• Title/Summary/Keyword: screening of fungi

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Screening and Evaluation of Antibacterial Metabolites from Entomopathogenic Fungi

  • Shin, Tae-Young;Ko, Seung-Hyun;Lee, Won-Woo;Bae, Sung-Min;Choi, Jae-Bang;Woo, Soo-Dong
    • International Journal of Industrial Entomology and Biomaterials
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    • v.26 no.2
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    • pp.89-94
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    • 2013
  • Entomopathogenic fungal species have been investigated for their potential use as biological control agents owing to their natural role as insect pathogens. These fungi produce a wide range of secondary metabolites with high therapeutic values, such as antibiotics and cytotoxic substances. To evaluate the antibacterial activity of entomopathogenic fungi, 10 isolates from Korean soil were selected and tested for their activity against Escherichia coli by using fungal culture filtrates. Antibacterial activity was assessed using a two-step process: (1) a screening assay for the selection of fungal isolates and (2) a quantitative assay to evaluate the activity of select fungi. Although 4 fungal isolates were selected through the screening assay, only 3 fungal isolates, from Beauveria bassiana and Metarhizium anisopliae, showed high antibacterial activity according to the quantitative assay. The antibacterial activity of selected fungal culture filtrates was stable when exposed to heat and proteolytic enzyme treatments, which indicated that the antibacterial compound is not a protein. These entomopathogenic fungal metabolites might be useful as a source for bacterial control and in the pharmaceutical industry.

Studies on the Antifungal Action of Leather in Korea (Part. 2) (한국에서의 피혁방미에 관한 연구 2)

  • 김종협;장건형;최춘언
    • Korean Journal of Microbiology
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    • v.3 no.1
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    • pp.18-23
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    • 1965
  • It seems like that the characteristics and drug-resistances of fungi are respectively different in various circumstances. Scores of chemicals were applicated to the leather-fungi in this study. M-dinitrobenzene, 2, 4-dinitrochlorobenzene and phenyl mercuric acetate inhibited the growth of Aspergilli which were isolated from Korean-leather. The minimum fungicidal limits of p-nitrophenol, 8-hydroxyquinoline and sodium-pentachlorophenolate against the Korean-originated strains are different from that of other country. In the mass-screening of fungicides, artificial "Leather-extracts media" have been designed and used, and the media contributed to screening-tests. Fat and oils which are the materials of fat-liquoring in leather manufacture affects the drugresistance of the leather-fungi. It is found that the accelerating-method on malt-agar plate is effective to determinate the fungicidal action of chemicals in short time.hort time.

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Towards a Miniaturized Culture Screening for Cellulolytic Fungi and Their Agricultural Lignocellulosic Degradation

  • Arnthong, Jantima;Siamphan, Chatuphon;Chuaseeharonnachai, Charuwan;Boonyuen, Nattawut;Suwannarangsee, Surisa
    • Journal of Microbiology and Biotechnology
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    • v.30 no.11
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    • pp.1670-1679
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    • 2020
  • The substantial use of fungal enzymes to degrade lignocellulosic plant biomass has widely been attributed to the extensive requirement of powerful enzyme-producing fungal strains. In this study, a two-step screening procedure for finding cellulolytic fungi, involving a miniaturized culture method with shake-flask fermentation, was proposed and demonstrated. We isolated 297 fungal strains from several cellulose-containing samples found in two different locations in Thailand. By using this screening strategy, we then selected 9 fungal strains based on their potential for cellulase production. Through sequence-based identification of these fungal isolates, 4 species in 4 genera were identified: Aspergillus terreus (3 strains: AG466, AG438 and AG499), Penicillium oxalicum (4 strains: AG452, AG496, AG498 and AG559), Talaromyces siamensis (1 strain: AG548) and Trichoderma afroharzianum (1 strain: AG500). After examining their lignocellulose degradation capacity, our data showed that P. oxalicum AG452 exhibited the highest glucose yield after saccharification of pretreated sugarcane trash, cassava pulp and coffee silverskin. In addition, Ta. siamensis AG548 produced the highest glucose yield after hydrolysis of pretreated sugarcane bagasse. Our study demonstrated that the proposed two-step screening strategy can be further applied for discovering potential cellulolytic fungi isolated from various environmental samples. Meanwhile, the fungal strains isolated in this study will prove useful in the bioconversion of agricultural lignocellulosic residues into valuable biotechnological products.

