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Elicitation of Novel Trichogenic-Lipid Nanoemulsion Signaling Resistance Against Pearl Millet Downy Mildew Disease

机译:新型抗发脂脂质纳米乳液对珍珠粟霜霉病抗性的启发

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Nanoemulsion was formulated from membrane lipids of spp. with the non-ionic surfactant Tween 80 by the ultrasonic emulsification method. Nanoemulsion with a droplet diameter of 5 to 51 nm was obtained. The possible effects of membrane lipid nanoemulsion on pearl millet (PM) seed growth parameters and elicitation of downy mildew (DM) disease resistance in PM was analyzed to develop an eco-friendly disease management strategy. Seed priming with nanoemulsion illustrates significant protection and elevated levels of early defense gene expression. Lipid profiling of spp. reveals the presence of oleic acid as a major fatty acid molecule. The prominent molecule in the purified lipid fraction of (UP-91) responsible for the elicitation of induction of systemic resistance in PM host against DM pathogen was predicted as (E)-N-(1, 3-dihydroxyoctadec-4-en-2yl) acetamide. The results suggest that protection offered by the novel nanoemulsion formulation is systemic in nature and durable and offers a newer sustainable approach to manage biotrophic oomycetous pathogen.
机译:纳米乳液由spp的膜脂质配制而成。用非离子表面活性剂吐温80通过超声乳化法。获得液滴直径为5至51nm的纳米乳液。分析了膜脂质纳米乳对珍珠粟(PM)种子生长参数和诱发PM中霜霉病(DM)抗病性的可能影响,以开发一种生态友好的疾病管理策略。用纳米乳剂引发种子可显着保护和提高早期防御基因表达水平。 spp的脂质分析。揭示了油酸作为主要脂肪酸分子的存在。预测(UP-91)纯化脂质部分中引起诱发PM宿主对DM病原体的系统抗性诱导的突出分子为(E)-N-(1,3-dihydroxyoctadec-4-en-2yl )乙酰胺。结果表明,新型纳米乳剂配方提供的保护具有系统性和持久性,并提供了一种新的可持续方法来管理生物营养性卵菌病原体。

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