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Medium optimization for production of antifungal active substances from antagonistic Brevibacillus laterosporus and its antifungal activity analysis

机译:拮抗芽孢短杆菌产生抗真菌活性物质的培养基优化及其抗真菌活性分析

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摘要

The antagonist bacterium?Brevibacillus laterosporus?ZQ2 with broad-spectrum antifungal activity was isolated from an apple rhizosphere at Mount Tai in China. The fermentation medium for the production of antifungal substances from ZQ2 was statistically optimized. In one-factor-at-a-time experiments, five components, including carbon sources, nitrogen sources, and inorganic salt, were selected. Two factors were determined as critical based on the Plackett-Burman design. Steepest ascent experiments were then used to determine the design space containing the optimum point, followed by application of the response surface methodology. A quadratic model fitting the actual production was established using a central composite design. The obtained optimum medium for the antifungal substances production consisted of the following (in g/L): glucose, 15.6; soybean meal, 8.2; starch, 20; ammonium sulfate, 2; and monopotassium phosphate, 1. Furthermore, the inhibition rate of the substances against?Rhizoctonia solani?increased by more than 132% compared with the control.?B. laterosporus?ZQ2 strongly inhibited the growth of many apple phytopathogens?in vitro. The inhibition rates against different fungi ranged from 55.26 to 79.02%. As well, the strain significantly reduced the disease damage caused by?R. solani?in the?in vivo?tests. Maximum disease protection (46.89%) was recorded when the bacterium applied 3 days?before pathogen inoculation.
机译:从中国泰山的苹果根际中分离出具有广谱抗真菌活性的拮抗细菌-枯草芽孢杆菌-ZQ2。统计优化从ZQ2生产抗真菌物质的发酵培养基。在一次一因素实验中,选择了五种成分,包括碳源,氮源和无机盐。根据Plackett-Burman设计,确定了两个关键因素。然后使用最陡峭的上升实验来确定包含最佳点的设计空间,然后应用响应面方法。使用中央复合设计建立了适合实际生产的二次模型。所获得的用于生产抗真菌物质的最佳培养基包括以下物质(以g / L计):葡萄糖,15.6;豆粕8.2;淀粉20;硫酸铵2; 1,此外,与对照相比,该物质对茄红枯萎病的抑制率提高了132%以上。红孢菌ZQ2在体外强烈抑制许多苹果植物病原体的生长。对不同真菌的抑制率在55.26%至79.02%之间。同样,该菌株显着减少了由ΔR引起的疾病损害。 solani在体内测试中。病原菌接种前3天施用细菌时,记录到最大的疾病防护(46.89%)。

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