Antifungal Properties of Streptomyces bacillaris S8 for Biological Control Applications

Da-Ran Kim, Changwook Jeon, Youn-Sig Kwak
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Abstract

Soybean (Glycine max), a crucial global crop, experiences yearly yield reduction due to diseases such as anthracnose (Colletotrichum truncatum) and root rot (Fusarium spp.). The use of fungicides, which have traditionally been employed to control these phytopathogens, is now facing challenges due to the emergence of fungicide-resistant strains. Streptomyces bacillaris S8 strain S8 is previously known to produce valinomycin t through a nonribosomal peptide synthetase (NRPS) pathway. The objective of this study was to evaluate the antifungal activity of S. bacillaris S8 against C. truncatum and Fusarium sp., assessing its efficacy against soybean pathogens. The results indicate that strain S8 effectively controlled both above-ground and underground soybean diseases, using the NRPS and NRPS-related compound, suggesting its potential as a biological control in plant-microbe interactions. These findings underscore the pivotal role of the stain S8 in fostering healthy soybean microbial communities and emphasize the significance of microbiota structure studies in unveiling potent biocontrol agents.
用于生物防治的链霉菌 S8 的抗真菌特性
大豆(Glycine max)是一种重要的全球作物,每年都会因炭疽病(Colletotrichum truncatum)和根腐病(Fusarium spp.)等病害而减产。由于出现了对杀真菌剂产生抗药性的菌株,传统上用来控制这些植物病原体的杀真菌剂的使用正面临着挑战。先前已知巴氏链霉菌 S8 菌株 S8 可通过非核糖体肽合成酶(NRPS)途径产生缬氨霉素 t。本研究旨在评估 S. bacillaris S8 菌株对 C. truncatum 和 Fusarium sp.结果表明,菌株 S8 利用 NRPS 和 NRPS 相关化合物有效控制了大豆地上和地下病害,这表明它在植物与微生物相互作用中具有生物防治潜力。这些发现强调了 S8 菌株在培育健康的大豆微生物群落中的关键作用,并强调了微生物群结构研究在揭示强效生物防治剂方面的重要意义。
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