Bettin Fernanda, Montanari Queli, Calloni Raquel, Gaio Tamara A, Silveira Mauricio M, Dillon Aldo J P
Institute of Biotechnology, University of Caxias do Sul, Rua Francisco Getulio Vargas 1130, Caxias do Sul, RS, 95070-560, Brazil.
J Ind Microbiol Biotechnol. 2009 Jan;36(1):1-9. doi: 10.1007/s10295-008-0463-1. Epub 2008 Aug 29.
Some conditions in media composition for laccases production, such as different sources of carbon and organic nitrogen, antifoams and a surfactant, were studied in liquid cultures of Pleurotus sajor-caju strain PS-2001. Cultivation with fructose or glucose as carbon sources produced maximum enzyme activities of 37 and 36 U mL(-1), respectively. When sucrose was present in the medium, the best results were obtained using 5 g L(-1) of this carbohydrate, on the 11th day of the process, attaining laccase titres of 13 U mL(-1). In a medium without casein, practically no enzyme was produced during the experiments; among the sources of nitrogen studied, pure casein led to the highest titres of laccase activity. Different concentrations of pure casein and sucrose were also tested. As to the different concentrations of casein, the addition of 1.5 g L(-1) resulted in the highest titres of laccase activity. Negligible levels of manganese peroxidase activity were also detected in the culture medium. In low concentrations, polypropylene glycol or silicon-based antifoams and the surfactant Tween 80 have no significant influence on the formation of laccases by P. sajor-caju. However, enhanced concentration of polypropylene glycol negatively affected the production of laccases but favored the titres in total peroxidases, lignin peroxidase and veratryl alcohol oxidase.
在凤尾菇PS-2001菌株的液体培养中,研究了漆酶生产培养基成分中的一些条件,如不同的碳源和有机氮源、消泡剂和一种表面活性剂。以果糖或葡萄糖作为碳源进行培养时,酶的最大活性分别为37和36 U mL(-1)。当培养基中存在蔗糖时,在培养过程的第11天,使用5 g L(-1)的这种碳水化合物可获得最佳结果,漆酶产量达到13 U mL(-1)。在不含酪蛋白的培养基中,实验期间几乎不产生酶;在所研究的氮源中,纯酪蛋白导致漆酶活性的最高产量。还测试了不同浓度的纯酪蛋白和蔗糖。对于不同浓度的酪蛋白,添加1.5 g L(-1)可使漆酶活性达到最高产量。在培养基中还检测到极低水平的锰过氧化物酶活性。在低浓度下,聚丙二醇或硅基消泡剂以及表面活性剂吐温80对凤尾菇漆酶的形成没有显著影响。然而,聚丙二醇浓度的增加对漆酶的产生有负面影响,但有利于总过氧化物酶、木质素过氧化物酶和藜芦醇氧化酶的产量。