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Laccases were proposed to catalyze the oxidative polymerization of monolignols. We identified 49 laccase gene models in Populus trichocarpa, of which 29 were predicted to be targets of ptr-miR397a. We overexpressed Ptr-MIR397a in transgenic P. trichocarpa. In each of all 9 transgenic lines tested, 1...
ORGANISM(S): Populus trichocarpa 
Analysis of proteins from total cell lysates of 21 different Saccharomyces cerevisiae strains while expressing Trametes trogii laccase.
ORGANISM(S): Saccharomyces Cerevisiae (ncbitaxon:4932) 
ra10-01_laccases; laccase mutations. We demonstrated that laccases are involved in lignin polymerisation. Mutants have already been tested on microarrays and there is few differences compared to wild-type. The laccase mutation seems surgical. We possess a new double mutant, called snips, with a semi...
ORGANISM(S): Arabidopsis thaliana 
We illuminated the role of bacterial laccase in oxidative stress defense through TMT-based quantitative proteomics, which may contribute to deep insight into the adaptive response of bacteria to environments and better application of bacterial laccase in industries.
ORGANISM(S): Bacillus Pumilus 
Diversity of laccase genes of Cuban Ganoderma strains. Application for biodegradation of xenobiotic compounds.
ra10-01_laccases; laccase mutations. We demonstrated that laccases are involved in lignin polymerisation. Mutants have already been tested on microarrays and there is few differences compared to wild-type. The laccase mutation seems surgical. We possess a new double mutant, called snips, with a semi...
ORGANISM(S): Arabidopsis thaliana 
2011-07-02 | GSE22907 | GEO
In this project, the transcriptomic data was obtained from the 6-day and 10-day submerged cultures of Cerrena unicolor sp. 87613 under PDA media, respectively. C.unicolor is reported to be an important medicinal fungus as well as an efficient laccase producer. Interestingly, C.unicolor sp.87613 pres...
ORGANISM(S): Cerrena unicolor 
2023-07-10 | GSE236542 | GEO
Laccase content was determined under the influence of different concentrations of Triton X-100, and the key enzyme genes were cloned, and finally the expression of laccase was improve by strong promoter substitution
ORGANISM(S): Inocutis levis 
2025-07-13 | GSE280815 | GEO
Filamentous fungi are promising organisms for lignin degradation and mineralization. However, novel lignin-degrading fungal species are underexplored. Here, we isolated a fungal strain of Curvularia clavata that can utilize lignosulfonate as the carbon source and exhibited a relative high laccase ac...
ORGANISM(S): Curvularia clavata 
2024-10-09 | GSE278592 | GEO
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