Lipase-producing Filamentous Fungi from Non-dairy Creamer Industrial Waste

  • Triyaswati, Desty;Ilmi, Miftahul
    • Microbiology and Biotechnology Letters
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    • v.48 no.2
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    • pp.167-178
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    • 2020
  • Lipase-producing fungi have been isolated from environments containing lipids. The non-dairy creamer industrial waste has a high amount of lipids so it is a potential source for the isolation of lipase-producing fungi. However, the study of fungi that secrete lipase from this industrial waste has not been reported. The purpose of this study was to obtain lipase-producing filamentous fungi from non-dairy creamer industrial waste. Mineral salt and potato dextrose agar were used as media for the isolation process. The qualitative screening was conducted using phenol red agar medium and the quantitative screening using broth medium containing glucose and olive oil. Isolates producing the highest amounts of lipase were identified with molecular methods. We found that 5 out of 19 isolated filamentous fungi are lipase producers. Further analysis showed that isolate Ms.11 produced the highest amount of lipase compared to others. Based on ITS sequence Ms.11 was identified as Aspergillus aculeatus. The lipase activity in medium containing 1% glucose + 1% olive oil at pH 7.0 and 30℃ after 96 and 120 h of incubation was 5.13 ± 0.30 U/ml and 5.22 ± 0.59 U/ml, respectively. The optimum lipase activity was found at pH 7.0, 30℃ and using methanol or ethanol in the reaction tube. Lipase was more stable at 20-30℃ and maintained 85% of its activity. It was concluded that isolate Ms.11 is a potential source of lipase that catalyzes transesterification reactions. Further studies are required to optimize lipase production to make the strain suitable for industry purposes.

Electron Microscopic Observations of Mouse Liver Cell Treated with Fungal Culture Filtrates Isolated from Foodstuffs II. Results of Isolated Strains (각종 식품에서 분리한 진균 배양액으로 처리된 마우스 간세포의 전자현미경적 관찰 II. 분리균주에 대한 실험성적)

  • Deung, Young-Kun;Choi, Choon-Keun;Koh, Choon-Myung
    • Applied Microscopy
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    • v.3 no.1
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    • pp.45-54
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    • 1973
  • The present study is to determine the toxicity of the fungi isolated from foodstuffs by observing the ultrastructural changes in the mouse liver cells. The results as follows: 1. The toxin-producing fungi were screened by the methods of toxin-screening test(cyto-toxicity test against to HeLa cells and thin layer chromatography). 2. All of the experimental animals treated with isolated fungi were observed the focal necrosis and inflammatory infiltration of liver parenchymal cells. 3. It showed the cytoplasmic changes, such as dilatation of rough endoplasmic reticulum (RER), swelling of mitochondria (mi). increased number of lipid droplet (li) and glycogen (gl), detachment of ribosomes (ri) by observing the electron microscopy. 4. Nuclear and nucleolar alteration were also noted the segregation of nucleolar element and irregularity of nuclear envelopes. 5. As a mass screening, the cytotoxicity test using HeLa cells and thin layer chromatography are feasible methods to detection of the mycotoxin producing fungi from various sources.

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Evaluation of White-rot Fungi for Biopulping of Wood

  • Kang, Kyu-Young;Sung, Jung-Suk;Kim, Dae-Young
    • Mycobiology
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    • v.35 no.4
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    • pp.205-209
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    • 2007
  • Ergosterol involves in fungal cell growth as a major component in fungal cell membranes. It can be an indicator that shows the fungal activity, and its content depends on the fungal strains, culture, growth conditions and so on. In this study, fungal activities and growth patterns of three white-rot fungi strains isolated in Korea were evaluated by determination of ergosterol contents during the incubation. Wood decay test and chemical analyses of wood were also performed to verify the relationship between fungal activity and wood degrading capacity of white-rot fungi for 60 days. In the results of experiments, it is considered that the test strains selectively degrade large amount of lignin in wood at the early stage of decay. Especially, Phanerochaete chrysosporium showed the best capability on selective degradation of lignin among the test fungi. It is suggested that the determination of ergosterol content in the fungal culture during the incubation is the simple and effective screening method of white-rot fungi for the application to biopulping of wood.

