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GC-MS analysis and antifungal activity of acetone extract of Conocephalum conicum (L) Underw (Liverwort) against aflatoxins producing fungi

机译:Concephalum conicum(l)丙酮提取物的GC-MS分析和抗真菌活性对杂质毒素产生真菌的黄金毒素(Liverwort)

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Aflatoxins produced by Aspergillus sp. are one of the extremely potent toxins of fungal origin that create serious health hazards in plants, animals and humans. The present study aims to search for a reliable and eco-friendly biocontrol of aspergillus by validating the use of some traditionally used bryophytes applying standard antifungal assays. Three bryophytes were collected from different altitudes (213-2100 m) of Western Himalaya. Crude organic extracts (methanol/ethanol or acetone) of three bryophytes viz. Conocephalum conicum (L.) Dumort., Marchantia papillata Raddi and Rhynchostegium vagans A. Jaeger were used for the control of Aspergillus flavus and A. parasiticus through food poisoned technique. The minimum inhibitory concentration (MIC) and minimum fungicidal concentration (MFC) was determined by micro broth dilution methods. Out of different crude organic extracts, acetone extract of Conocephalum conicum collected from Mukteshwar (altitude 2100 m) showed the highest percent inhibition (75 +/- 0.57-76 +/- 0.57%) with the lowest MFC (7.81 mu g/mL) against A. flavus and A. parasiticus which was compared with an antibiotic, fluconazole. The Gas Chromatography-Mass Spectroscopy (GC-MS) analysis of the acetone extract of C. conicum revealed the presence of 30 major compounds out of which, riccardin C was found as a biomarker compound. The scanning electron microscopic studies revealed the structural anomalies in the treated Aspergillus sp. which confirms the fungicidal potential of C. conicum against Aspergillus sp. (C) 2020 SAAB. Published by Elsevier B.V. All rights reserved.
机译:aspergillus sp产生的黄曲霉毒素。是真菌起源的极其有效的毒素之一,在植物,动物和人类中产生严重的健康危害。本研究旨在通过验证应用标准抗真菌测定的一些传统使用的苔藓植物来搜索Aspergillus的可靠和生态友好的生物控制。从西部西部西部的不同高度(213-2100米)收集了三种苔藓植物。粗糙的有机萃取物(甲醇/乙醇或丙酮)的三种苔藓锌。 Concocalum Conicum(L.)Dumort。,Markantia papillata Raddi和rhynchostegium Vagans A. Jaeger用于通过食物中毒技术控制曲霉和A.寄生虫。通过微肉汤稀释方法测定最小抑制浓度(MIC)和最小杀真菌浓度(MFC)。在不同的粗原油中,从Mukteshwar收集的丙酮提取物(高度2100m)收集的Concephalum泛黄质显示出最高百分比(75 +/- 0.57-76 +/- 0.57%),最低MFC(7.81μg/ ml)对针对Flavus和A.寄生蛋白,与抗生素氟康唑进行比较。 C. CANICUM的丙酮提取物的气相色谱 - 质谱(GC-MS)分析显示出30个主要化合物的存在,其中蓖麻标志为生物标志物化合物。扫描电子显微镜研究揭示了经过处理的Aspergillus sp中的结构异常。这证实了C. canicum的杀真菌潜力对抗曲霉属植物。 (c)2020 Saab。 elsevier b.v出版。保留所有权利。

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