ATCC8730

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代购价格:询价

联系方式:I47-825O-882O

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ATCC8730标准菌株基本信息

出品公司: ATCC
菌种名称: ATCC8730, ATCC 8730
菌种又名: NRRL 1887 [CBS 304.48, FRR 778, IMI 40232, LSHB P146, QM 6838]
菌株类型: 瘿青霉,Penicillium fellutanum
存储人: NRRL
分离来源: 意大利玉米,英国
产品目录号: 8730
其他保藏库编号: BCRC32728,ATCC 8730 ;CBS 304.48 ;FRR 778 ;IMI 40232 ;NRRL 1887 ;QM 6838
培养基: ATCC® Medium 325: Malt extract agar (Blakeslee's formula)
生长条件: 24 ℃
生物安全等级: 1
模式菌株:
应用: 科研,生产,主要用于产生Carlosic酸,产生碳酸,生产脱醇N,N-二甲基乙醇胺,产生外显子α甘露糖苷酶,产生外-β-D-半乳糖天王星苷酶,产生糖肽,生产磷酸半乳甘露聚糖肽磷酸甘露聚糖,产生多糖
菌株特点:
ATCC 8730是瘿青霉,Penicillium fellutanum 。
 
参考文献:
Preston JF, Gander JE. Isolation and partial characterization of the extracellular polysaccharides of Penicillium charlesii. I. Occurrence of galactofuranose in high molecular weight polymers. Arch. Biochem. Biophys. 124: 504-512, 1968. PubMed: 5661620
 
Preston JF III, et al. Isolation and partial characterization of the exocellular polysaccharides of Penicillium charlesii. II. The occurrence of phosphate groups in high molecular weight polysaccharides. Arch. Biochem. Biophys. 134: 316-323, 1969. PubMed: 4311177
 
Preston JF, et al. Isolation and partial characterization of the exocellular polysaccharides of Penicillium charlesii. III. Heterogeneity in size and composition of high molecular weight exocellular polysaccharides. Arch. Biochem. Biophys. 134: 324-334, 1969. PubMed: 5354765
 
Preston JF, et al. Immunological investigations of Penicillium. I. Serological reactivities of exocellular polysaccharides produced by six Penicillium species. Can. J. Microbiol. 16: 687-694, 1970. PubMed: 5530118
 
Smith G. Some new species of Penicillium. Trans. Br. Mycol. Soc. 18: 88-91, 1933.
 
Gander JE, et al. The 5-O-beta-D-galactofuranosyl-containing exocellular glycopeptide of Penicillium charlesii. Characterization of the phosphogalactomannan. J. Biol. Chem. 249: 2063-2072, 1974. PubMed: 4274234
 
Gander JE, et al. 5-O-beta-D-Galactofuranosyl-containing exocellular glycopeptide of Penicillium charlesii. Incorporation of mannose from GPD-D-mannose into glycopeptide. J. Biol. Chem. 252: 2187-2193, 1977. PubMed: 849928
 
Rietschel-Berst M, et al. Extracellular exo-beta-galactofuranosidase from Penicillium charlesii: isolation, purification, and properties. J. Biol. Chem. 252: 3219-3226, 1977. PubMed: 863879
 
Rick PD, et al. The 5-O-beta-D-galactofuranosyl-containing exocellular glycopeptide of Penicillium charlesii. Occurrence of ethanolamine and partial characterization of the peptide portion and the carbohydrate-peptide linkage. J. Biol. Chem. 249: 2073-2078, 1974. PubMed: 4818823
 
Gander JE. The occurrence of N,N-dimethylethanolamine in the 5-o-beta-D-galactofuranosyl-containing exocellular glycopeptide of Penicillium charlesii. Exp. Mycol. 1: 1-8, 1977.
 
Preston JF, et al. The appearance of exo-alpha-mannosidase in cultures of Penicillium charlesii. Arch. Mikrobiol. 88: 71-76, 1973. PubMed: 4683981
 
Pletcher CH, et al. Factors affecting the accumulation of exocellular exo-beta-D-galactofuranosidase and other enzymes from Penicillium charlesii. Exp. Mycol. 5: 133-139, 1981.
 
Reffstrup T, Boll PM. Aspects of the biosynthesis of carolic and carlosic acids in Penicillium charlesii. A 13C NMR study. Acta Chem. Scand. Ser. B Org. Chem. Biochem. 34: 653-659, 1980.
 
Tuekam BA, et al. Relationship of exo-beta-D-galactofuranosidase kinetic parameters to the number of phosphodiesters in Penicillium fellutanum peptidophosphogalactomannan: enzyme purification and kinetics of glycopeptide and galactofuran chain hydrolysis. Appl. Environ. Microbiol. 67: 4648-4656, 2001. PubMed: 11571168
 
Salt SD, Gander JE. Variations in phosphoryl substituents in extracellular peptidophosphogalactomannans from Penicillium charlesii G. Smith. Exp. Mycol. 9: 9-19, 1985.
 
type strain of Penicillium charlesii
 
type strain of Penicillium charlesii

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