• Title/Summary/Keyword: Trametes

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Partial Cloning of Genes for Lignin Degrading Enzymes in Trametes versicolor (구름버섯에서 리그닌 분해효소 유전자들의 클로닝)

  • 김용호;정수진;김선경;송홍규;최형태
    • Korean Journal of Microbiology
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    • v.39 no.3
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    • pp.201-205
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    • 2003
  • Laccase, lignin- and manganese peroxidase are implicated in the lignin degradation. The nucleotide sequences of four copper-binding domains in fungal laccases, and heme-binding domains of lignin- and manganese peroxidases are well conserved, and therefore these short fragments can be used for the PCR for the gene amplification. We synthesized several PCR primers according to their sequences, and run PCR to amplifiy the lignin degrading genes of Trametes versicolor isolated in Korea. PCR products were cloned with pGEM-T vector in order to determine their nucleotide sequences. A laccase fragment (1.3 kb) showed 65-97% homologies, lignin peroxidase fragment (185 bp) showed 80-95% homologies, and manganese peroxidase fragment (443 bp) showed 61-83% homologies when compared with other white-rot fungal enzymes.

Biodegradation of triphenyl methane dyes by white rot fungus, Trametes versicolor (Trametes versicolor 의한 triphenyl methane계 염료의 분해)

  • Baek, Seung-A;Choi, Jaehyuk;Lee, Tae-Soo;Im, Kyung-Hoan
    • Journal of Mushroom
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    • v.13 no.1
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    • pp.63-67
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    • 2015
  • White rot fungi produce lignin-degrading enzymes such as laccase, manganese peroxidase and lignin peroxidase. These extracellular oxidases efficiently degrade recalcitrant synthetic dyestuffs with diverse chemical structures. Here, we examined the activities of lignin-degrading enzymes in Trametes versicolor using triphenyl methane dyes, crystal violet (CV) and malachite green (MG). Both dyes were decolorized by T. versicolor in solid and liquid culture conditions. T. versicolor decolorized MG more quickly than CV in both conditions. Among three ligninolytic enzymes, laccase was most abundantly found in the decolorization processes of CV and MG. However, higher activity of laccase was needed to degrade CV than MG. The much less activity of MnP was also detected. But the increase of MnP activity was well corresponded to the decolorization efficiency of CV, suggesting the involvement of MnP in CV degrading process. However, its role in the degradation process of MG is supposed to be subsidiary to laccase.

Purification and Characterization of Extracellular Laccase from Trametes versicolor (Trametes versicolor 배양액으로부터 단리 정제된 Laccase의 효소적 특성)

  • Kim, Hyun Joo;Bae, Hyeun Jong
    • Journal of the Korean Wood Science and Technology
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    • v.35 no.4
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    • pp.61-66
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    • 2007
  • The study was performed to purify and characterize laccase in culture of Trametes versicolor. The fungus was grown in liquid culture media of PDB and added 2,5-xylidine (0.2 mM) after 5 days to enhance the production of laccase. The fungal culture was incubated at $25^{\circ}C$ on a rotary shaker (120 rpm) for 7days, and the culture broth was clarified through Glass filter (GF/C). The aqueous solution was concentrated by ultramicrofiltration (Viva flow 50, GE Healthcare Bioscience, USA) and loaded onto a Hitrap Q FF column. Laccase activity could be detected at one peak, and this enzyme has a molecular mass of approximately 53kDa as determined by SDS-PAGE The optimum pH and temperature for syringaldazine were 5.0 and $60^{\circ}C$, respectively. The specific activity of crude, concentrated and purified laccase were 32, 409, and 1,243 U/mg, respectively.

Morphological aspects of white-rot degraded oak wood by Trametes versicolor (Trametes versicolor에 의한 상수리나무의 분해형태)

  • Yoo, Tae-Bang;Yoon, Min-Ho;Choi, Woo-Young;Lee, Jong-Shin
    • Korean Journal of Agricultural Science
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    • v.28 no.2
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    • pp.125-131
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    • 2001
  • Trametes versicolor(CV5) selected as a white-rot fungus with strong lignin degrading activity, in the previous paper, was investigated on a properties of degradation of wood lignin. Lignins of hardwoods, especially oak(Querous acutissima carruth) an paulownia (Paulownia coreana Uyeki) were considerably delignified by the CV5, however, softwoods used in this experiment were not delignified. Bavendamm's reaction was positive with several phenols on agar plates for the confirmation of a phenoloxidase secreted Through the morphologies of decayed wood chip observed with the aid of scanning electron microscopy, it was found that the hypha of CV5 penetrated the ray cells and vessels caused separation of the wood cellulose.

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Biodegradation of Polycyclic Aromatic Hydrocarbons by White Rot Fungi (백색부후균을 이용한 다환방향족 탄화수소(PAHs) 의 분해)

  • 류원률;서윤수;장용근;조무환
    • KSBB Journal
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    • v.15 no.3
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    • pp.262-267
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    • 2000
  • The white rot fungi Phanerochaete chrysosporium(IFO 31249) Trametes sp and Pleurotus sp. were studied for their ability to degrade Polycyclic Aromatic Hydrocarbons(PAHs) using anthracene and pyrene as model compounds. The disapperarance anthracene and pyrene of from cultures of wild type strains. P chrysosporium Trametes sp. and Pleurotus sp was observed However the activities of ligninolytic enzymes were not detected in P chrysosporium cultures during degradation while ligninolytic enzymes were detected in both culture of Trametes sp. and Pleurotus sp. Therefore our results showed that PAHs was degraded under ligninolytic as well as nonligninolytic conditions. The results also indicate that lignin peroxidase(LiP) mananese peroxidase(MnP) and laccase are not essential for the biodegradation of PAHs by white rot fungi.

