• Title/Summary/Keyword: Trametes sp.

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Isolation and Characterization of White Rot Fungi for Decolorization of Several Synthetic Dyes (염료의 색도 제거능력이 우수한 백색부후균 분리 및 특성연구)

  • 오광근;김현수;조무환;채영규;전영중
    • Microbiology and Biotechnology Letters
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    • v.27 no.6
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    • pp.500-508
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    • 1999
  • Several white-rot fungi collected from the mountains of Korea were evaluated for their ability to decolorize azo, polymeric, and reactive dyes. Strains CJ-105, CJ-212 and CJ-315, identified as Trametes sp., Pleurotus sp. and Fomes sp., respectively, showed higher potential for decolorization of those dyes in either solid or liquid media. For Trametes sp. CJ-105, 100ppm of Remazol Brilliant blue R and 500ppm of Acid Red 264 were completely decolorized after 2 days under liquid culture. The dominating ligninolytic enzyme existing in the culture broth was laccase (E.C. 1.10.3.2). Also, Pleurotus sp. CJ-212 and Fomes sp. CJ-315 showed similar patterns in decolorization of Remazol Brilliant Blue R and Acid Red 264. The extent of decolorization of the dyes in liquid culture was found to be proportional to the activities of the ligninolytic of decolorization of the dyes in liquid culture was found to be proportional to the activities of the ligninolytic enzymes produced by each strain. In addition to that Trametes sp. CJ-105 was highly effective in degradation of polycyclic aromatic hydrocarbons and pentachlorophenol by the activity of the ligninolytic enzymes produced. In this study, we found that white-rot fungi, Trametes sp. CJ-105(KFCC 10941), Pleurotus sp. CJ-212(KFCC 10943) and Fomes sp. CJ-315(KFCC 10942), were effective in decolorizing a wide range of structurally different synthetic dyes, as well as some chemical compounds which are known to be hardly degradable.

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Production of Laccase by Trametes sp. CJ-105 (Trametes sp. CJ-105에 의한 Laccase 생산)

  • 오광근;김현수;이재흥;전영중
    • Microbiology and Biotechnology Letters
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    • v.27 no.6
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    • pp.477-483
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    • 1999
  • For Trametes sp. CJ-105, a kind of white-rot fungi which was collected from the mountain of Korea and was proven to be effective in decolorizing a wide range of structurally different synthetic dyes, the optimum conditions for mycelial growth and laccase(E.C. 1.10.3.2) production were investigated. Among various carbon sources, glucose showed the highest potential for the mycelial growth and laccase production, the optimum concentration being 2% glucose. For the nitrogen source, asparagine was good for the mycelial growth, while ammonium tartrate for laccase production(optimum concentration: 0.04%). The addition of thiamine and biotin increased both th emycelial growth and laccase production. When 2,5-xylidine was added as an inducer after the first day of culture, the production of alccase was seven-times higher than that in the absence of the inducer. The optimum pH and temperature conditions for laccase production by Trametes sp. CJ-105 were pH 5.0 and $25^{\circ}C$, respectively. In the 5L fermentation, the production of laccase reached a maximum of 340U/ml at the time when the ammonium ion was being rapidly depleted.

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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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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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Trametes sp. CJ-105에 의한 염료의 색도제거

  • Kim, Hyun-Soo;Oh, Kwang-Keun;Lee, Cheol-Woo;Lee, Jae-Heung;Jeon, Yeong-Joong
    • Microbiology and Biotechnology Letters
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    • v.25 no.6
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    • pp.630-635
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    • 1997
  • Decolorization of congo red, methyl orange, poly R478, remazol brilliant blue R and crystal violet by white-rot fungus Trametes sp. CJ-105, isolated in Korea, was investigated. Remazol blue and methyl orange were almost completely decolorized after 2 days of culture, but congo red, crystal violet and poly R478 were decolorized by about 80%, 40% and 30% after 10 days of culture, respectively. As a result of determination of cell mass and enzyme activity, it was shown that color removal efficiency was related to cell mass and enzyme activity, and also found that only laccase (E.C.1.10.3.2) activity was existed in the culture broth. The decolorization ratios of remazol blue in the concentrations of 100ppm to 3, 000 ppm were 85% and above after 2 days of culture. In this study, we found that white-rot fungus, Trametes sp. CJ-105, was effective in decolorizing a wide range of structurally different synthetic dyes.

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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.

