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Production of lignocellulolytic enzymes from three white-rot fungi by solid-state fermentation and mathematical modeling

机译:通过固态发酵和数学建模从三种白腐真菌生产木质纤维素酶

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Three species of white rot-fungi (Pleurotus ostreatus, Coriolus versicolor, and Lentinula edodes) were grown on 12 solid media based on several lignocellulosic materials (oak sawdust, coconut husks, coffee husks and corn bran) during 49 days. The media had varied carbonitrogen ratios and CuSO4 content. The objective of the work was to evaluate the effect of the media formulation on the production of lignocellulolytic enzymes and degradation of lignocellulosic components by the three fungal species. C. versicolor exhibited the highest ability to degrade the three main polymers of the lignocellulosic waste materials employed and to produce ligninases with titers as high as 107 U/g solid substrate in the case of laccase. In addition, a mathematical model describing the fermentation kinetics of the cell biomass growth, degradation of lignocellulosic components, and lignocellulolytic enzyme production for the fungal species/medium combination exhibiting the best performance under solid-state fermentation conditions was proposed and validated in the case of C. versicolor. The mathematical model could be used to provide valuable information on the process itself as well as to contribute to the development of a future commercial process for lignocellulolytic enzyme production.
机译:在12种固体培养基上,基于几种木质纤维素材料(橡木锯末,椰子壳,咖啡壳和玉米糠),在12种固体培养基上生长了三种腐烂真菌(白灵菇,云芝和香菇)三种。培养基具有变化的碳/氮比和CuSO4含量。这项工作的目的是评估培养基配方对三种真菌种类对木质纤维素分解酶生产和木质纤维素成分降解的影响。在漆酶的情况下,杂色衣藻显示出最高的降解所使用的木质纤维素废料的三种主要聚合物的能力,并能产生滴定度高达107 U / g固体底物的木质素酶。此外,提出了描述在固态发酵条件下表现出最佳性能的真菌种类/培养基组合的细胞生物量生长,木质纤维素成分降解和木质纤维素分解酶生产的发酵动力学的数学模型,并进行了验证。 C.杂色。该数学模型可用于提供有关过程本身的有价值的信息,并有助于木质纤维素分解酶生产的未来商业过程的发展。

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