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Enhanced Production of Laccase from Trametes sp. by Combination of Various Inducers

  • Jang, Moon-Yup;Ryu, Won-Youl;Cho, Moo-Hwan
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.11 no.2
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    • pp.96-99
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    • 2006
  • In this study, we have attempted to determine the optimum concentration of inducers responsible for efficient laccase production by the white-rot fungus, Trametes sp. Variations in laccase activity were investigated with changing concentrations of 2,5-xylidine, syringaldazine, ABTS, and guaiacol. Enhancement of peak laccase activity was achieved via the combination of 2,5-xylidine with ABTS, syringaldazine, or guaiacol, resulting in increases of up to 359, 313, and 340%, respectively, as compared to control values. Among the tested inducers, the addition of 0.1mM of ABTS coupled with 1.0mM of 2,5-xylidine in the medium after 24 h of cultivation proved optimal with regard to laccase enzyme production.

Biodegration of Pentachlorophenol by White Rot Fungi under Ligniolytic and Nonligninolytic Conditions

  • Ryu, Won-Ryul;Shim, Seong-Hoon;Jang, Moon-Yup;Heon, Yeong-Joong;Oh, Kwang-Keun;Cho, Moo-Hwan
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.5 no.3
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    • pp.211-214
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    • 2000
  • The roles of lignin peroxidase, manganese peroxidase, and laccase were inverstigated in the biodegration of pentachlorphenol (PCP) by several which rot fungi. The disappearance of pentachlorophenol from cultures of wild type strains, P. chrysosporium, Trametes sp. and of pentachlorophenol from cultures of wild type strains, P. cheysocporium, Trametes sp. and Pleurotus ap., was observed. The activities of mangnese peroxidase and laccase was detected in Trametes sp. and pleurotus sp. cultures. However, the activities showed that PCP was degraded under ligninolytic as well as nonligninoytic condicationg that lignin peroxidase, manganese peroxidase, and laccase are not essential in the biodegradation of PCP by white rot fungi.

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Cloning of a Manganese Peroxidase cDNA Gene Repressed by Manganese in Trametes versicolor

  • Kim Yongho;Yeo Sumin;Kum Joohee;Song Hong-Gyu;Choi Hyoung T.
    • Journal of Microbiology
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    • v.43 no.6
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    • pp.569-571
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    • 2005
  • White-rot fungi have the following enzyme systems for lignin degradation: laccase, lignin peroxidase and manganese peroxidase. There are other types of peroxidases related to lignin degradation, one of which we have cloned a cDNA gene of manganese-repressed peroxidase (MrP) in Trametes versicolor isolated in South Korea. The mrp transcript level has been decreased by $1{\mu}M\;of\;Mn^{2+}$.

Degradation of Phenanthrene by Trametes versicolor and Its Laccase

  • Han, Mun-Jung;Park, Hyoung-Tae;Song, Hong-Gyu
    • Journal of Microbiology
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    • v.42 no.2
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    • pp.94-98
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    • 2004
  • Phenanthrene is a three-ring polycyclic aromatic hydrocarbon and commonly found as a pollutant in various environments. Degradation of phenanthrene by white rot fungus Trametes versicolor 951022 and its laccase, isolated in Korea, was investigated. After 36 h of incubation, about 46% and 65% of 100 mg/l of phenanthrene added in shaken and static fungal cultures were removed, respectively. Phenanthrene degradation was maximal at pH 6 and the optimal temperature for phenanthrene removal was 30$^{\circ}C$. Although the removal percentage of phenanthrene was highest (76.7%) at 10 mg/1 of phenanthrene concentration, the transformation rate was maximal (0.82 mg/h) at 100 mg/L of phenanthrene concentration in the fungal culture. When the purified laccase of T. versicolor 951022 reacted with phenanthrene, phenanthrene was not transformed. The addition of redox mediator, 2,2'-azino-bis-(3-ethylbenzthiazoline-6-sulfonic acid) (ABTS) or 1-hydroxybenzotriazole (HBT) to the reac-tion mixture increased oxidation of phenanthrene by laccase about 40% and 30%, respectively.

Morphological Characteristic Regulation of Ligninolytic Enzyme Produced by Trametes polyzona

  • Lueangjaroenkit, Piyangkun;Teerapatsakul, Churapa;Chitradon, Lerluck
    • Mycobiology
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    • v.46 no.4
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    • pp.396-406
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    • 2018
  • A newly isolated white rot fungal strain KU-RNW027 was identified as Trametes polyzona, based on an analysis of its morphological characteristics and phylogenetic data. Aeration and fungal morphology were important factors which drove strain KU-RNW027 to secrete two different ligninolytic enzymes as manganese peroxidase (MnP) and laccase. Highest activities of MnP and laccase were obtained in a continuous shaking culture at 8 and 47 times higher, respectively, than under static conditions. Strain KU-RNW027 existed as pellets and free form mycelial clumps in submerged cultivation with the pellet form producing more enzymes. Fungal biomass increased with increasing amounts of pellet inoculum while pellet diameter decreased. Strain KU-RNW027 formed terminal chlamydospore-like structures in cultures inoculated with 0.05 g/L as optimal pellet inoculum which resulted in highest enzyme production. Enzyme production efficiency of T. polyzona KU-RNW027 depended on fungal pellet morphology as size, porosity, and formation of chlamydospore-like structures.