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首页> 外文期刊>World Journal of Microbiology & Biotechnology >Antagonistic activity and mechanism of an isolated Streptomyces corchorusii stain AUH-1 against phytopathogenic fungi
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Antagonistic activity and mechanism of an isolated Streptomyces corchorusii stain AUH-1 against phytopathogenic fungi

机译:抗植物致胰菌染色的拮抗活性和机制抗植物疗法真菌Auh-1

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The various diseases that occur during the growth of plants usually cause a significant reduction in production and quality of agricultural products. Actinomycetes, especially Streptomyces spp., become a valuable biological control resource due to their preponderant abilities to produce various secondary metabolites with novel structure and remarkable biological activity. The present work aimed to isolate an effective antagonistic actinomycete against various soilborne phytopathogenic fungi. By dual culture with Fusarium oxysporum f. sp. niveum, an antagonistic actinomycete named Streptomyces corchorusii stain AUH-1 was screened out from 26 soil samples. The in vitro bioassay results showed that S. corchorusii stain AUH-1 had a broad-spectrum antagonistic activity against a range of fungal plant pathogens, such as F. oxysporum f. sp. niveum, Phytophthora parasitica var. nicotianae, Rhizoctonia solani, P. capsica, Botryosphaeria dothidea, F. oxysporum f. sp. vasinfectum, Verticillium dahliae, and F. oxysporum f. sp. cucumerinum. According to the morphological observations in scanning electron microscopy (SEM) and fluorescence microscope (FM), it was found that the cell membranes of F. oxysporum f. sp. niveum were damaged when treated with the antifungal metabolite form S. corchorusii stain AUH-1. Meanwhile, the dropped ergosterol formation and increased malondialdehyde levels further confirmed that S. corchorusii strain AUH-1 exerted its antagonistic activity against F. oxysporum f. sp. niveum via damaging the structure and function of cell membranes. In conclusion, S. corchorusii strain AUH-1 showed a promising prospect for the development of biological agent, especially due to its broad-spectrum and effective antagonist on various soil-borne plant pathogens.
机译:在植物生长期间发生的各种疾病通常会导致农产品的生产和质量显着降低。放线菌,特别是链霉菌SPP。,由于其优势能力,成为生产各种次生代谢物的优势能力,具有新的结构和显着的生物活性。目前的作品旨在将有效拮抗的放线菌与各种植物植物生成真菌分离出来。用镰刀菌的双重培养物。 SP。 Niveum,从26种土样品中筛选出一种名为Stephoromyces Corchorusii染色Auh-1的拮抗放放菌。体外的生物测定结果表明,S. corchorusii染色Auh-1对一系列真菌植物病原体具有广谱拮抗活性,例如oxysporum f。 SP。 Niveum,Phytophthora parasitica var。尼古利亚人,Rhizoctonia solani,P. Capsica,Botryosphaeria Dothidea,F. oxysporum f。 SP。 Vasinfectum,Verticillium dahliae和F. oxysporum f。 SP。 cucumerinum。根据扫描电子显微镜(SEM)和荧光显微镜(FM)的形态学观察,发现F. oxysporum f的细胞膜。 SP。用抗真菌代谢物形式S. Corchorusii染色AuH-1处理时,赤裸损坏。同时,进一步证实了替代的Ergosterol形成和丙二醛水平的增加,S. corchorusii菌株Auh-1对F. oxysporum f的拮抗活性施加。 SP。 Niveum通过损坏细胞膜的结构和功能。总之,S. corchorusii菌株Auh-1显示了生物试剂的发展前景,特别是由于其在各种土壤传播植物病原体上的广谱和有效拮抗剂。

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