Treatment and Attachment Characteristics of Biofilm of Phanerochaete chrysosporium PSBL-1 in Wastewater (Phanerochaete chrysosporium PSBL-1 생물막을 이용한 오.폐수 처리 및 부착특성)

  • Lee, Soon-Young;Kang, Ki-Cheol;Won, Chan-Hee
    • Journal of Korean Society of Environmental Engineers
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    • v.30 no.3
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    • pp.271-277
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    • 2008
  • The biofilm of white-rot fungi fully exposed in atmosphere are that operation is easy, management cost and energy waste is low. To develop biofilm of white-rot fungi fully exposed in atmosphere, basic test are as follows. To select most effective microoganism species, investigated treatment characteristics of wastewater containing non-biodegradable material for three species of white-rot fungi(Phanerochaete chrysosporium PSBL-1, Phanerochaete chrysosporium KCTC 6147, Trametes sp. KFCC 10941) and activated sludge. And then investigated attached and detached biomass of selected white-rot fungi species on HBC ring surface. Among the three strains tested, P. chrysosporium PSBL-1 and P. chrysosporium KCTC 6147 showed higher efficiency for organics removal than Trametes sp. KFCC 10941, and P. chrysosporium PSBL-1 showed higher efficiency for nitrogen removal than P. chrysosporium KCTC 6147 and Trametes sp. KFCC 10941. Respectively, 51$\sim$59.8%, 57.5$\sim$60.3% of NBDCOD was removed for P. chrysosporium PSBL-1 and P. chrysosporium 6147 in pH 3.5$\sim$5.5. TN removal efficiency showed 39.3$\sim$85.3%, 3.4$\sim$7.6% for P. chrysosporium PSBL-1 and P. chrysosporium 6147 in pH 4.5$\sim$11.5 respectively. Considered that white-rot fungi remove organism and nitrogen simultaneously, the microorganism selected white-rot fungi P. chrysosporium PSBL-1. White-rot fungi P. chrysosporium PSBL-1 attached on HBC ring surface 4,538 mg/L, 4,546 mg/L, 4,531 mg/L after 5 minutes, 4,575 mg/L, 4,573 mg/L, 4,568 mg/L after 10 minutes from initial MLSS 4,600 mg/L in pH 4, 7 and 10 respectively. Also detached biomass is negligible from right after attachment to 10 day in pH 4, 7 and 10.

CNBr-activated Sepharose 4B에 고정화된 laccase에 의한 염료의 decolorization

  • Gwon, Sin;Kim, Eun-Jeong;Ryu, Won-Ryul;Jo, Mu-Hwan
    • 한국생물공학회:학술대회논문집
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    • 2001.11a
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    • pp.635-639
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    • 2001
  • A laccase produced the Trametes sp. was immobilized on CNBr-activated Sepharose 4B(CS4B) and tested for repeated-batch and continuous decolorization of dye. After immobilization, the enzyme was active in wider pH and temperature range, and its heat stability was greatly improved compared to those of the free laccase. Immobilized laccase was efficient for both repeated-batch and contionuous decolorization.

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Fungal Biodiversity in Cardamom Protected Forests and Seima Biodiversity Conservation Area of Cambodia

  • Kim, Nam Kyu;Lee, Jin Heung;Jo, Jong Won;Bunthoeun, Roth;Ngeth, Chea;Lee, Jong Kyu
    • Journal of Forest and Environmental Science
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    • v.32 no.2
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    • pp.158-163
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    • 2016
  • Mushroom surveys and collections were conducted in the western and eastern forest areas in Cambodia, and then fungal biodiversity was analyzed by identifying mushrooms. One thousand and three hundreds eighty three specimens were identified by morphological and genetical characteristics, and were classified into 238 species, 160 genera, 52 families, 15 orders, and 3 phylums. The collected mushrooms were immersed in 70% ethyl alcohol for DNA extraction, and the rest of them were dried in the portable mushroom dryer for 12 hrs. Among these mushrooms, the genera Mycena (8.7%), Ganoderma (5.6%), Microporus (5.3%), Marasmius (4.2%), Marasmiellus (3.0%), Phellinus (2.5%), Trametes (2.5%), Hygrocybe (1.9%) and Pycnoporus (1.5%) were dominant. In the western Cambodia, 1,061 specimens were collected from Koh Kong forests, while 263 specimens were collected from the eastern Cambodia, Seima and Mondulkiri forests. Elevations of surveyed sites were ranged from 0 to 750 m above sea level. The number of species observed in the elevation of 251-500 m was the highest as compared to the other ranges of elevation. Daldinia concentrica, Microporus vernicipes, Microporus xanthopus, Pycnoporus coccineus, Stereum hirsutum, and Stereum ostrea were commonly distributed in all ranges of elevation, while the distribution of Ceratomyxa fruticulosa, Panus fulvus, Schizophyllum, Trametes versicolor, and Tyromyces chioneus were limited under 500 m. One hundred and forty one species including Amauroderma sp., Bjerkandera adusta, Trichaptum abietinum, and Tyromyces chioneus were collected only in Cardamom, while 20 species including Auricularia auricula-judae, Coriolopsis sanguinaria, Rigidoporus microporus, and Xylaria polymorpha were collected only in Seima. Ganoderma sp., Mycena sp., Marasmius sp., Microporus xanthopus, Phellinus sp., and Russula sp. were dominant species in both the western and eastern Cambodia. Species diversity indices in the eastern and western survey sites were 1.83 and 1.77, respectively, while evenness indices were 0.92 and 0.90. The species similarity index between two survey sites was 0.42.