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Optimization of Cultural Conditions for Bacillus megaterium Cultured in Agaricus bisporus Industrial Wastewater

The aim of this study was to optimize the cultural conditions for Bacillus megaterium using Agaricus bisporus industrial wastewater as nature culture through response surface methodology. In our present study, we analyzed the total number of living B. megaterium in the fermentation broth using multi...

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Detalles Bibliográficos
Autores principales: Huang, Jiafu, Zhang, Danfeng, Ou, Yixin, Zhang, Guoguang, Zheng, Linhua, Lin, Lizhuan, Ye, Xiaomei, Zhu, Xiaofeng, Pan, Yutian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6327248/
https://www.ncbi.nlm.nih.gov/pubmed/30687758
http://dx.doi.org/10.1155/2018/8106245
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author Huang, Jiafu
Zhang, Danfeng
Ou, Yixin
Zhang, Guoguang
Zheng, Linhua
Lin, Lizhuan
Ye, Xiaomei
Zhu, Xiaofeng
Pan, Yutian
author_facet Huang, Jiafu
Zhang, Danfeng
Ou, Yixin
Zhang, Guoguang
Zheng, Linhua
Lin, Lizhuan
Ye, Xiaomei
Zhu, Xiaofeng
Pan, Yutian
author_sort Huang, Jiafu
collection PubMed
description The aim of this study was to optimize the cultural conditions for Bacillus megaterium using Agaricus bisporus industrial wastewater as nature culture through response surface methodology. In our present study, we analyzed the total number of living B. megaterium in the fermentation broth using multispectral imaging flow cytometry. Plackett-Burman design was applied to evaluate the effects of six variables, namely, initial pH, industrial wastewater solubility, rotating speed, culture temperature, inoculum size, and loading volume. Loading volume, initial pH, and culture temperature were found to influence the biomass of B. megaterium significantly and were further optimized by Box-Behnken design. After verification test, the optimum fermentation conditions of B. megaterium using the A. bisporus processing wastewater as nature culture media were obtained as follows: initial pH of 7.4, culture temperature of 25°C, loading volume of 40 mL/250 mL, culture time of 24 h, industrial wastewater solubility of 1%, rotating speed of 200 rpm, and inoculum size of 8%. The predicted optimum model's value was 8.88 × 10(8) Obj/mL and the average experimental value was 9.03 ± 0.02 × 10(8) Obj/mL, which met the national microbial fertilizers' standard. Furthermore, the field experiment results showed that the fermentation broth of B. megaterium could significantly improve the yield of Spinacia oleracea L.
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spelling pubmed-63272482019-01-27 Optimization of Cultural Conditions for Bacillus megaterium Cultured in Agaricus bisporus Industrial Wastewater Huang, Jiafu Zhang, Danfeng Ou, Yixin Zhang, Guoguang Zheng, Linhua Lin, Lizhuan Ye, Xiaomei Zhu, Xiaofeng Pan, Yutian Biomed Res Int Research Article The aim of this study was to optimize the cultural conditions for Bacillus megaterium using Agaricus bisporus industrial wastewater as nature culture through response surface methodology. In our present study, we analyzed the total number of living B. megaterium in the fermentation broth using multispectral imaging flow cytometry. Plackett-Burman design was applied to evaluate the effects of six variables, namely, initial pH, industrial wastewater solubility, rotating speed, culture temperature, inoculum size, and loading volume. Loading volume, initial pH, and culture temperature were found to influence the biomass of B. megaterium significantly and were further optimized by Box-Behnken design. After verification test, the optimum fermentation conditions of B. megaterium using the A. bisporus processing wastewater as nature culture media were obtained as follows: initial pH of 7.4, culture temperature of 25°C, loading volume of 40 mL/250 mL, culture time of 24 h, industrial wastewater solubility of 1%, rotating speed of 200 rpm, and inoculum size of 8%. The predicted optimum model's value was 8.88 × 10(8) Obj/mL and the average experimental value was 9.03 ± 0.02 × 10(8) Obj/mL, which met the national microbial fertilizers' standard. Furthermore, the field experiment results showed that the fermentation broth of B. megaterium could significantly improve the yield of Spinacia oleracea L. Hindawi 2018-12-26 /pmc/articles/PMC6327248/ /pubmed/30687758 http://dx.doi.org/10.1155/2018/8106245 Text en Copyright © 2018 Jiafu Huang et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Huang, Jiafu
Zhang, Danfeng
Ou, Yixin
Zhang, Guoguang
Zheng, Linhua
Lin, Lizhuan
Ye, Xiaomei
Zhu, Xiaofeng
Pan, Yutian
Optimization of Cultural Conditions for Bacillus megaterium Cultured in Agaricus bisporus Industrial Wastewater
title Optimization of Cultural Conditions for Bacillus megaterium Cultured in Agaricus bisporus Industrial Wastewater
title_full Optimization of Cultural Conditions for Bacillus megaterium Cultured in Agaricus bisporus Industrial Wastewater
title_fullStr Optimization of Cultural Conditions for Bacillus megaterium Cultured in Agaricus bisporus Industrial Wastewater
title_full_unstemmed Optimization of Cultural Conditions for Bacillus megaterium Cultured in Agaricus bisporus Industrial Wastewater
title_short Optimization of Cultural Conditions for Bacillus megaterium Cultured in Agaricus bisporus Industrial Wastewater
title_sort optimization of cultural conditions for bacillus megaterium cultured in agaricus bisporus industrial wastewater
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6327248/
https://www.ncbi.nlm.nih.gov/pubmed/30687758
http://dx.doi.org/10.1155/2018/8106245
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