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1.
11种植物精油对6种植物病原真菌的抑菌活性研究 总被引:1,自引:0,他引:1
为筛选有效的植物杀菌成分,采用菌丝生长法,测定了香茅油、薰衣草油、菊花油、月桂油、柠檬油、广藿香油、肉桂油、天竺葵油、迷迭香油、茶树油、薄荷油对6种植物病原真菌的抑菌活性。发现在2 g/L的浓度下,上述11种精油对6种供试病菌均有明显的抑制作用,其中香茅油、肉桂油、天竺葵油、月桂油、茶树油和薄荷油对6种病原真菌的抑制率均为100%。剂量效应试验表明,肉桂油对灰葡萄孢(Botrytis cinerea)和禾谷镰孢菌(Fusariumgraminearum)的EC50值分别为29.05μg/mL和42.96μg/mL,而天竺葵油对灰葡萄孢(Botrytis cinerea)和禾谷镰孢菌(Fusarium graminearum)的EC50值分别为34.02μg/mL和68.48μg/mL。 相似文献
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为筛选有效的植物杀菌成分,采用菌丝生长法,测定了香茅油、薰衣草油、菊花油、月桂油、柠檬油、广藿香油、肉桂油、天竺葵油、迷迭香油、茶树油、薄荷油对6种植物病原真菌的抑菌活性。发现在2 g/L的浓度下,上述11种精油对6种供试病菌均有明显的抑制作用,其中香茅油、肉桂油、天竺葵油、月桂油、茶树油和薄荷油对6种病原真菌的抑制率均为100%。剂量效应试验表明,肉桂油对灰葡萄孢(Botrytis cinerea)和禾谷镰孢菌(Fusariumgraminearum)的EC50值分别为29.05μg/mL和42.96μg/mL,而天竺葵油对灰葡萄孢(Botrytis cinerea)和禾谷镰孢菌(Fusarium graminearum)的EC50值分别为34.02μg/mL和68.48μg/mL。 相似文献
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几种典型植物精油的化学成分与其抗菌活性 总被引:4,自引:0,他引:4
【目的】植物精油萃取自天然植物, 因具有抗菌活性, 近年来受到广泛关注。论文的目的是分析植物精油的化学成分, 测试其抗菌活性, 并研究其化学成分与抗菌活性之间的联系。【方法】实验选取了肉桂、山苍子、丁香、香茅、迷迭香和大蒜精油等6种典型植物精油, 通过气质联用分析方法研究了其化学组分, 并通过污染食物技术研究了其对黑曲霉和绳状青霉的抗真菌活性, 以及对大肠杆菌和金黄色葡萄球菌的抗细菌活性。【结果】气质联用分析结果表明, 肉桂、山苍子、香茅和迷迭香等4种植物精油的化学成分主要是醛类和醇类, 丁香精油的主要化学成分是丁香油酚, 大蒜精油化学成分基本上都是含硫的醚类, 其中二烯丙基三硫醚(大蒜素)含量最高。抗菌活性结果显示, 不同植物精油的抗菌活性不同, 6种植物精油的抗真菌活性由强到弱依次为: 肉桂>大蒜>丁香>山苍子=香茅>迷迭香, 抗细菌活性由强到弱依次为: 肉桂>山苍子>丁香>香茅=迷迭香>大蒜。【结论】植物精油的抗真菌、细菌活性与其化学组分密切相关, 肉桂、山苍子、香茅和迷迭香等4种精油的抗菌活性可能主要与其化学成分中的醛类和醇类有关, 丁香精油较高的抗菌活性可能主要源于丁香油酚; 大蒜精油具有高效的抗真菌活性主要源于其化学成分中的含硫醚。不同植物精油化学成分不同, 抗真菌、细菌活性也不同, 表明其可能有不同的抗真菌与抗细菌机制。 相似文献
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几种药用植物内生真菌抗真菌活性的初步研究 总被引:52,自引:0,他引:52
从三尖杉,南方红豆杉及香榧中分离出172株内生真菌,对其进行抗菌活性检测,结果表明共90株内生真菌对一种或多种植物病原真菌,如红色面孢霉(Neurospora sp.),木霉(Trichoderma sp.),镰刀菌(Fusarium sp.)等有抑制作用,来自三尖杉、南方红豆杉和香榧的抗菌活性菌株比例分别为40%,54.2%及57.1%。其中平板抑菌圈直径大于15mm的高抗菌株有35株。按Ainsworth等鉴定系统和方法进行鉴定,具有抗菌活性的内生真菌主要分布于心青霉属、镰孢菌属等18个属中。 相似文献
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五种新疆植物的抗真菌活性 总被引:7,自引:4,他引:7
对采自新疆的黄花蒿(Artemisia annua)、北艾(Artemisia vulgaris)、梭梭(Halaxylon ammodendron)、盐爪爪(Kalidium foliatum)和多枝柽柳(Tamarix ramosissima)抗植物病原真菌的活性进行了研究,植物病原真菌包括番茄灰霉病菌(Botrytis cinerea)、棉花枯萎病菌(Fusarium axysporum f.sp.vasinfectum)、稻瘟病菌(Magnaporthe grisea)、烟草黑胫病菌(Phytophthora parasitica var.nicotianae)和瓜果腐霉(Pythium aphani-dermatum),其中黄花蒿对真菌菌丝生长、多枝柽柳对稻瘟病菌孢子萌发表现出强的抑制活性。本研究为植物病害防治和新疆植物资源的开发和利用提供了依据。 相似文献
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植物精油对几种害虫的毒杀活性 总被引:12,自引:0,他引:12
对 11科 15属 2 7种植物精油的杀虫活性做了测定。八角茴香果实、柠檬果实、细叶桉叶和留兰香叶精油对粘虫、小菜蛾、棉铃虫和玉米象有较强的熏蒸活性 ;精油稀释 10 0倍后 ,甜橙果实、玳玳花和砂地柏精油对粘虫的拒食活性最高 ;在 0 4% (w/w)剂量下 ,肉桂皮和八角茴香果实等 7种精油对玉米象的种群形成抑制率达 10 0 %。 相似文献
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从三尖杉 ,南方红豆杉及香榧中分离出 1 72株内生真菌 ,对其进行抗菌活性检测 ,结果表明共 90株内生真菌对一种或多种植物病原真菌 ,如红色面孢霉 (Neurosporasp .) ,木霉 (Trichodermasp .) ,镰刀菌 (Fusariumsp .)等有抑制作用 ,来自三尖杉、南方红豆杉和香榧的抗菌活性菌株比例分别为 40 %,54.2 %及 57.1 %。其中平板抑菌圈直径大于1 5mm的高抗菌株有 3 5株。按Ainsworth等鉴定系统和方 相似文献
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迷迭香酸对几种植物病原真菌的抗菌活性* 总被引:11,自引:0,他引:11
