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Degradation of PAHs by ligninolytic enzymes of Irpex lacteus
Tomáš Cajthaml, Pavla Erbanová, A. Kollmann, Čeněk Novotný, Václav Šašek, C. Mougin
Jazyk angličtina Země Česko
- MeSH
- Basidiomycota enzymologie genetika metabolismus MeSH
- biodegradace MeSH
- fungální proteiny genetika metabolismus MeSH
- lignin metabolismus MeSH
- peroxidasy genetika metabolismus MeSH
- polycyklické aromatické uhlovodíky chemie metabolismus MeSH
The ligninolytic fungus Irpex lacteus was shown as an efficient degrader of oligocyclic aromatic hydrocarbons (PAHs; 'polycyclic aromatic hydrocarbons') possessing 3-6 aromatic rings in complex liquid media. The strain produced mainly Mn-dependent peroxidase in media without pollutants. Activity of ligninolytic enzymes was higher in a N-limited medium. However, after contamination with PAHs (especially pyrene) the values increased and significant activity of Mn-independent peroxidase appeared in the complex medium. Other factors (such as the increase in nitrogen concentration or the presence of solvent(s) for dissolution of PAHs) had no effect. Cytochrome P-450 was detected in the microsomal fraction of biomass grown in the complex medium. The rate of PAH degradation was also affected by the presence of various combinations of PAHs. However, independently of the enzyme activities, anthracene was shown to have a positive influence on degradation of pyrene and fluoranthene.
Lit.: 35
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- $a Cajthaml, Tomáš, $d 1975- $7 xx0063848
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- $a Degradation of PAHs by ligninolytic enzymes of Irpex lacteus / $c Tomáš Cajthaml, Pavla Erbanová, A. Kollmann, Čeněk Novotný, Václav Šašek, C. Mougin
- 314 __
- $a Department of Ecology, Institute of Microbiology, Academy of Sciences of the Czech Republic, Prague
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- $a Lit.: 35
- 520 9_
- $a The ligninolytic fungus Irpex lacteus was shown as an efficient degrader of oligocyclic aromatic hydrocarbons (PAHs; 'polycyclic aromatic hydrocarbons') possessing 3-6 aromatic rings in complex liquid media. The strain produced mainly Mn-dependent peroxidase in media without pollutants. Activity of ligninolytic enzymes was higher in a N-limited medium. However, after contamination with PAHs (especially pyrene) the values increased and significant activity of Mn-independent peroxidase appeared in the complex medium. Other factors (such as the increase in nitrogen concentration or the presence of solvent(s) for dissolution of PAHs) had no effect. Cytochrome P-450 was detected in the microsomal fraction of biomass grown in the complex medium. The rate of PAH degradation was also affected by the presence of various combinations of PAHs. However, independently of the enzyme activities, anthracene was shown to have a positive influence on degradation of pyrene and fluoranthene.
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