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Candida albicans (Robin) Berkhout
Candida albicans (Robin) Berkhout
規(guī)格:
貨期:
編號:B166016
品牌:Mingzhoubio

標(biāo)準(zhǔn)菌株
定量菌液
DNA
RNA

規(guī)格:
凍干粉
斜面
甘油
平板


產(chǎn)品名稱 Candida albicans (Robin) Berkhout
商品貨號 B166016
Strain Designations 3147 [CBS 6431, CCY 29-3-106, CIP 48.72, DSM 1386, IFO 1594, NCPF 3179, NCYC 1363, NIH 3147, VTT C-85161]
Application
Assay of amphotericin B fungizone
Assay of antimicrobial preservatives
Assay of haloprogin
Assay of nystatin fungicidin
Media testing
Membrane filter testing
Preparatory test control
Produces D-arabinolactone oxidase
Produces DNA topoisomerase
Food testing
Pharmaceutical and Personal Care
Produces aspartic proteinases aspartyl proteinases
Produces estrogen-binding protein
Produces lanosterol synthase 2,3-oxidosqualene lanosterol cyclase
Produces phenethyl alcohol
Produces polyamine oxidase
Produces tryptophol
Quality control strain
Sterility testing
Testing
Testing fungicides
Produces farnesoic acid, an autoregulatory substance capable of regulating morphological transition
Reference strain for performance testing culture media listed by the ISO TC 34 SC 9 Joint Working Group 5 in the ISO 11133 and by the Working Party on Culture Media of the International Committee on Food Microbiology and Hygiene (ICFMH-WPCM)
This strain is recommended by ATCC for use in the tests described in ASTM Standard Test Method E979-91 where only the taxon is specified.
Biosafety Level 1

Biosafety classification is based on U.S. Public Health Service Guidelines, it is the responsibility of the customer to ensure that their facilities comply with biosafety regulations for their own country.

Product Format freeze-dried
Storage Conditions Frozen: -80°C or colder
Freeze-Dried: 2°C to 8°C
Live Culture: See Propagation Section
Type Strain no
Antigenic Properties Serotype A RefWagner T, et al. pH-dependent denaturation of extracellular aspartic proteinases from Candida species. J. Med. Vet. Mycol. 33: 275-278, 1995. PubMed: 8531028
Preceptrol® no
Genome Sequenced Strain

Yes

Comments
Genome sequencing strain (Xiamen Medical College, China)
This strain is recommended by ATCC for use in the tests described in ASTM Standard Test Method E979-91 where only the taxon is specified.
For sterility testing, not more than five passages from the ATCC culture should be used
Growth and invasiveness in mouse
Steroid interference with antifungal activity
Cell wall hydrophobicity enhances corticosterone incorporation
Ultraviolet microscopy
Calcification
Morphology and physiology of strain sectors
Use of impedance for preservative efficacy testing
Fungitoxicity of alcohols and fatty acids
Esterase activity
Lipid composition
Effect of antineoplastic drugs
Morphology On YEPD agar after 2 days at 25°C, colonies are cream-colored, shiny, and smooth. Older colonies show filaments-like structure at the margin and may have ridges or folders. Cells are ovoid (3.0-6.0 x 4.0-8.0 μm), budding, mostly singly and rarely clustered in young culture. Cells will elongate and form chain-like branched pseudohyphae in older culture.
Medium ATCC® Medium 200: YM agar or YM broth
ATCC® Medium 28: Emmons' modification of Sabouraud's agar
ATCC® Medium 1245: YEPD
Growth Conditions
Temperature: 24°C to 26°C
Atmosphere: Typical aerobic
Viability post-FreezeViability test
Sequenced Data
18S ribosomal RNA gene, partial sequence; internal transcribed spacer 1, 5.8S ribosomal RNA gene, and internal transcribed spacer 2, complete sequence; and 26S ribosomal RNA gene, partial sequence