研究了迷迭香酸对不同植物病原真菌菌丝生长和孢子萌发的抑制活性。试验结果表明,迷迭香酸对供试的8种植物病原真菌菌丝生长均有抑制作用,其中对番茄灰霉病菌、芒果灰斑病菌、柑桔青霉和梨黑斑病菌抑制作用较强,EC50分别为615.04μg/mL、698.23μg/mL、714.50μg/mL和809.10μg/mL;对杉木猝倒病菌和苹果树腐烂病菌抑制作用次之,EC50分别为1039.92μg/mL和1044.72μg/mL;对松枯梢病菌和种实霉烂病菌的抑制作用较弱,EC50分别为1256.90μg/mL和1270.87μg/mL。迷迭香酸对供试的6种植物病原真菌孢子萌发也有明显的抑制作用,EC50大致在400~700μg/mL范围,其中对梨黑斑病菌孢子萌发抑制作用最强,EC50为395.37μg/mL。 相似文献
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小桐子内生真菌及其抗真菌活性研究 总被引:9,自引:0,他引:9
从药用植物小桐子的根和茎中分离到内生真菌57株,经鉴定,它们分属于15个不同的分类单元。其中拟盘多毛孢为优势属,其次为拟茎点霉属和茎点霉属。用杨桃炭疽菌,香蕉疫霉和镰刀菌作指示菌对这些内生真菌的抗真菌活性进行检测,结果表明,有2株菌对杨桃炭疽菌具有抑菌活性。 相似文献
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植物精油抑菌活性研究进展 总被引:8,自引:0,他引:8
本文综述了国内外植物精油在农用抑菌活性及抑菌活性成分研究方面所取得的成果。阐述了具有农用抑菌活性的31种植物精油及其抑菌效果,并列举了植物精油中13种具有开发潜力的抑菌活性成分,简要分析了植物精油及其主要活性成分的作用机理。 相似文献
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The antifungal and fungicidal effects of hyssop ( Hyssopus officinalis ) oil and its individual components were studied in a series of in vitro and in vivo experiments. Mycelial growth of the plant pathogenic fungi Pyrenophora avenae and Pyricularia oryzae was completely inhibited by 0.4% hyssop oil. Volatile components diffusing from agar medium containing 0.4% hyssop oil also completely inhibited the growth of these two fungi. Various components of hyssop oil ( L -bornyl acetate, isopinocampheol and pinocamphone), used individually, reduced growth of P. avenae and, where combinations of individual components were used, any mixture containing isopinocampheol completely inhibited fungal growth. Growth of P. oryzae was less affected by individual components of the oil. Hyssop oil reduced germination of Botrytis fabae conidia and uredospores of Uromyces viciae-fabae , but in contrast to the data from in vitro experiments, its effects on pathogen infection were less clear cut. Thus, although 0.05% hyssop oil reduced rust infection of broad bean when applied 1, 2 or 3 days before, or 1 or 2 days after inoculation, its effects against barley powdery mildew and apple powdery mildew were variable. It is suggested that this variability might be the result of the volatile components of the oil diffusing away from leaf surfaces, thus reducing the concentration of active components on the leaf surface. 相似文献
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The antifungal and fungicidal effects of two chemotypes of basil (Ocimum basilicum) oil and its major individual components were studied in a series of in vitro and in vivo experiments. Mycelial growth of the plant pathogenic fungus Botrytis fabae was reduced significantly by both the methyl chavicol chemotype oil and the linalol chemotype oil, and the major individual components of the oils all reduced fungal growth, with methyl chavicol, linalol, eugenol and eucalyptol reducing growth significantly. Combining the pure oil components in the same proportions as found in the whole oil led to very similar reductions in fungal growth, suggesting that the antifungal effects of the whole oils were due primarily to the major components. When the fungus was exposed to the oils in liquid culture, growth was reduced by concentrations considerably smaller than those used in the Petri dish studies. Botrytis fabae and the rust fungus Uromyces fabae were also controlled in vivo, with the whole oils of both chemotypes, as well as pure methyl chavicol and linalol, reducing infection of broad bean leaves significantly. Most effective control of fungal infection was achieved if the treatments were applied 3 h postinoculation. 相似文献
