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Essential Oils of Lavandula stoechas subsp.luisieri as Antifungal Agent against Fungi from Strawberry Tree Fruit

机译:Lavandula stoechas subsp.luisieri作为抗真菌的精油,从草莓树果实

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摘要

L.stoechas subsp.luisieri is one of the five spontaneous species of the genus Lavandula that occurs spontaneously in Portugal.The chemical profile and antifungal activity of L.stoechas subsp.luisieri essential oils were investigated.The essential oil of two phenological stages was isolated by hydrodistillation and their chemical components analyzed by GC-FID/GC-MS.The minimum inhibitory concentration(MIC)and the minimum fungicidal concentration(MFC)of both essential oils were determinate to verify antifungal activity against different strains of fungi isolated from strawberry tree.The fungi tested were Aspergillus carbonarius,Rhizopus stolonifer,Penicillium brevicompactum,Aureobasidium pullulans and Saccothecium rubi.Essential oils were characterized by a high percentage of oxygenated monoterpenes(46-64%)such as trans-α-necrodyl acetate(12.58%),fenchone(5.97%),1,8-cineole(4.84%)and 5-methylene-2,3,4,4-tetramethylcyclopenten-2-enone(10.97%)were the major compounds in essential oil from dormancy stage,while the main compounds in flowering stage were trans-α-necrodyl acetate(26.90%),trans-α-necrodol(13.02%),lavandulyl acetate(6.53%)and linalool(5.82%).A strong antifungal activity of the essential oils was found against all strains,with MIC and MFC values ranged from 0.07-0.29μL/mL and 0.58-9.33μL/mL,respectively.
机译:L.Stoechas subsp.luisieri是甜菜属的五种自发种类之一,它在葡萄牙自发地发生。L.Stoechas Subsp.luisieri精油的化学型材和抗真菌活性。分离出两种鉴别阶段的精油通过氢化物及其通过GC-FID / GC-MS分析的化学成分。最小抑制浓度(MIC)和两种精油的最小杀菌浓度(MFC)决定验证与草莓树分离的不同真菌菌株的抗真菌活动。测试的真菌是Carbanarius,Rhizopus Stolonifer,青霉蛋白淀粉蛋白和山竹葡萄糖葡萄卷,其特征在于氧化单萜(46-64%),如Trans-α-Necrodgl乙酸酯(12.58%), Fenchone(5.97%),1,8-桉(4.84%)和5-甲基-2,3,4,4-四甲基环戊烯-2-烯酮(10.97%)是精油中的主要化合物休眠阶段,而开花阶段的主要化合物是Trans-α-Necrodgl乙酸酯(26.90%),Trans-α-Necrodol(13.02%),乙酸盐(6.53%)和Linalool(5.82%)。强烈的抗真菌活性对所有菌株发现精油,MIC和MFC值分别为0.07-0.29μl/ ml和0.58-9.33μl/ ml。

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  • 来源
    《药剂与药理学:英文版》 |2021年第003期|P.98-106|共9页
  • 作者单位

    CBPBI-Plant Biotechnology Centre of Beira Interior Quinta da Senhora de Mércules Apartado 119 6001-909 Castelo Branco PortugalCICS-UBI-Health Sciences Research Centre Universidade da Beira Interior Av.Infante D.Henrique 6200-506 Covilhã Portugal;

    CBPBI-Plant Biotechnology Centre of Beira Interior Quinta da Senhora de Mércules Apartado 119 6001-909 Castelo Branco PortugalIPCB-ESA-Instituto Politécnico de Castelo Branco Escola Superior Agrária Quinta da Senhora de Mércules Apartado 119 6001-909 Castelo Branco PortugalCERNAS-IPCB-Research Centre for Natural Resources Environment and Society Instituto Politécnico de Castelo Branco Portugal;

    CBPBI-Plant Biotechnology Centre of Beira Interior Quinta da Senhora de Mércules Apartado 119 6001-909 Castelo Branco PortugalIPCB-ESA-Instituto Politécnico de Castelo Branco Escola Superior Agrária Quinta da Senhora de Mércules Apartado 119 6001-909 Castelo Branco PortugalCERNAS-IPCB-Research Centre for Natural Resources Environment and Society Instituto Politécnico de Castelo Branco Portugal;

    CBPBI-Plant Biotechnology Centre of Beira Interior Quinta da Senhora de Mércules Apartado 119 6001-909 Castelo Branco PortugalIPCB-ESA-Instituto Politécnico de Castelo Branco Escola Superior Agrária Quinta da Senhora de Mércules Apartado 119 6001-909 Castelo Branco PortugalCERNAS-IPCB-Research Centre for Natural Resources Environment and Society Instituto Politécnico de Castelo Branco Portugal;

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  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 有机化学;
  • 关键词

    Portuguese short-stalked lavender; Hydrodistillation; Gas Chromatography; Chemical characterization; Minimum inhibitory concentration; Minimum fungicidal concentration.;

    机译:葡萄牙语短跟踪薰衣草;氢化物;气相色谱;化学表征;最小抑制浓度;最小杀菌浓度。;
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