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利用双孢蘑菇工业废水生产蜡状芽孢杆菌液肥。

Bacillus cereus liquid fertilizer was produced from Agaricus bisporus industrial wastewater.

机构信息

Engineering Technological Center of Mushroom Industry, Minnan Normal University, Zhangzhou, Fujian, 363000, China; Collaborative Innovation Center of Mushroom Health Industry, Minnan Normal University, Zhangzhou, Fujian, 363000, China; School of Life Sciences & Biotechnology College, Minnan Normal University, Zhangzhou, Fujian, 363000, China.

Zhangzhou No.3 Middle School, Zhangzhou, Fujian, 363000, China.

出版信息

J Biotechnol. 2021 Feb 10;327:74-85. doi: 10.1016/j.jbiotec.2021.01.001. Epub 2021 Jan 10.

Abstract

During the Agaricus bisporus canning processes, a large number of water-soluble elements were dissolved into the processing hot water. This study was conducted to use the industrial wastewater of A. bisporus to prepare agricultural microbial fertilizer. In the work, the influence of 6 different liquid fermentation factors on the total biomass of living Bacillus cereus was evaluated with the one-factor-at-a-time method and the Plackett-Burman design. The total biomass of living B. cereus was most influenced by fermentation temperature, shaking speed, and inoculation volume, which were identified as the most critical independent variables for the B. cereus biomass. The approximate ranges of optimal fermentation conditions for the three key factors were identified by the path of steepest ascent. The center point of these factors were 24 ℃ of temperature, 250 rpm of shaking speed and 12 % inoculum amount, respectively. The Box-Behnken design was applied to derive a statistical model for optimizing the three fermentation factors for B. cereus biomass. After further optimizations based on statistical predictions, the optimum fermentation parameters for B. cereus cultured in the A. bisporus industrial wastewater were fermentation temperature of 24.8 °C, shaking speed of 234 rpm, inoculum dose of 12.2 % (v:v, %), industrial wastewater concentration of 4%, initial pH values of 6.5, loading liquid of 60 mL/250 mL, and culture time of 24 h. Culturing with the optimal fermentation conditions resulted in the biomass of B. cereus of 1.35 ± 0.02 × 10 Obj/mL (N = 3), which was consistent with the predicted values (1.32 × 10 Obj/mL) predicted by the corresponding regression models (p < 0.05), and more, was also far higher than that of the standard of agricultural bacterial fertilizers in People's Republic of China. Further, the results of field trial indicated that the of B. cereus liquid fertilizer can remarkably enhance the yield of Brassica chinensis L. It is practicable to make use of the industrial wastewater of A. bisporus to prepare the microbial fertilizer.

摘要

在双孢蘑菇罐头加工过程中,大量水溶性元素溶解在加工热水中。本研究旨在利用双孢蘑菇工业废水制备农业微生物肥料。在工作中,采用单因素法和 Plackett-Burman 设计评估了 6 种不同液体发酵因素对活蜡状芽孢杆菌总生物量的影响。活蜡状芽孢杆菌的总生物量受发酵温度、摇床转速和接种量的影响最大,这三个因素被确定为蜡状芽孢杆菌生物量的最关键独立变量。通过最陡爬坡路径确定了这三个关键因素最佳发酵条件的近似范围。这些因素的中心点分别为温度 24℃、摇床转速 250rpm 和接种量 12%。采用 Box-Behnken 设计得出优化蜡状芽孢杆菌生物量的三个发酵因素的统计模型。根据统计预测进行进一步优化后,在双孢蘑菇工业废水中培养蜡状芽孢杆菌的最佳发酵参数为发酵温度 24.8℃、摇床转速 234rpm、接种量 12.2%(v:v,%)、工业废水浓度 4%、初始 pH 值 6.5、装液量 60mL/250mL、培养时间 24h。在最佳发酵条件下培养,蜡状芽孢杆菌的生物量为 1.35±0.02×10 Obj/mL(N=3),与预测值(1.32×10 Obj/mL)和相应回归模型预测值(p<0.05)一致,且远高于中国农业细菌肥料标准。此外,田间试验结果表明,蜡状芽孢杆菌液体肥料能显著提高小白菜的产量。利用双孢蘑菇工业废水制备微生物肥料是可行的。

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