Environmental Factors and Bioremediation of Xenobiotics Using White Rot Fungi

  • Magan, Naresh;Fragoeiro, Silvia;Bastos, Catarina
    • Mycobiology
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    • v.38 no.4
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    • pp.238-248
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    • 2010
  • This review provides background information on the importance of bioremediation approaches. It describes the roles of fungi, specifically white rot fungi, and their extracellular enzymes, laccases, ligninases, and peroxidises, in the degradation of xenobiotic compounds such as single and mixtures of pesticides. We discuss the importance of abiotic factors such as water potential, temperature, and pH stress when considering an environmental screening approach, and examples are provided of the differential effect of white rot fungi on the degradation of single and mixtures of pesticides using fungi such as Trametes versicolor and Phanerochaete chrysosporium. We also explore the formulation and delivery of fungal bioremedial inoculants to terrestrial ecosystems as well as the use of spent mushroom compost as an approach. Future areas for research and potential exploitation of new techniques are also considered.

Screening and Evaluating of Wood-Rotting Fungi for Lignin Degradation and Ligninolytic Enzyme Production(I) - Screening of High Active Lignin-Degrading Fungi - (리그닌분해(分解)와 리그닌분해효소(分解酵素) 생산(生産)을 위한 목재부후균(木材腐朽菌)의 선발(選拔)과 평가(評價)(I) - 고활성(高活性) 리그닌분해균(分解菌)의 선발(選拔) -)

  • Jung, Hyun-Chae;Park, Seur-Kee;Kim, Byeong-Soo;Park, Chong-Yawl
    • Journal of the Korean Wood Science and Technology
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    • v.23 no.4
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    • pp.108-116
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    • 1995
  • This experiment was conducted to screen a superior wood-rotting fungi for lignin degradation and ligninolytic enzyme production by evaluation of red colored zone width on potato-dextrose agar medium and oak woodmeal medium complimented guaiacol. Relationship between the red colored zone width on GU-WA medium and klason lignin loss on woodmeal medium showed the positive correlation. Thus, the potential ligninolytic activity of wood rotting fungi which are not elucidated yet may be estimated to some extent by the evaluation of the red colored zone width on GU-WA medium. Of the isolates screened from fruit bodies and decayed woods. LKY-12, LKY-7 and C. versicolor-13 isolates having preferential lignin degradation and laccase activity were selected. These isolates exhibited characteristics of superior wood-rotting fungi as Klason lignin loss ranged from 30% to 35% and ligninolytic enzyme activity of these isolates on glucose-peptone broth was higher than that of other isolates. And then, these isolates were considered to be able to use in biological pulping and bleaching and ligninolytic enzyme production.

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Studies on the Population of Toxigenic Fungi in Foodstuffs(VIII) (한국 식품중의 유독성 진균에 관한 연구 8)

  • Koh, Choon-Myung;Kim, Se-Jong;Cho, She-Hoon;Kim, Sung-Kwang;Lew, Joon
    • Korean Journal of Microbiology
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    • v.12 no.2
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    • pp.59-68
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    • 1974
  • With an aim to disclose causal factors scably grains intoxications, the screening of toxic Fusaria and the detection of toxic priniciples were performed in respect of cultured cells bioassay with HeLa cells, skin-necrotizing effect, histopathological investigation and also chromatographic analysis sith following results ; 1. Among the fungi, Fusarium sp. F-27, F-63 and F-61 were highly toxic to mice, causing liver injury characterized necrosis and inflammation. 2. HeLa cell culture bioassay demonstrated that the cell of the isolated strains of Fusaria were suspected to produce toxic material (Fusarenon-X). 3. The culture filtrates of Fusarium nivale Fn-2B, F-27, and F-63, were injected subcutaneously, and caused inflammation followed by crust on the skin ICR-mice. 4. The observation method of skin-necrotizing effect to the mice can be used to the screening to the toxin-producing fungi isolated from many fusarial contaminations.

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