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Establishment of a Cell Suspension Culture of

机译:建立细胞悬浮培养

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摘要

Eysenhardtia platycarpa (Fabaceae) is a medicinal plant used in Mexico. Biotechnological studies of its use are lacking. The objective of this work was to establish a cell suspension culture (CSC) of E. platycarpa, determine the phytochemical constituents by spectrophotometric and gas chromatography‒mass spectrometry (GC‒MS) methods, evaluate its antifungal activity, and compare them with the intact plant. Friable callus and CSC were established with 2 mg/L 1-naphthaleneacetic acid plus 0.1 mg/L kinetin. The highest total phenolics of CSC was 15.6 mg gallic acid equivalents (GAE)/g dry weight and the total flavonoids content ranged from 56.2 to 104.1 µg quercetin equivalents (QE)/g dry weight. The GC‒MS analysis showed that the dichloromethane extracts of CSC, sapwood, and heartwood have a high amount of hexadecanoic acid (22.3–35.3%) and steroids (13.5–14.7%). Heartwood and sapwood defatted hexane extracts have the highest amount of stigmasterol (~23.4%) and β-sitosterol (~43%), and leaf extracts presented β-amyrin (16.3%). Methanolic leaf extracts showed mostly sugars and some polyols, mainly D-pinitol (74.3%). Compared with the intact plant, dichloromethane and fatty hexane extracts of CSC exhibited percentages of inhibition higher for Sclerotium cepivorum: 71.5% and 62.0%, respectively. The maximum inhibition for Rhizoctonia solani was with fatty hexane extracts of the sapwood (51.4%). Our study suggests that CSC extracts could be used as a possible complementary alternative to synthetic fungicides.
机译:Eysenhardtia platycarpa(Fabaceae)是墨西哥使用的药用植物。缺乏其使用的生物技术研究。本作作品的目的是建立E.Platycarpa的细胞悬浮培养物(CSC),通过分光光度法和气相色谱 - 质谱(GC-MS)方法确定植物化学成分,评价其抗真菌活性,并将它们与完整的完整进行比较植物。建立易碎的愈伤组织和CSC,用2mg / L 1-萘酰胺酸加0.1mg / l kinetin。 CSC的总酚类总酚类为15.6mg,无磷酸当量(GAE)/ g干重,总黄酮含量为56.2至104.1μg槲皮素等当量(QE)/ g干重。 GC-MS分析表明,CSC,SaPwood和Chercood的二氯甲烷提取物具有大量的十六烷酸(22.3-35.3%)和类固醇(13.5-14.7%)。 Heartwood和Sapwood Defateed己烷提取物具有最高量的Stigmasterol(〜23.4%)和β-谷甾醇(〜43%),叶提取物呈现β-丙烯蛋白(16.3%)。甲醇叶提取物主要显示出糖和一些多元醇,主要是D-拼胶醇(74.3%)。与完整的植物相比,CSC的二氯甲烷和脂肪己烷提取物表现出核心胶质癖的抑制百分比:71.5%和62.0%。 Rhizoctonia Solani的最大抑制与Sapwood的脂肪己烷提取物(51.4%)。我们的研究表明,CSC提取物可用作合成杀真菌剂的可能的互补替代品。

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