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Isolation, identification and characterization of Streptomyces metabolites as a potential bioherbicide

机译:链霉菌代谢产物作为潜在的生物除草剂的分离,鉴定和表征

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摘要

Bioactive herbicidal compounds produced by soil microorganisms might be used to creating a bioherbicide for biological weed control. A total of 1,300 bacterial strains were isolated and screened for herbicidal activity against grass and broadleaf weeds. Among primarily selected 102 strains, the herbicidal activity of bacterial fermentation broths from the following three isolates strain-101, strain-128, and strain-329 reduced the growth of D. sanguinalis by 66.7%, 78.3%, and 100%, respectively as compared with control. Phylogenetic analysis of 16S rRNA gene sequencing determined that the strain-329 has 99% similarity to Streptomyces anulatus (HBUM 174206). The potential bioherbicidal efficacy of Streptomyces strain-329 was tested on grass and broadleaf weeds for phytotoxic activity through pre- and post-emergence applications. At pre-emergence application, the phytotoxic efficacy to D. sanguinalis and S. bicolor on seed germination were 90.4% and 81.3%, respectively at the 2x concentration, whereas in the case of Solanum nigrum, 85.2% phytotoxic efficacy was observed at the 4x concentration. The efficacy of Streptomyces strain-329 was substantially higher at post-emergence application, presenting 100% control of grass and broadleaf weeds at the 1x concentration. Two herbicidal compounds coded as 329-C1 and 329-C3 were extracted and purified by column chromatography and high-performance liquid chromatography methods. The active compound 329-C3 slightly increased leaf electrolytic leakage and MDA production as concentration-dependent manner. These results suggest that new Streptomyces sp. strain-329 produced bioherbicidal metabolites and may provide a new lead molecule for production an efficient bioherbicide to regulate grass and broadleaf weeds.
机译:由土壤微生物产生的具有生物活性的除草化合物可用于生产用于生物除草的生物除草剂。总共分离出1300个细菌菌株,并针对草和阔叶杂草筛选除草活性。在最初选择的102个菌株中,来自以下三个分离菌株101-,128-和329菌株的细菌发酵液的除草活性分别使D. sanguinalis的生长分别降低了66.7%,78.3%和100%。与对照相比。通过对16S rRNA基因测序的系统进化分析,确定329型菌株与无烟链霉菌(Streptomyces anulatus)(HBUM 174206)有99%的相似性。通过出苗前和出苗后的应用,在草和阔叶杂草上测试了链霉菌329菌株的潜在生物除草功效。出苗前施用时,浓度为2x时,对血缘D. sanguinalis和双色链霉菌的植物毒性效果分别为90.4%和81.3%,而对于茄茄,在4x时观察到85.2%的植物毒性效果。浓度。在出苗后施用时,链霉菌329菌株的功效显着更高,在1x浓度下可100%控制草和阔叶杂草。通过柱色谱法和高效液相色谱法提取并纯化了两种编码为329-C1和329-C3的除草化合物。活性化合物329-C3以浓度依赖的方式略微增加了叶片的电解泄漏和MDA的产生。这些结果表明,新的链霉菌。菌株329产生了生物除草剂代谢物,并可能为生产有效的生物除草剂提供新的先导分子,以调节草和阔叶杂草。

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