4.5 Article

Optimization of the culture condition of Bacillus mucilaginous using Agaricus bisporus industrial wastewater by Plackett-Burman combined with Box-Behnken response surface method

期刊

AMB EXPRESS
卷 8, 期 -, 页码 -

出版社

SPRINGEROPEN
DOI: 10.1186/s13568-018-0671-7

关键词

Agaricus bisporus wastewater; Bacillus mucilaginous; Multispectral imaging flow cytometry; Plackett-Burman; Box-Behnken response surface

资金

  1. Natural Science Fund Project of Zhangzhou City [ZZ2017J19]
  2. key natural fund project of the university youth of Fujian province [JZ160454]
  3. Natural Science Fund Project of Fujian Province [2016J05083]
  4. Program for New Century Excellent Talents in Minnan Normal University [MX13004]

向作者/读者索取更多资源

In the present study, conditions for Bacillus mucilaginous fermentation using Agaricus bisporus wastewater as culture medium were optimized. We analyzed the total number of living B. mucilaginous in the fermentation broth using multispectral imaging flow cytometry. Single-factor experiments were carried out, where a Plackett-Burman design was used to screen out three factors from the original six factors of processing wastewater solubility, initial pH, inoculum size, liquid volume, culture temperature, and rotation speed that affected the total number of viable B. mucilaginous. The Box-Behnken response surface method was used to optimize interactions between the three main factors and predict optimal fermentation conditions. Factors significantly affecting the total number of viable B. mucilaginous, including shaking speed, culturing temperature, and initial pH, were investigated. The optimum conditions for B. mucilaginous fermentation in A. bisporus wastewater were a rotational speed of 195 rpm, culture temperature of 29 degrees C, initial pH of 6.5, solubility of 0.5%, 8% inoculation volume, and 90 mL liquid volume in a 250 mL flask, culture time of 48 h. Under these conditions, the concentration of total viable bacteria reached 2.16 +/- 0.02 x 10(8) Obj/mL, which meets the national standard. A. bisporus wastewater can be used for the cultivation of B. mucilaginous.

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