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Biocontrol Potential of Streptomyces hydrogenans Strain DH16 toward Alternaria brassicicola to Control Damping Off and Black Leaf Spot of Raphanus sativus

机译:氢链霉菌DH16菌株对黄铜链格孢的生物控制潜力以控制萝卜的阻尼和黑斑病

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摘要

Biocontrol agents and their bioactive metabolites provide one of the best alternatives to decrease the use of chemical pesticides. In light of this, the present investigation reports the biocontrol potential of Streptomyces hydrogenans DH16 and its metabolites towards Alternaria brassicicola, causal agent of black leaf spot and damping off of seedlings of crucifers. In vitro antibiosis of strain against pathogen revealed complete suppression of mycelial growth of pathogen, grown in potato dextrose broth supplemented with culture supernatant (20% v/v) of S. hydrogenans DH16. Microscopic examination of the fungal growth showed severe morphological abnormalities in the mycelium caused by antifungal metabolites. In vivo studies showed the efficacy of streptomycete cells and culture supernatant as seed dressings to control damping off of Raphanus sativus seedlings. Treatment of pathogen infested seeds with culture supernatant (10%) and streptomycete cells significantly improved seed germination (75–80%) and vigor index (1167–1538). Furthermore, potential of cells and culture supernatant as foliar treatment to control black leaf spot was also evaluated. Clearly visible symptoms of disease were observed in the control plants with 66.81% disease incidence and retarded growth of root system. However, disease incidence reduced to 6.78 and 1.47% in plants treated with antagonist and its metabolites, respectively. Additionally, treatment of seeds and plants with streptomycete stimulated various growth traits of plants over uninoculated control plants in the absence of pathogen challenge. These results indicate that S. hydrogenans and its culture metabolites can be developed as biofungicides as seed dressings to control seed borne pathogens, and as sprays to control black leaf spot of crucifers.
机译:生物防治剂及其生物活性代谢物是减少化学农药使用的最佳替代品之一。鉴于此,本研究报告了氢链霉菌DH16及其代谢物对芸苔念珠菌,黑叶斑病的致病因子和抑制十字花科植物幼苗的生化潜力。菌株对病原体的体外抗菌作用表明,完全抑制了病原体的菌丝体生长,该菌体在补充了S.hydroans DH16培养上清液(20%v / v)的马铃薯葡萄糖肉汤中生长。镜检真菌生长表明,抗真菌代谢物引起的菌丝体形态严重异常。体内研究表明,链霉菌细胞和培养物上清液作为拌种剂能有效控制番茄萝卜幼苗的脱落。用培养上清液(10%)和链霉菌细胞处理病原体侵染的种子可以显着改善种子发芽(75–80%)和活力指数(1167–1538)。此外,还评估了细胞和培养上清液作为叶面处理以控制黑叶斑的潜力。在对照植物中观察到明显可见的病害症状,病害发生率为66.81%,根系生长受阻。但是,用拮抗剂及其代谢物处理过的植物的发病率分别降低到6.78和1.47%。另外,在没有病原体攻击的情况下,用链霉菌素处理种子和植物比未接种的对照植物刺激了植物的各种生长特性。这些结果表明,氢链霉菌及其培养物可作为生物杀真菌剂开发为控制种子传播病原体的拌种剂,并作为控制十字花科黑叶斑的喷雾剂。

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