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  • 标题:Production of Agaricus bisporus (JE Lange) ImbachBiomass under Submerged Cultivation by UsingCitrus reticulata Blanco Waste as an AlternativeCarbon Source
  • 本地全文:下载
  • 作者:Thomas M. Schmidt ; Michele Hoeltz ; Ana P. Müller
  • 期刊名称:Current Journal of Applied Science and Technology
  • 印刷版ISSN:2457-1024
  • 出版年度:2018
  • 卷号:25
  • 期号:1
  • 页码:1-11
  • 语种:English
  • 出版社:Sciencedomain International
  • 摘要:Aims: To evaluate the influence of different parameters in the biomass production of Agaricus bisporus by submerged cultivation using Citrus reticulata B. waste as an alternative carbon source.Place and Duration of Study: University of Santa Cruz do Sul.Methodology: Fruit juice was extracted from the C. reticulata B. waste in a manual juicer. To determine the initial available amount of glucose and fructose in the liquid extract, high-performance liquid chromatography analysis was used. Temperature, pH and fermentation time were selected for the study of response surface methodology in a central composite design. Pectinolytic activity, reducing sugars and total proteins were used for bioprocess monitoring, and visible molecular absorption spectroscopy was used as the monitoring method.Results: The highest amount of biomass was (47.06 g/L) obtained at 28°C, a pH of 6 and 8 days of culture. The application FT-IR spectroscopy associated with partial least squares regression enabled simultaneous quantification of the parameters of submerged cultivation, with a root mean square error prediction and a coefficient of determination of 0.0012 U/L and 0.9760, 0.23 mmol/L and 0.9956, and 0.03 g/d/L and 0.9957, respectively.Conclusion: This is the first work that has monitored the biomass production of A. bisporus through FT-IR using the response surface methodology. The data showed that the liquid extract from C. reticulata B. waste is an excellent source of carbon for the mycelial production of A. bisporus and this may be an interesting alternative use of this residue.
  • 关键词:Mandarin;edible mushroom;mycelium;response surface methodology;bioconversion;FT-IR
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