GGTTTCCGTAGGTGAACCTGCGGAAGGATCATTACTGATTTGCTTAATTGCACCACATGTGTTTTTCTTTGAAACAAACTTGCTTTGGCGGTGGGCCCAGCCTGCCGCCAGAGGTCTAAACTTACAACCAATTTTTTATCAACTTGTCACACCAGATTATTACTAATAGTCAAAACTTTCAACAACGGATCTCTTGGTTCTCGCATCGATGAAGAACGCAGCGAAATGCGATACGTAATATGAATTGCAGATATTCGTGAATCATCGAATCTTTGAACGCACATTGCGCCCTCTGGTATTCCGGAGGGCATGCCTGTTTGAGCGTCGTTTCTCCCTCAAACCGCTGGGTTTGGTGTTGAGCAATACGACTTGGGTTTGCTTGAAAGACGGTAGTGGTAAGGCGGGATCGCTTTGACAATGGCTTAGGTCTAACCAAAAACATTGCTTGCGGCGGTAACGTCCACCACGTATATCTTCAAACTTTGACCTCAAATCAGGTAGGACTACCCGCTGAACTTAAGCATATCAATAA


D1D2 region of the 26S ribosomal RNA gene

ATATCAATAAGCGGAGGAAAAGAAACCAACAGGGATTGCCTCAGTAGCGGCGAGTGAAGCGGCAAAAGCTCAAATTTGAAATCTGGCGTCTTTGGCGTCCGAGTTGTAATTTGAAGAAGGTATCTTTGGGCCCGGCTCTTGTCTATGTTCCTTGGAACAGGACGTCACAGAGGGTGAGAATCCCGTGCGATGAGATGACCCGGGTCTGTGTAAAGTTCCTTCGACGAGTCGAGTTGTTTGGGAATGCAGCTCTAAGTGGGTGGTAAATTCCATCTAAAGCTAAATATTGGCGAGAGACCGATAGCGAACAAGTACAGTGATGGAAAGATGAAAAGAACTTTGAAAAGAGAGTGAAAAAGTACGTGAAATTGTTGAAAGGGAAGGGCTTGAGATCAGACTTGGTATTTTGCATGCTGCTCTCTCGGGGGCGGCCGCTGCGGTTTACCGGGCCAGCATCGGTTTGGAGCGGCAGGATAATGGCGGAGGAATGTGGCACGGCTTCTGCTGTGTGTTATAGCCTCTGACGATACTGCCAGCCTAGACCGAGGACTGCGGTTTTTAACCTAGGATGTTGGCATAATGATCTTAA

Name of Depositor CW Emmons
Special Collection ATCC
Chain of Custody
ATCC <-- CW Emmons <-- Wright
Isolation
Man with bronchomycosis
Cross References

Nucleotide (GenBank) : KU729138 D1/D2 region of 26S rRNA gene

Nucleotide (GenBank) : D86430 Candida albicans gene for CaRho1, complete cds.

Nucleotide (GenBank) : AX109674 Sequence 407 from Patent WO0123604.

Nucleotide (GenBank) : X56867 C. albicans gene for secretory aspartate proteinase.

Nucleotide (GenBank) : AF031229 Candida albicans alternative oxidase (AOX1) gene, complete cds.

Nucleotide (GenBank) : U38534 Candida albicans alpha-tubulin (TUB1) gene, complete cds.

Nucleotide (GenBank) : L22737 Candida albicans inositol-1-phosphate synthase (IN01) gene, complete cds.

Nucleotide (GenBank) : AF031228 Candida albicans D-arabinono-1,4-lactone oxidase (ALO) gene,

Nucleotide (GenBank) : U40454 Candida albicans topoisomerase type I (CATOP1) gene, complete cds.

