首页> 外文期刊>International Journal of Molecular Sciences >In Vitro Antifungal Activity of Burkholderia gladioli pv. agaricicola against Some Phytopathogenic Fungi
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In Vitro Antifungal Activity of Burkholderia gladioli pv. agaricicola against Some Phytopathogenic Fungi

机译:伯克霍尔德氏菌PV的体外抗真菌活性。真菌对某些植物病原真菌

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The trend to search novel microbial natural biocides has recently been increasing in order to avoid the environmental pollution from use of synthetic pesticides. Among these novel natural biocides are the bioactive secondary metabolites of Burkholderia gladioli pv. agaricicola (Bga). The aim of this study is to determine antifungal activity of Bga strains against some phytopathogenic fungi. The fungicidal tests were carried out using cultures and cell-free culture filtrates against Botrytis cinerea, Aspergillus flavus, Aspergillus niger, Penicillium digitatum, Penicillium expansum, Sclerotinia sclerotiorum and Phytophthora cactorum. Results demonstrated that all tested strains exert antifungal activity against all studied fungi by producing diffusible metabolites which are correlated with their ability to produce extracellular hydrolytic enzymes. All strains significantly reduced the growth of studied fungi and the bacterial cells were more bioactive than bacterial filtrates. All tested Bulkholderia strains produced volatile organic compounds (VOCs), which inhibited the fungal growth and reduced the growth rate of Fusarium oxysporum and Rhizoctonia solani. GC/MS analysis of VOCs emitted by strain Bga 11096 indicated the presence of a compound that was identified as 1-methyl-4-(1-methylethenyl)-cyclohexene, a liquid hydrocarbon classified as cyclic terpene. This compound could be responsible for the antifungal activity, which is also in agreement with the work of other authors.
机译:为了避免由于使用合成农药而造成的环境污染,近来寻找新型微生物天然杀生物剂的趋势正在增加。在这些新颖的天然杀生物剂中,有伯克霍尔德氏菌PV的生物活性次生代谢物。 agaricicola(Bga)。这项研究的目的是确定Bga菌株对某些植物病原真菌的抗真菌活性。使用针对灰葡萄孢,黄曲霉,黑曲霉,数指青霉,扩张青霉,菌核盘菌和仙人掌疫霉的培养物和无细胞培养物滤液进行杀真菌测试。结果表明,所有测试菌株均通过产生可扩散的代谢物而对所有研究的真菌发挥抗真菌活性,这些代谢物与其产生细胞外水解酶的能力有关。所有菌株均显着降低了所研究真菌的生长,并且细菌细胞比细菌滤液具有更高的生物活性。所有测试的Bulkholderia菌株均产生挥发性有机化合物(VOC),这会抑制真菌的生长并降低尖孢镰刀菌和茄根丝菌的生长速率。对Bga 11096菌株释放的VOC的GC / MS分析表明,存在一种化合物,该化合物被鉴定为1-甲基-4-(1-甲基乙烯基)-环己烯,该液体烃被分类为环状萜烯。该化合物可能负责抗真菌活性,这也与其他作者的工作一致。

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