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Ana J. Maciel Caroline P. Lacerda Letícia J. Danielli Srgio A. L. Bordignon Alexandre M. Fuentefria Miriam A. Apel 《化学与生物多样性》2019,16(8)
The purpose of this work was to determine the chemical composition and evaluate the antichemotactic, antioxidant, and antifungal activities of the essential oil obtained from the species Cryptocarya aschersoniana Mez , Cinnamomum amoenum (Ness & Mart .) Kosterm. , and Schinus terebinthifolia Raddi , as well as the combination of C. aschersoniana essential oil and terbinafine against isolates of dermatophytes. Allo‐aromadendrene, bicyclogermacrene, and germacrene B were identified as major compounds in essential oils. The essential oil of C. aschersoniana shown 100 % inhibitory effect on leukocyte migration at the concentration of 10 μg/mL while S. terebinthifolia oil presented 80.1 % inhibitory effect at the same concentration. Only S. terebinthifolia oil possessed free‐radical‐scavenging activity which indicates its antioxidant capacity. The essential oils were also tested against fungal isolates of dermatophyte species (Trichophyton rubrum, Trichophyton mentagrophytes, Microsporum canis and Microsporum gypseum), resulting in MIC ranging from 125 μg/mL to over 500 μg/mL. C. aschersoniana oil combined with terbinafine resulted in an additive interaction effect. In this case, the essential oil may act as a complement to conventional therapy for the topical treatment of superficial fungal infections, mainly because it is associated with an anti‐inflammatory effect. 相似文献
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Essential oils (EOs) are often used as natural antifungal agents to control the growth of phytopathogenic fungi. The aim of this study was to determine the effect of Ziziphora clinopodioides leaf EO against Verticillium dahliae, a pathogenic fungus of cotton. Gas chromatography-mass spectrometry (GC/MS) analysis revealed the presence of 15 compounds of the total of extracted oil, which was consisted of 98.79 % monoterpenes and 0.61 % sesquiterpenes. The major constituents were pulegone (62.17 %), isomenthone (18.42 %), l-menthone (5.55 %) and piperitenone (3.99 %). The mycelial growth of Verticillium dahliae was completely inhibited at 0.24 μL/mL air under vapor phase condition. Considerable morphological variations were also observed in the fungal sclerotia at the contact phase at 3 μL/mL. This study demonstrated for the first time that Z. clinopodioides EO can effectively inhibit the growth of V. dahliae, implying that it has the potential to be explored as an antifungal agent against Verticillium Wilt of cotton. 相似文献
