首页> 外文期刊>Revista Argentina de Microbiologia >Efficacy of epiphytic bacteria to prevent northern leaf blight caused by Exserohilum turcicum in maize
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Efficacy of epiphytic bacteria to prevent northern leaf blight caused by Exserohilum turcicum in maize

机译:附生细菌预防玉米 Turserohilum turcicum 引起的北方叶枯病的功效

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Eight potential biological control agents (BCAs) were evaluated in planta in order to assess their effectiveness in reducing disease severity of northern leaf blight caused by Exserohilum turcicum . The assay was carried out in greenhouse. Twenty-six-day-old plants, V4 phenological stage, were inoculated with antagonists by foliar spray. Only one biocontrol agent was used per treatment. Ten days after this procedure, all treatments were inoculated with E. turcicum by foliar application. Treatments performed were: C-Et: control of E. turcicum ; T1: isolate 1 ( Enterococcus genus) + E. turcicum ; T2: isolate 2 ( Corynebacterium genus) + E. turcicum ; T3: isolate 3 ( Pantoea genus) + E. turcicum ; T4: isolate 4 ( Corynebacterium genus) + E. turcicum ; T5: isolate 5 ( Pantoea genus) + E. turcicum ; T6: isolate 6 ( Bacillus genus) + E. turcicum ; T7: isolate 7 ( Bacillus genus) + E. turcicum ; T8: isolate 8 ( Bacillus genus) + E. turcicum . Monitoring of antagonists on the phyllosphere was performed at different times. Furthermore, the percentage of infected leaves and, plant and leaf incidence were determined. Foliar application of different bacteria significantly reduced the leaf blight between 30–78% and 39–56% at 20 and 39 days respectively. It was observed that in the V10 stage of maize plants, isolate 8 ( Bacillus spp.) caused the greatest effect on reducing the severity of northern leaf blight. Moreover, isolate 8 was the potential BCA that showed more stability in the phyllosphere. At 39 days, all potential biocontrol agents had a significant effect on controlling the disease caused by E. turcicum .
机译:在植物中评估了八种潜在的生物防治剂(BCA),以评估其在降低由Exererohilum turcicum引起的北部叶枯病病害严重程度方面的有效性。该测定在温室中进行。 V4物候期为2​​6天的植物,通过叶面喷雾接种拮抗剂。每次处理仅使用一种生物防治剂。该手术后十天,通过叶面接种将所有处理剂都接种黑麦草。进行的治疗是:C-Et:防治斜纹夜蛾; T1:分离株1(肠球菌属)+ E. turcicum; T2:分离株2(棒状杆菌属)+大肠杆菌。 T3:分离株3(泛菌属)+ E.turcicum; T4:分离株4(棒状杆菌属)+大肠杆菌。 T5:分离株5(泛菌属)+ E.turcicum; T6:分离株6(芽孢杆菌属)+大肠杆菌。 T7:分离株7(芽孢杆菌属)+大肠杆菌。 T8:分离株8(芽孢杆菌属)+ E.turcicum。在不同时间对叶球上的拮抗剂进行监测。此外,确定了感染叶片的百分比以及植物和叶片的发生率。叶面施用不同细菌可分别在20天和39天将叶枯病分别降低30-78%和39-56%。观察到,在玉米植物的V10阶段,分离株8(芽孢杆菌)对降低北方叶枯病的严重程度影响最大。此外,分离株8是潜在的BCA,其在叶球体内显示出更高的稳定性。在第39天,所有潜在的生物防治剂对控制由turcicum引起的疾病均具有显著作用。

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