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采用Plackett-Burman设计实验结合响应面法优化BHZ-29的发酵培养基和生长条件。

Optimization of the fermentation media and growth conditions of BHZ-29 using a Plackett-Burman design experiment combined with response surface methodology.

作者信息

Shi YingWu, Niu XinXiang, Yang HongMei, Chu Ming, Wang Ning, Bao HuiFang, Zhan FaQiang, Yang Rong, Lou Kai

机构信息

Institute of Microbiology, Xinjiang Academy of Agricultural Sciences, Ürümqi, China.

Xinjiang Laboratory of Special Environmental Microbiology, Ürümqi, China.

出版信息

Front Microbiol. 2024 Apr 22;15:1355369. doi: 10.3389/fmicb.2024.1355369. eCollection 2024.

Abstract

INTRODUCTION

occurs extensively in the soil environment. It produces a range of antimicrobial compounds that play an important role in the field of biological control. However, during the actual application process it is often affected by factors such as the medium formulation and fermentation conditions, and therefore biocontrol measures often do not achieve their expected outcomes.

METHODS

In this study, the BHZ-29 strain was used as the research object. The carbon and nitrogen sources, and inorganic salts that affect the number of viable bacteria and antibacterial potency of BHZ-29, were screened by a single factor test. A Plackett-Burman design experiment was conducted to determine the significant factors affecting the number of viable bacteria and antibacterial potency, and a Box-Behnken design experiment was used to obtain the optimal growth of BHZ-29. The medium formula that produced the highest number of viable bacteria and most antibacterial substances was determined. The initial pH, temperature, amount of inoculant, liquid volume, shaking speed, and culture time were determined by a single factor test. The factors that had a significant influence on the number of viable bacteria of BHZ-29 were selected by an orthogonal test. A Box-Behnken design experiment was conducted to obtain the optimal fermentation conditions, and highest number of viable bacteria and antibacterial titer.

RESULTS

Molasses, peptone, and magnesium sulfate had significant effects on the viable count and antibacterial titer of BHZ-29. The viable count of BHZ-29 increased from 7.83 × 10 to 2.17 × 10 CFU/mL, and the antibacterial titer increased from 111.67 to 153.13 mm/mL when the optimal media were used. The optimal fermentation conditions for BHZ-29 were as follows: temperature 25.57°C, pH 7.23, culture time 95.90 h, rotation speed 160 rpm, amount of inoculant 2%, and liquid volume 100 ml. After the optimization of fermentation conditions, the number of viable bacteria increased to 3.39 × 10 CFU/mL, and the bacteriostatic titer increased to 158.85 mm/ml.The plant height and leaf number of cotton plants treated with BHZ-29 fermentation broth were higher than those of cotton inoculated with . The number of bacteria was 1.15 × 10 CFU/g, and the number of fungi was 1.60 × 10 spores/g. The disease index of the cotton seedlings treated with the optimized fermentation broth was 2.2, and a control effect of 93.8% was achieved. BHZ-29 could reduce the disease index of cotton wilt and had a controlling effect on the disease. The best effect was achieved in the treatment group with an inoculation concentration of 2 × 10 CFU/ml, the disease index was 14.50, and a control effect of 84.18% was achieved.

DISCUSSION

The fermentation process parameters of the number of viable bacteria and antibacterial titer by strain BHZ-29 were optimized to lay a foundation for the practical production and application of strain BHZ-29 in agriculture.

摘要

引言

广泛存在于土壤环境中。它能产生一系列抗菌化合物,在生物防治领域发挥着重要作用。然而,在实际应用过程中,它常受培养基配方和发酵条件等因素影响,因此生物防治措施往往无法达到预期效果。

方法

本研究以BHZ - 29菌株为研究对象。通过单因素试验筛选影响BHZ - 29活菌数和抗菌效力的碳源、氮源及无机盐。进行Plackett - Burman设计试验以确定影响活菌数和抗菌效力的显著因素,并采用Box - Behnken设计试验获得BHZ - 29的最佳生长条件。确定产生最高活菌数和最多抗菌物质的培养基配方。通过单因素试验确定初始pH、温度、接种量、液体体积、摇床转速和培养时间。通过正交试验筛选对BHZ - 29活菌数有显著影响的因素。进行Box - Behnken设计试验以获得最佳发酵条件、最高活菌数和抗菌效价。

结果

糖蜜、蛋白胨和硫酸镁对BHZ - 29的活菌计数和抗菌效价有显著影响。使用优化培养基时,BHZ - 29的活菌计数从7.83×10增加到2.17×10 CFU/mL,抗菌效价从111.67增加到153.13 mm/mL。BHZ - 29的最佳发酵条件如下:温度25.57°C,pH 7.23,培养时间95.90 h,转速160 rpm,接种量2%,液体体积100 ml。发酵条件优化后,活菌数增加到3.39×10 CFU/mL,抑菌效价增加到158.85 mm/ml。用BHZ - 29发酵液处理的棉花植株的株高和叶片数高于接种[未提及的某种菌]的棉花。细菌数为1.15×10 CFU/g,真菌数为1.60×10孢子/g。用优化发酵液处理的棉苗病情指数为2.2,防治效果达93.8%。BHZ - 29可降低棉花枯萎病的病情指数,对该病有防治作用。接种浓度为2×10 CFU/ml的处理组效果最佳,病情指数为14.50,防治效果达84.18%。

讨论

对BHZ - 29菌株的活菌数和抗菌效价的发酵工艺参数进行优化,为BHZ - 29菌株在农业中的实际生产和应用奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d1f/11071168/b797459bc453/fmicb-15-1355369-g001.jpg

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