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Selection of a Thermophilic Alkalitolerant Actinomycete and Conditions for CMCase Production

Selection of a Thermophilic Alkalitolerant Actinomycete and Conditions for CMCase Production
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摘要 Five thermophilic strains that can degrade cellulose were isolated from the compost of a waste management in Guangzhou, China. Since one of them degraded cellulose effectively, it was chosen as the study strain. Based on its morphology, spores′ susceptibility to heat, cell wall composition and other characteristics, the organism was classified as Thermomonospora fusca. Conditions for production of carboxy methyl cellulase (CMCase) were examined. The optimal temperature and pH value for enzyme production were 50 ℃ and 10.5, respectively. Cellulosic materials and easily metabolisable carbohydrates served as carbon sources for the growth of the strain. Only cotton, avicel,carboxy methyl cellulose (CMC) acted as potent inducers for the production of cellulases by this strain. Despite excellent growth on easily metabolisable carbohydrates, only constitutive levels of cellulases were produced. The optimal carbon and nitrogen sources for CMCase production were cotton and soybean respectively. The high thermostability, wide pH stability, and cheap nitrogen source show well potential use for composting treatment and commercial detergents. Five thermophilic strains that can degrade cellulose were isolated from the compost of a waste management in Guangzhou, China. Since one of them degraded cellulose effectively, it was chosen as the study strain. Based on its morphology, spores′ susceptibility to heat, cell wall composition and other characteristics, the organism was classified as Thermomonospora fusca. Conditions for production of carboxy methyl cellulase (CMCase) were examined. The optimal temperature and pH value for enzyme production were 50 ℃ and 10.5, respectively. Cellulosic materials and easily metabolisable carbohydrates served as carbon sources for the growth of the strain. Only cotton, avicel,carboxy methyl cellulose (CMC) acted as potent inducers for the production of cellulases by this strain. Despite excellent growth on easily metabolisable carbohydrates, only constitutive levels of cellulases were produced. The optimal carbon and nitrogen sources for CMCase production were cotton and soybean respectively. The high thermostability, wide pH stability, and cheap nitrogen source show well potential use for composting treatment and commercial detergents.
出处 《Transactions of Tianjin University》 EI CAS 2005年第3期204-208,共5页 天津大学学报(英文版)
关键词 ACTINOMYCETES Thermomonospora fusca carboxy methyl cellulase (CMCase) 放射菌类 喜温性 羧甲基纤维素 CMCase 匀聚物
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参考文献4

  • 1I. Gomes,J. Gomes,D. J. Gomes,W. Steiner.Simultaneous production of high activities of thermostable endoglucanase and β-glucosidase by the wild thermophilic fungus Thermoascus aurantiacus[J].Applied Microbiology and Biotechnology.2000(4)
  • 2Ningjun Cao,Youkun Xia,Cheng S. Gong,George T. Tsao.Production of 2,3- butanediol from pretreated corn cob byKlebsiella oxytoca in the presence of fungal cellulase[J].Applied Biochemistry and Biotechnology.1997(1)
  • 3Sridevi Rajaram,Ajit Varma.Production and characterization of xylanase from Bacillus thermoalkalophilus grown on agricultural wastes[J].Applied Microbiology and Biotechnology.1990(1)
  • 4Wataru Okazaki,Teruhiko Akiba,Koki Horikoshi,Ryoich Akahoshi.Production and properties of two types of xylanases from alkalophilic thermophilic Bacillus spp.[J].Applied Microbiology and Biotechnology.1984(5)

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