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1.
Braz. j. microbiol ; 45(4): 1293-1302, Oct.-Dec. 2014. ilus, graf, tab
Article Dans Anglais | LILACS | ID: lil-741279

Résumé

Xylanase (EC 3. 2. 1. 8), hydrolyzes xylo-oligosaccharides into D-xylose and required for complete hydrolysis of native cellulose and biomass conversion. It has broad range of applications in the pulp and paper, pharmaceutical and Agri-food industries. Fifty fungal species were isolated from the fouled soil around an oil refinery and screened for the production of xylanase enzyme by enrichment culture techniques. The isolated fungal strain was identified as Hypocrea lixii SS1 based on the results of biochemical tests and 18s rRNA sequencing. The phylogenetic tree was constructed using the MEGA 5 software. Further, Hypocrea lixii SS1 was tested for the ability to utilize the sunflower oil sludge (waste from the oil industry) as the sole carbon source for xylanase production. The growth characteristics of Hypocrea lixii SS1 were also studied and maximum growth was found on the 7th day of incubation. The fungus showed a remarkable xylanase production of 38.9 U/mL. Xylanase was purified using a combination of 0-50% NH4SO2 precipitation, DEAE-sepharose and Sephacryl S-200 chromatography. Single peak obtained in RP-HPLC confirms the purity of xylanase. Further the enzyme produced was affirmed as xylanase with its molecular weight (29 kDa) using SDS-PAGE.


Sujets)
Microbiologie du sol , Trichoderma/classification , Trichoderma/isolement et purification , Xylosidases/analyse , Chromatographie en phase liquide , Analyse de regroupements , ADN fongique/composition chimique , ADN fongique/génétique , ADN ribosomique/composition chimique , ADN ribosomique/génétique , Électrophorèse sur gel de polyacrylamide , Données de séquences moléculaires , Masse moléculaire , Techniques de typage mycologique , Phylogenèse , /génétique , Analyse de séquence d'ADN , Trichoderma/enzymologie , Trichoderma/croissance et développement , Xylosidases/composition chimique , Xylosidases/isolement et purification
2.
Braz. j. microbiol ; 45(4): 1459-1467, Oct.-Dec. 2014. ilus, graf, tab
Article Dans Anglais | LILACS | ID: lil-741301

Résumé

Plant cell wall is mainly composed by cellulose, hemicellulose and lignin. The heterogeneous structure and composition of the hemicellulose are key impediments to its depolymerization and subsequent use in fermentation processes. Thus, this study aimed to perform a screening of thermophilic and thermotolerant filamentous fungi collected from different regions of the São Paulo state, and analyze the production of β-xylosidase and arabinanase at different temperatures. These enzymes are important to cell wall degradation and synthesis of end products as xylose and arabinose, respectively, which are significant sugars to fermentation and ethanol production. A total of 12 fungal species were analyzed and 9 of them grew at 45 ºC, suggesting a thermophilic or thermotolerant character. Additionally Aspergillus thermomutatus anamorph of Neosartorya and A. parasiticus grew at 50 ºC. Aspergillus niger and Aspergillus thermomutatus were the filamentous fungi with the most expressive production of β-xylosidase and arabinanase, respectively. In general for most of the tested microorganisms, β-xylosidase and arabinanase activities from mycelial extract (intracellular form) were higher in cultures grown at high temperatures (35-40 ºC), while the correspondent extracellular activities were favorably secreted from cultures at 30 ºC. This study contributes to catalogue isolated fungi of the state of São Paulo, and these findings could be promising sources for thermophilic and thermotolerant microorganisms, which are industrially important due to their enzymes.


Sujets)
Aspergillus niger/enzymologie , Aspergillus niger/isolement et purification , Glycosidases/analyse , Neosartorya/enzymologie , Neosartorya/isolement et purification , Xylosidases/analyse , Aspergillus niger/croissance et développement , Aspergillus niger/effets des radiations , Brésil , Dépistage de masse , Neosartorya/croissance et développement , Neosartorya/effets des radiations , Température
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