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Ying-Ying Huo Tian-Tian Li Jing Yang Heng-Yu Huang Chuan-Jiao Chen Fu-Rong Xu Xian Dong 《化学与生物多样性》2021,18(12):e2100638
Cuminum cyminum L. (Cumin) is a flavoring agent that is commonly used worldwide, and is rich in essential oil. Essential oils (Eos) have been intensively investigated in regard to their potential for disease control in plants, which is provided a chance for the blossom of green pesticides. The chemical components of Cumin essential oil (CEO) were revealed by GC/MS, such as cuminaldehyde (44.53 %), p-cymene (12.14 %), (−)-β-pinene (10.47 %) and γ-terpinene (8.40 %), and found they can inhibit the growth of P. notoginseng-associated pathogenic fungi in vitro and the inhibitory effect of cuminaldehyde was similar to that of hymexazol. SEM and TEM images demonstrated that cuminaldehyde and CEO increased cell permeability and disrupted membrane integrity. The expression of disease-related genes of Fusarium oxysporum showed that CEO induced the expression of most genes, which disrupted biosynthesis, metabolism and signaling pathways. These studies verified the potential of CEO as a plant fungicide that is environmentally friendly and provided ideas for developing new products for controlling root diseases that affect P. notoginseng. 相似文献
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Juliana Caroline Butzge Christiane Pivotto Leticia Mezzomo Simone Krause Ferrão João Marcelo Astolfi Picanço Adelina Mezzari Luciane Noal Calil Renata Pereira Limberger Miriam A. Apel 《化学与生物多样性》2023,20(10):e202300663
Essential oils (EOs) are products of secondary metabolism with recognized organoleptic characteristics and biological properties. Recently, there has been a growing demand for EOs in the national and international market, mainly due to the recognition of their use as complementary medicine practices, and the increased use in the industries of pharmaceutics, cosmetics, well-being, veterinary and agroecology, boosting the productive sector. In this context, EOs from grasses of the Cymbopogon (Poaceae) are promising sources of bioactive compounds, due to their recognized biological properties, such as anti-inflammatory, antibacterial, antifungal, antidiabetic, repellent, and larvicide. Thus, the present study aims to carry out a review of the scientific literature of the main works related to the evaluation of the antifungal action of essential oils extracted from plants of the Cymbopogon genus, compiling the species that showed the best results and relating them to their main chemical constituents. This review covers the following species: C. citratus, C. flexuosus, C. winterianus, C. martinii, C. nardus, C. giganteus, C. schoenanthus, C. khasans, and C. proximus. Among them, C. citratus was the most assessed, being associated with the vast majority of studies (61.9 %), and it was also the species that showed the best results in terms of MIC. 相似文献
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Chuan‐Jiao Chen Qing‐Qing Li Yu‐Nan Ma Wei Wang Yong‐Xian Cheng Fu‐Rong Xu Xian Dong 《化学与生物多样性》2019,16(4)
