Instituto de Biotecnología, Universidad Nacional Autónoma de México, Av. Universidad 2001, Col. Chamilpa, Cuernavaca 62210, Morelos, Mexico.
Instituto de Biotecnología, Universidad Nacional Autónoma de México, Av. Universidad 2001, Col. Chamilpa, Cuernavaca 62210, Morelos, Mexico.
J Biotechnol. 2014 May 10;177:67-73. doi: 10.1016/j.jbiotec.2014.02.013. Epub 2014 Feb 23.
Mycelial growth and laccase production by Pleurotus ostreatus CP50 cultured in a 10-L mechanically agitated bioreactor were assessed through a 2(3) factorial experimental design. The main effects and interactions of three factors (agitation, aeration and copper induction) over five responses (μ, αLacc, βLacc, maximal volumetric laccase activity and maximal biomass concentration) were analyzed. P. ostreatus growth was significantly improved when culturing was conducted with high agitation (5.9kW/m(3)s) and aeration flow (0.5vvm) rates. Under the experimental conditions evaluated, no evidence of hydrodynamic stress affecting fungal growth was observed. However, the high agitation and aeration conditions were detrimental for the growth-associated laccase production constant (αLacc), leading to a very complex optimization of the process. The maximal laccase volumetric activity (1.2 and 3.8U/ml for non-induced and copper-induced cultures, respectively) was observed when the culturing was performed at a low agitation rate (0.9kW/m(3)s) and a high aeration flow rate (0.5vvm). Laccase proteolysis may explain the complex interactions observed between agitation and aeration and the effects of these factors on the laccase volumetric activity observed in the cultures.
在 10 升机械搅拌生物反应器中培养糙皮侧耳 CP50,通过 2(3)析因实验设计评估其菌丝体生长和漆酶生产。分析了三个因素(搅拌、通气和铜诱导)的主效应和五个响应(μ、αLacc、βLacc、最大比漆酶活和最大生物量浓度)之间的相互作用。当培养采用高搅拌(5.9kW/m³/s)和通气流量(0.5vvm)时,糙皮侧耳的生长得到显著改善。在评估的实验条件下,没有观察到流体动力应力影响真菌生长的证据。然而,高搅拌和通气条件不利于与生长相关的漆酶生产常数(αLacc),导致该过程非常复杂的优化。在低搅拌速率(0.9kW/m³/s)和高通气流量(0.5vvm)下进行培养时,观察到最大漆酶比体积活性(未诱导和铜诱导培养物分别为 1.2 和 3.8U/ml)。漆酶蛋白水解可能解释了在培养物中观察到的搅拌和通气之间的复杂相互作用以及这些因素对漆酶比体积活性的影响。