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Trinitrotoluene and mandarin peels selectively affect lignin-modifying enzyme production in white-rot basidiomycetes

机译:三硝基甲苯和柑桔皮选择性影响白腐担子菌中木质素修饰酶的产生

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摘要

Five white-rot basidiomycetes (WRB) species have been evaluated for their potential to tolerate and to degrade 0.2 mM 2, 4, 6-trinitrotoluene (TNT) as well as to produce laccase and manganese peroxidase (MnP) in presence of this xenobiotic. The tested fungal strains produced laccase in both glycerol and mandarin peels-containing media, whereas in the glycerol-containing medium only Cerrena unicolor strains and Trametes versicolor BCC 775 secreted MnP. Replacement of glycerol by milled mandarin peels 3- to 45-fold increased laccase activity, promoted C. unicolor strains and T. versicolor MnP secretion and induced this enzyme production by Fomes fomentarius BCC 38 and Funalia trogii BCC 146. Differential response of the WRB strains to the TNT addition was observed. In particular, laccase activity of C. unicolor increased 2- to 3-fold in both media whereas no stimulation of the laccase production was revealed in cultivation of F. fomentarius. TNT practically did not affect the MnP activity. Two strains of C. unicolor followed by T. versicolor producing laccase and MnP almost completely removed 0.2 mM TNT from the synthetic medium. Increase of TNT concentration from 0 to 0.4 mM in the mandarin peels-based medium and from 0 to 0.3 mM in the glycerol-containing medium stimulated C. unicolor BCC 300 laccase production from 92.4 to 240.7 U/ml and from 17.1 to 48.6 U/ml, respectively. This strain has been resistant to the TNT high concentration and has ability to remove 85 % of initial 0.3 mM TNT content during 6 days of the submerged cultivation.
机译:已评估了五种白腐担子菌(WRB)的耐受性和降解潜力,可降解0.2mM 2、4、6-三硝基甲苯(TNT)以及在存在这种异源生物的情况下产生漆酶和锰过氧化物酶(MnP)。所测试的真菌菌株在含有甘油和普通话果皮的培养基中均产生漆酶,而在含有甘油的培养基中,仅Cerrena unicolor菌株和Trametes versicolor BCC 775分泌MnP。碾碎的普通话代替甘油会使漆酶活性提高3到45倍,促进了C. unicolor菌株和T. versicolor MnP分泌,并由Fomes fomentarius BCC 38和Funalia trogii BCC 146诱导了这种酶的产生。WRB菌株的差异反应观察到TNT的添加。特别地,在两种培养基中,单色念珠菌的漆酶活性增加了2-3倍,而在培养F. fomentarius中没有发现漆酶产生的刺激。 TNT实际上不影响MnP活性。两株C. unicolor菌株,然后是T. versicolor菌株产生漆酶和MnP,几乎从合成培养基中完全去除了0.2mM TNT。在普通话果皮培养基中,TNT浓度从0增加到0.4 mM,在含甘油的培养基中,TNT浓度从0增加到0.3 mM,刺激C.单色BCC 300漆酶的产生从92.4到240.7 U / ml和从17.1到48.6 U / ml毫升。该菌株对TNT高浓度具有抗性,并且能够在淹没培养的6天内去除初始0.3mM TNT含量的85%。

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