Eichlerová Ivana, Baldrian Petr
Laboratory of Environmental Microbiology, Institute of Microbiology of the Czech Academy of Sciences v.v.i., Vídeňská 1083, 142 20 Prague 4, Czech Republic.
J Fungi (Basel). 2020 Nov 19;6(4):301. doi: 10.3390/jof6040301.
An extensive screening of saprotrophic causing white rot (WR), brown rot (BR), or litter decomposition (LD) for the production of laccase and Mn-peroxidase (MnP) and decolorization of the synthetic dyes Orange G and Remazol Brilliant Blue R (RBBR) was performed. The study considered in total 150 strains belonging to 77 species. The aim of this work was to compare the decolorization and ligninolytic capacity among different ecophysiological and taxonomic groups of WR strains decolorized both dyes most efficiently; high decolorization capacity was also found in some LD fungi. The enzyme production was recorded in all three ecophysiology groups, but to a different extent. All WR and LD fungi produced laccase, and the majority of them also produced MnP. The strains belonging to BR lacked decolorization capabilities. None of them produced MnP and the production of laccase was either very low or absent. The most efficient decolorization of both dyes and the highest laccase production was found among the members of the orders and The strains with high MnP activity occurred across almost all fungal orders and Synthetic dye decolorization by fungal strains was clearly related to their production of ligninolytic enzymes and both properties were determined by the interaction of their ecophysiology and taxonomy, with a more relevant role of ecophysiology. Our screening revealed 12 strains with high decolorization capacity (9 WR and 3 LD), which could be promising for further biotechnological utilization.
对引起白腐(WR)、褐腐(BR)或凋落物分解(LD)的腐生菌进行了广泛筛选,以研究漆酶和锰过氧化物酶(MnP)的产生以及对合成染料橙黄G和活性艳蓝R(RBBR)的脱色情况。该研究共考虑了属于77个物种的150个菌株。这项工作的目的是比较不同生态生理和分类学组的WR菌株之间的脱色和木质素分解能力,WR菌株对两种染料的脱色效率最高;在一些LD真菌中也发现了高脱色能力。在所有三个生态生理组中都记录到了酶的产生,但程度不同。所有WR和LD真菌都产生漆酶,并且它们中的大多数还产生MnP。属于BR的菌株缺乏脱色能力。它们都不产生MnP,漆酶的产生要么非常低,要么没有。在[具体目名1]和[具体目名2]的成员中发现了对两种染料最有效的脱色和最高的漆酶产量。具有高MnP活性的菌株几乎出现在所有真菌目中,如[列举一些目名]。真菌菌株对合成染料的脱色显然与其木质素分解酶的产生有关,这两种特性都由它们的生态生理和分类学相互作用决定,其中生态生理起更重要的作用。我们的筛选发现了12个具有高脱色能力的菌株(9个WR和3个LD),它们在进一步的生物技术利用方面可能很有前景。