Panax notoginseng root is a traditional Chinese herb, of which the yield and quality have been seriously affected by microorganisms, and is commonly used to treat various kinds of bleeding. In this experiment, the effects of the antifungal properties of essential oils (EOs) from five kinds of Rutaceae plants on the growth of three kinds of pathogens were studied to develop natural, environmentally friendly antifungal agents. Citrus medica EO was found to have stronger inhibitory effects on the growth of pathogenic fungi in vitro than other EOs with the Oxford cup method, of which the chemical composition was further investigated by GC/MS. The major components were d ‐limonene (22.79 %) and γ‐terpinene (9.71 %). The antifungal activities were evaluated by MIC and FIC assays. In these assays, C. medica EO, d ‐limonene and γ‐terpinene were effective against three pathogens of P. notoginseng with MIC values ranging from 0.12 to 12.05 mg/mL. The association between hymexazol and C. medica EO showed a high synergistic effect with lower FIC index values (FICi=0.31–2.00). Furthermore, C. medica EO was further assessed in P. notoginseng planted in a continuous cropping soil (CCS) and was found to reduce the disease incidence and disease severity compared with P. notoginseng planted in CCS only without EO addition. This finding suggested that C. medica EO has potential as a natural environmentally antifungal agent against pathogens of P. notoginseng, ensuring its safety. 相似文献
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Supercritical carbon dioxide (SC-CO2), hydrodistillation (HDO), ethanol extraction (EE), and petroleum ether extraction (PE) were used to extract the essential oil and extracts of Cinnamomum camphora fruit in this study. Gas chromatography-mass spectrometry was used to identify the volatile components of essential oils and extracts, and 63 compounds were identified. 2,2-Diphenyl-1-picrylhydrazyl (DPPH) and 2,2′-azinobis(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS) radical scavenging assay and Ferric reducing ability of plasma (FRAP) assays and the inhibition experiment of bacteria and fungi (Staphylococcus aureus (S. aureus), Hay bacillus (H. bacillus), Escherichia coli (E. coli), Aspergillus niger (A. niger), Candida albicans (C. albicans)) showed these essential oils and extracts indicated antioxidant and antibacterial activities. S. aureus was the most sensitive to the essential oil (MIC=0.08 mg/ml). Combined with the Brine Shrimp Lethality Test (BSLT) experiment, HDO (LD50=68.21 μg/ml) was considered to have the most potential natural preservative. Subsequently, the inhibitory mechanism of HDO on bacteria and fungi was explored through extracellular conductivity and SEM, and the possibility of HDO to preserve the freshness of bananas was verified through banana shelf-life experiments. The results suggested these essential oils and extracts of Cinnamomum camphora fruit indicated effectively inhibit the growth of microorganisms on the surface of bananas, extend the shelf-life, and have the potential to become a natural antiseptic ingredient. 相似文献