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Two new fatty acids esters were detected in ginseng stems by the application of azoxystrobin and the increasing of antioxidant enzyme activity and ginsenosides content

机译:通过含氮氧杂环蛋白和抗氧化酶活性和人参皂苷含量的增加,在人参茎中检测到两种新的脂肪酸酯。

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Panax ginseng CA. Meyer is a valuable herb in China that has also gained popularity in the West because of its pharmacological properties. The constituents isolated and characterized in ginseng stems include ginsenosides, fatty acids, amino acids, volatile oils, and polysaccharides. In this study, the effects of fungicide azoxystrobin applied on antioxidant enzyme activity and ginsenosides content in ginseng stems was studied by using Panax ginseng C. A. Mey. cv. (the cultivar of Ermaya) under natural environmental conditions. The azoxystrobin formulation (25% SC) was sprayed three times on ginseng plants at different doses (150 g a.i./ha and 225 g a.i./ ha), respectively. Two new fatty acids esters (ethyl linoleate and methyl linolenate) were firstly detected in ginseng stems by the application of azoxystrobin as foliar spray. The results indicated that activities of enzymatic antioxidants, the content of ginsenosides and two new fatty acids esters in ginseng stems in azoxystrobin-treated plants were increased. Azoxystrobin treatments to ginseng plants at all growth stages suggest that the azoxystrobin-induced delay of senescence is due to an enhanced antioxidant enzyme activity protecting the plants from harmful active oxygen species (AOS). The activity of superoxide dismutase (SOD) in azoxystrobintreated plants was about 1-3 times higher than that in untreated plants. And the effects was more significant (P = 0.05) when azoxystrobin was applied at dose of 225 g a.i./ha. This work suggests that azoxystrobin plays an important role in delaying of senescence by changing physiological and biochemical indicators and increasing ginsenosides content in ginseng stems. (C) 2016 Elsevier Inc. All rights reserved.
机译:Panax Ginseng CA.迈耶是中国的宝贵草药,因为其药理学特性也在西方受欢迎。在人参茎中分离和特征的成分包括人参皂苷,脂肪酸,氨基酸,挥发性油和多糖。在这项研究中,通过使用Panax人参C. A. a.梅伊研究了在抗氧化酶活性和人参茎中含有人参皂苷的含量和人参皂苷含量的影响。简历。 (Ermaya的栽培品种)在自然环境条件下。分别以不同剂量的人参植物(150g a.i./ha和225g a.i./ ha)在人参植物上喷洒三次氧氧杂草制剂(25%sc)。首先在人参茎中检测到两种新的脂肪酸酯(乙基Limolate和甲基亚甲酯)通过亚唑霉素作为叶面喷雾,在人参茎中检测到。结果表明,酶促抗氧化剂的活性,人参皂苷的含量和三唑型茎中人参茎中的两种新脂肪酸酯的活性增加。 Azoxystrobin在所有生长阶段对人参植物的治疗表明,偶氮素诱导的衰老延迟是由于增强了免受有害活性氧(AOS)的抗氧化酶活性。氮杂氧化植物中超氧化物歧化酶(SOD)的活性比未处理植物中的植物高约1-3倍。当以225g a.i./ha的剂量施用偶氮氧键时,效果更显着(p = 0.05)。这项工作表明,氮氧基蛋白通过改变生理和生化指标并增加人参茎中的人参皂苷含量来延迟衰老。 (c)2016年Elsevier Inc.保留所有权利。

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