosylmonoceramides (Hex1Cer), neutral glycosphingolipids (CerG2GNAc1), and sphingosines (Sph) in the two cultivars under water-deficit stress. DA-6-treated Riverdel exhibited a significantly higher DGDG:MGDG ratio and relative content of sphingomyelins (SM) than untreated plants in response to water deficiency. Furthermore, the DA-6-pretreated plants increased the unsaturation index of phosphatidic acids (PA) and phosphatidylinositols (PI) in Ladino, ceramides (Cer) and hexosylmonoceramides (Hex1Cer) in Riverdel, and sulfoquinovosyl-diacylglycerols (SQDG) in both cultivars under water stress. These results suggested that DA-6 regulated drought resistance in white clover could be associated with increased lipid content and reprogramming, higher DGDG:MGDG ratio, and improved unsaturation index of lipids, contributing to enhanced membrane stability, integrity, fluidity, and downstream signaling transduction.

摘要

膜脂重编程是植物在不利环境条件下最重要的适应性策略之一。因此,本实验旨在阐明新型合成植物生长调节剂己酸二乙氨基乙醇酯(DA-6)对PEG-6000诱导的水分亏缺胁迫下两个白三叶品种(干旱敏感型“拉迪诺”和抗旱型“里弗代尔”)的氧化损伤、光合性能、脂质组学特征变化以及脂质不饱和度指数的影响。结果表明,水分亏缺胁迫显著增强了两个品种的氧化损伤并降低了光合功能。然而,里弗代尔的损伤较小。此外,水分亏缺胁迫显著降低了两个品种中单半乳糖基二酰基甘油(MGDG)、磺基喹喔啉基二酰基甘油(SQDG)、磷脂酸(PA)、磷脂乙醇胺(PE)、磷脂甘油(PG)、磷脂丝氨酸(PS)、神经酰胺(Cer)、己糖基单神经酰胺(Hex1Cer)、鞘磷脂(SM)和鞘氨醇(Sph)的相对含量,但在拉迪诺中观察到更明显的下降。外源施用DA-6显著增加了水分亏缺胁迫下两个品种中双半乳糖基二酰基甘油(DGDG)、单半乳糖基二酰基甘油(MGDG)、磺基喹喔啉基二酰基甘油(SQDG)、磷脂酸(PA)、磷脂乙醇胺(PE)、磷脂甘油(PG)、磷脂肌醇(PI)、磷脂丝氨酸(PS)、神经酰胺(Cer)、己糖基单神经酰胺(Hex1Cer)、中性糖鞘脂(CerG2GNAc1)和鞘氨醇(Sph)的相对含量。在水分亏缺情况下,经DA-6处理的里弗代尔表现出比未处理植株显著更高的DGDG:MGDG比值和鞘磷脂(SM)相对含量。此外,经DA-6预处理的植株在水分胁迫下提高了拉迪诺中磷脂酸(PA)和磷脂肌醇(PI)的不饱和度指数、里弗代尔中神经酰胺(Cer)和己糖基单神经酰胺(Hex1Cer)的不饱和度指数以及两个品种中磺基喹喔啉基二酰基甘油(SQDG)的不饱和度指数。这些结果表明,DA-6调节白三叶抗旱性可能与脂质含量增加和重编程、更高的DGDG:MGDG比值以及脂质不饱和度指数改善有关,有助于增强膜稳定性、完整性、流动性和下游信号转导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b08d/9163823/194f392c5c7e/fpls-13-879331-g0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验