Nucleotide (GenBank) : EU266569 ITS including 5.8S rRNA gene

References

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Skowronski R, Feldman D. Characterization of an estrogen-binding protein in the yeast Candida albicans. Endocrinology 124: 1965-1972, 1989. PubMed: 2647470

Connolly P, et al. The use of impedance for preservative efficacy testing of pharmaceuticals and cosmetic products. J. Appl. Bacteriol. 76: 68-74, 1994. PubMed: 8144407

Klig LS, et al. Comparison of INO1 gene sequences and products in Candida albicans and Saccharomyces cerevisiae. Yeast 10: 789-800, 1994. PubMed: 7975896

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Shen LL, et al. DNA topoisomerases from pathogenic fungi: targets for the discovery of antifungal drugs. Antimicrob. Agents Chemother. 36: 2778-2784, 1992. PubMed: 1336349

Wagner T, et al. pH-dependent denaturation of extracellular aspartic proteinases from Candida species. J. Med. Vet. Mycol. 33: 275-278, 1995. PubMed: 8531028

Rudek W. Esterase activity in Candida species. J Clin Microbiol 8: 756-759, 1978. PubMed: 370150

Phillips AW, Balish E. Growth and invasiveness of Candida albicans in the germ-free and conventional mouse after oral challenge. Appl. Microbiol. 14: 737-741, 1966. PubMed: 5970461

Zygmunt WA, Tavormina PA. Steroid interference with antifungal activity of polyene antibiotics. Appl. Microbiol. 14: 865-869, 1966.

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. . Dev. Ind. Microbiol. 21: 373-378, 1980.

Saltarelli CG. Morphological and physiological variations between sectors isolated from giant colonies of Candida albicans and C. stellatoidea. Mycopathol Mycol Appl 34: 209-220, 1968.

Braun PC. Surface hydrophobicity enhances corticosterone incorporation in Candida albicans. Infect. Immun. 62: 4087-4090, 1994. PubMed: 8063431

Balish E, Svihla G. Ultraviolet microscopy of Candida albicans. J. Bacteriol. 92: 1812-1820, 1966. PubMed: 5958110

Balliano G, et al. Inhibition of sterol biosynthesis in Saccharomyces cerevisiae and Candida albicans by 22,23-epoxy-2-aza-2,3-dihydrosqualene and the corresponding N-oxide. Antimicrob. Agents Chemother. 38: 1904-1908, 1994. PubMed: 7810997

Huh WK, et al. Characterisation of D-arabinono-1,4-lactone oxidase from Candida albicans ATCC 10231. Eur. J. Biochem. 225: 1073-1079, 1994. PubMed: 7957197

Ennever J, Summers FE. Calcification by Candida albicans. J. Bacteriol. 122: 1391-1393, 1975. PubMed: 238948

Lerner CG, Goldman RC. Stimuli that induce production of Candida albicans extracellular aspartyl proteinase. J. Gen. Microbiol. 139: 1643-1651, 1993. PubMed: 7690395

European Pharmacopoeia Commission Microbial contamination of products not required to comply with the test for sterility (total viable aerobic count). Strasbourg, France:European Pharmacopoeia Commission;European Pharmacopoeia EP 2.6.12, 1997

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US Food & Drug Administration. GENERAL BIOLOGICAL PRODUCTS STANDARDS; General Provisions; Sterility Code of Federal Regulations Title 21: 21CFR610.12, Subpart B, 2005

U.S. Pharmacopeia General Chapters:<51> ANTIMICROBIAL EFFECTIVENESS TESTING. Rockville, MD:U.S. Pharmacopeia;USP USP34-NF29, 2011

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Huh WK, Kang SO. Molecular cloning and functional expression of alternative oxidase from Candida albicans. J. Bacteriol. 181: 4098-4102, 1999. PubMed: 10383980

Oh KB, et al. Purification and characterization of an autoregulatory substance capable of regulating the morphological transition in Candida albicans. Proc. Natl. Acad. Sci. USA 98: 4664-4668, 2001. PubMed: 11274356

Isobe K, et al. Differential determination procedure for putrescine, spermidine and spermine with polyamine oxidase from fungi and putrescine oxidase. Agric. Biol. Chem. 45: 727-733, 1981.

Yamada H, et al. Oxidation of polyamines by fungal enzymes. Agric. Biol. Chem. 44: 2469-2476, 1980.

Bowman FW, et al. Collaborative study of aerobic media for sterility testing by membrane filtration. J. Pharm. Sci. 60: 1087-1088, 1971. PubMed: 5000479

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YT MicroPlate QC Set. Biolog.

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