牛蒡提取物及其化合物对木材真菌和细菌的抑菌作用

D. Ekhuemelo, J. Anyam, C. Ekhuemelo
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引用次数: 1

摘要

本研究考察了牛蒡提取物及其化合物对一些木材降解真菌的抑菌作用。采用正己烷、甲醇和乙酸乙酯溶剂,对黄芩的茎皮和心材进行干燥、粉碎和浸渍。混合物经过过滤、蒸发和干燥后的样品混合,用正己烷和乙酸乙酯溶剂的混合物在硅胶柱层析中运行,以获得馏分。将所收集的馏分进行蒸发处理,白色针状馏分进行核磁共振(NMR)光谱分析。从心材部分分离得到Spinasterol,而茎皮部分为脂肪。在18 ~ 24 mm的抑制区(ZOI)范围内,双歧鸡翅菌(Vitellaria paradoxia)提取物对裂齿丝虫病(Serpula crrymans)、罗氏菌核菌(Sclerotium rolfsii)、烟曲霉(Aspergillus fumigatus)、松果拟南毛霉(Fomitopsis pinicoca)、施韦尼茨褐褐菌(Phaeolus schweinitzii)、根霉(Rhizopus sp.)、褐球孢子虫(Coniophora puteana)、褐球孢子虫(Gloeophyllum sepiarium)和白纤维孢子虫(Fibroporia vaillantii)均有活性。抗菌药物在25 ~ 31 mm范围内均有活性,但对18 ~ 24 mm范围内均敏感的pinicoca Fomitopsis真菌无活性。在最低抑菌浓度(MIC)为50 μg/mL时对所有真菌均有抑制作用。最低杀真菌浓度(MFC)在50 ~ 200 μg/mL之间时,所有试验真菌均被杀死。基于ZOI、MIC和MFC的研究表明,木腐菌茎皮心材组分对木腐菌的生长有很好的抑制作用;因此,该物种可以作为生物活性杀菌剂的潜在来源进行探索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antimicrobial Efficacy of Vitellaria paradoxa fractions and compounds on some wood Fungi and Bacteria
This study examined antifungal efficacy of Vitellaria paradoxa fractions and compounds in the control of some wood degrading fungi. Stem bark and heartwood parts of Vitellaria paradoxa were collected, dried, pulverised and macerated sequentially in n- hexane, methanol and ethyl acetate solvents. The mixtures were filtered, evaporated and the dried samples were mixed and run over silica gel in column chromatography with a mixture of n -hexane and ethyl acetate solvents to obtain fractions. The fractions collected were evaporated and those with white needles were subjected to Magnetic Resonance (NMR) spectroscopic analysis. Spinasterol was isolated and characterised from the heartwood fraction while the stem bark fractions were fatty. Vitellaria paradoxa fractions were active against Serpula lacrymans, Sclerotium rolfsii, Aspergillus fumigatus, Fomitopsis pinicoca, Phaeolus schweinitzii, Rhizopus sp., Coniophora puteana, Gloeophyllum sepiarium, and Fibroporia vaillantii at zones of inhibition (ZOI) of 18 mm - 24 mm. Although the antibiotics were active (25 – 31 mm), they were found inactive against the Fomitopsis pinicoca fungus which was sensitive to all the V. paradoxa fractions at zones of inhibition of 18 - 24 mm. The minimum inhibitory concentrations (MIC) of the V. paradoxa fractions were active at 50 μg/mL against all test fungi. At minimum fungicidal concentration (MFC) of between 50 - 200 μg/mL, all the test fungi were killed. Based on the ZOI, MIC and MFC, the V. paradoxa stem bark heartwood fractions have been proven to be very efficient in inhibiting the growth of test wood rot fungi; hence the species could be explored as a potential source of bioactive fungicides.
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