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首页> 外文期刊>Mycobiology >Isolation and Identification of Antifungal Compounds from Bacillus subtilis C9 Inhibiting the Growth of Plant Pathogenic Fungi.
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Isolation and Identification of Antifungal Compounds from Bacillus subtilis C9 Inhibiting the Growth of Plant Pathogenic Fungi.

机译:枯草芽孢杆菌C9抑制植物病原真菌生长的抗真菌化合物的分离与鉴定。

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摘要

Antagonistic microorganisms against Rhizoctonia solani were isolated and their antifungal activities were investigated. Two hundred sixteen bacterial isolates were isolated from various soil samples and 19 isolates were found to antagonize the selected plant pathogenic fungi with varying degrees. Among them, isolate C9 was selected as an antagonistic microorganism with potential for use in further studies. Treatment with the selected isolate C9 resulted in significantly reduced incidence of stem-segment colonization by R. solani AG2-2(IV) in Zoysia grass and enhanced growth of grass. Through its biochemical, physiological, and 16S rDNA characteristics, the selected bacterium was identified as Bacillus subtilis subsp. subtilis. Mannitol (1%) and soytone (1%) were found to be the best carbon and nitrogen sources, respectively, for use in antibiotic production. An antibiotic compound, designated as DG4, was separated and purified from ethyl acetate extract of the culture broth of isolate C9. On the basis of spectral data, including proton nuclear magneric resonance ((1)H NMR), carbon nuclear magneric resonance ((13)C NMR), and mass analyses, its chemical structure was established as a stereoisomer of acetylbutanediol. Application of the ethyl acetate extract of isolate C9 to several plant pathogens resulted in dose-dependent inhibition. Treatment with the purified compound (an isomer of acetylbuanediol) resulted in significantly inhibited growth of tested pathogens. The cell free culture supernatant of isolate C9 showed a chitinase effect on chitin medium. Results from the present study demonstrated the significant potential of the purified compound from isolate C9 for use as a biocontrol agent as well as a plant growth promoter with the ability to trigger induced systemic resistance of plants.
机译:分离了针对茄枯萎病的拮抗微生物,并研究了它们的抗真菌活性。从各种土壤样品中分离出216种细菌分离物,发现19种分离物在不同程度上拮抗所选的植物病原真菌。其中,分离株C9被选为拮抗微生物,具有进一步研究的潜力。用选定的分离株C9处理可显着降低结缕草中茄红假单胞菌AG2-2(IV)引起的茎节定植的发生率,并增强草的生长。通过其生化,生理和16S rDNA特性,选定的细菌被鉴定为枯草芽孢杆菌亚种。枯草杆菌。发现甘露醇(1%)和大豆(1%)分别是用于生产抗生素的最佳碳和氮源。从分离物C9的培养液的乙酸乙酯提取物中分离并纯化了命名为DG4的抗生素化合物。根据包括质子核磁共振((1H)NMR),碳核磁共振((13)C NMR)和质量分析在内的光谱数据,确定其化学结构为乙酰丁二醇的立体异构体。将分离物C9的乙酸乙酯提取物应用于几种植物病原体导致剂量依赖性抑制。用纯化的化合物(乙酰丁二醇的异构体)处理可显着抑制被测病原体的生长。分离物C9的无细胞培养上清液对几丁质培养基显示几丁质酶作用。来自本研究的结果表明,从分离物C9中纯化的化合物可用作生物防治剂以及具有触发植物诱导的系统抗性能力的植物生长促进剂的巨大潜力。

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