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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >The inhibitory mechanisms by mixtures of two endophytic bacterial strains isolated from Ginkgo biloba against pepper phytophthora blight
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The inhibitory mechanisms by mixtures of two endophytic bacterial strains isolated from Ginkgo biloba against pepper phytophthora blight

机译:银杏叶分离出的两种内生细菌菌株对辣椒疫病的抑制作用机理

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Two endophytic bacterial strains, Fy11 and Zy44 (Bacillus amyloliquefaciens), isolated from Ginkgo biloba leaves, were tested as a single application and in combination for their abilities to suppress pepper phytophthora blight under greenhouse conditions. When both strains were applied in a mixture, the disease severity was more reduced. The objective of this study was to find out the inhibitory mechanisms of synergistic activity against pepper phytophthora blight through a mixture of Fy11 + Zy44. Firstly, the colonization ability of the two endophytic bacterial strains was tested in pepper tissues. The result indicated that both endophytic strains were efficient colonizers of pepper, and could vertically transfer from roots to shoots and leaves. After inoculation for 7 days, the population densities of Fy11-gfp and Zy44-gfp were 24.7 x 10(3) CFU/g FW and 13.0 +/- 10(3) CFU/g FW in pepper roots, respectively. The cell counts of co-inoculated Fy11 + Zy44 were not significant different comparing to a single strain inter pepper tissues. Secondly, the direct antagonism of antifungal compounds produced by the endophytic bacteria were investigated against pepper phytophthora blight. The crude lipopeptides produced by strain Zy44 highly effectively reduced disease index, and the control efficacy reached 84.8% and 67.2% in 7 d and 15 d after inoculation with the pathogen, respectively. The control effect of the secondary metabolites produced by strain Fy11 was not obvious. In the end, the induced systemic resistance (ISR) mediated by strains Fy11 and Zy44 on pepper were further analysed using priming effect of the defense-related genes after pathogen challenge. The expressions of CaPR4 (Capsicum annuum pathogenesis-protein 4) and CaBGLU (C. annuum beta-1,3-glucanase) were strongly induced in the plants treated with strain Fy11 in 24 h after pathogen challenge, but CaPR4 and CaBGLU transcripts were not increased in the plants treated with strain Zy44. These results indicated that the mechanisms of additive effect through combined strains Zy44 and Fy11 might be due to direct antagonism of antifungal lipopeptides produced by strain Zy44, as well as indirect inhibition through ISR induced by strain Fy11. Therefore, the synergistic interactions were due to the summation of biocontrol mechanisms of both biocontrol agents. This work provides a theoretical explanation for our findings of reduced disease severity with a mixture of endophytic bacteria. (C) 2014 Published by Elsevier Inc.
机译:从银杏叶中分离出的两个内生细菌菌株Fy11和Zy44(解淀粉芽孢杆菌)作为单一应用进行了测试,并结合了它们在温室条件下抑制辣椒疫霉病的能力。当将两种菌株混合使用时,疾病的严重程度进一步降低。这项研究的目的是找出通过Fy11 + Zy44的混合物对辣椒疫霉菌的协同活性的抑制机制。首先,在辣椒组织中测试了两种内生细菌菌株的定殖能力。结果表明,这两种内生菌株都是辣椒的有效定居者,并且可以从根垂直转移到芽和叶。接种7天后,辣椒根中Fy11-gfp和Zy44-gfp的种群密度分别为24.7 x 10(3)CFU / g FW和13.0 +/- 10(3)CFU / g FW。与单个菌株间辣椒组织相比,共同接种的Fy11 + Zy44的细胞计数没有显着差异。其次,研究了由内生细菌产生的抗真菌化合物对辣椒疫病的直接拮抗作用。 Zy44菌株产生的粗脂肽能有效降低疾病指数,接种病原菌后7 d和15 d防治效果分别为84.8%和67.2%。 Fy11菌株产生的次级代谢产物的控制效果不明显。最后,利用病原体攻击后防御相关基因的启动作用,进一步分析了菌株Fy11和Zy44对辣椒的诱导的系统抗性(ISR)。在病原菌侵染后24小时,用Fy11菌株处理的植物强烈诱导了CaPR4(辣椒的发病机理蛋白4)和CaBGLU(C.annuumβ-1,3-葡聚糖酶)的表达,但没有表达CaPR4和CaBGLU转录本。在用Zy44菌株处理的植物中增加。这些结果表明,通过组合菌株Zy44和Fy11的加和作用机制可能是由于菌株Zy44产生的抗真菌脂肽的直接拮抗作用,以及由于菌株Fy11诱导的ISR的间接抑制。因此,协同相互作用是由于两种生物防治剂的生物防治机制的总和。这项工作为我们发现的内生细菌混合物降低疾病严重程度提供了理论解释。 (C)2014由Elsevier Inc.发行

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