產(chǎn)品名稱 | Filobasidiella neoformans Kwon-Chung, teleomorph |
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商品貨號(hào) | B170417 |
Deposited As | Cryptococcus neoformans (Sanfelice) Vuillemin |
Strain Designations | NIH B-3501 [CBS 6900, CBS 7697, CBS 7817, CCRC 20532] |
Application | Biomedical Research and Development Material
assay of eumelanin pigments Ref
![]() ![]() ![]() ![]() produces monophenol monooxygenase phenol oxidase, phenoloxidase Ref
![]() ![]() regulation of phenol oxidase and capsular polysaccharide Ref ![]() ![]() |
Biosafety Level | 2
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 D
Ref![]() ![]() ![]() ![]() |
Genotype | VNIV |
Preceptrol® | no |
Genome Sequenced Strain | Yes |
Mating Type | alpha
Ref![]() ![]() |
Comments | Designated as type strain of Cryptococcus deneoformans Hagen et Boekhout by Hagen et al. (2015).
Genome sequencing strain (The University of Oklahoma, USA).
Smooth colony type Ref
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Morphology | After 3 days on YM medium at 25°C, colony is cream-colored, mucoid. Cells are globose, single. No hyphae observed. |
Medium | ATCC® Medium 28: Emmons' modification of Sabouraud's agar ATCC® Medium 200: YM agar or YM broth ATCC® Medium 1245: YEPD |
Growth Conditions | Temperature: 25°C to 30°C Atmosphere: Typical aerobic |
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
GGTTTCCGTAGGTGAACCTGCGGAAGGATCAGTAGAGAATATTGGACTTTGGTCCATTTATCTACCCATCTACACCTGTGAACTGTTTATGTGCTTCGGCACGTTTTACACAAACTTCTAAATGTAATGAATGTAATCATATTATAACAATAATAAAACTTTCAACAACGGATCTCTTGGCTTCCACATCGATGAAGAACGCAGCGAAATGCGATAAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAGTCTTTGAACGCAACTTGCGCCCTTTGGTATTCCGAAGGGCATGCCTGTTTGAGAGTCATGAAAATCTCAATCCCTCGGGTTTTATTACCTGTTGGACTTGGATTTGGGTGTTTGCCGCGACCTGCAAAGGACGTCGGCTCGCCTTAAATGTGTTAGTGGGAAGGTGATTACCTGTCAGCCCGGCGTAATAAGTTTCGCTGGGCCTATGGGGTAGTCTTCGGCTTGCTGATAACAACCATCTCTTTTTGTTTGACCTCAAATCAGGTAGGGCTACCCGCTGAACTTAAGCATATCAATAA D1D2 region of the 26S ribosomal RNA gene ATATCAATAAGCGGAGGAAAAGAAACTAACAAGGATTCCCTTAGTAACGGCGAGTGAACCGGGAAGAGCTCAAATTTGAAATCTGGCGTCCTCCGGGCGTCCGAGTTGTAATCTACAGAAACGTTTTCCGTGCTGGACCGTGTCTAAGTCCCTTGGAATAGGGTATCAAAGAGGGTGACAATCCCGTACTTGACACGATCACCAGTGCTCTGTGATACGTTTTCTACGAGTCGCGTTACTTGGGAGTGTAGCGCAAAATGGGTGGTAAACTCCATCTAAAGCTAAATATTGGTGGAAGACCGATAGCGAACAAGTACCGTGAGGGAAAGATGAAAAGCACTTTGGAAAGAGAGTTAAACAGTACGTGAAATTGTTGAAAGGGAAACGATTGAAGTCAGTCGTGTCTATTGGGTTCAGCCAGTTCTGCTGGTGTATTCCCTTTAGACGGGTCAACATCAGTTCTGATCGGTGGATAAGGGCTGGAGGAATGTGGCACTCTTCGGGGTGTGTTATAGCCTCCTGTCGCATACACTGGTTGGGACTGAGGAATGCAGCTCGCCTTTATGGCCGGGGTTCGCCCACGTTCGAGCTTAGGATGTTGACAAAATGGCTTTAAACGAC 26S ribosomal RNA gene and intergenic spacer (IGS), partial sequence ATGGGAACGGGGTGCTGTAAGTGGTAGAGTAGCCTTGTTGCTACGATCCACTGAGGCTAAGCCCTTGTTCTATAGATTTGTCTCTAACATGTTGGGTCTCGGGGGGCTTCCTCTAGAGACTTGGATGTAAGGGGCTTTACGCATTCACATAATATTAGTTGGGGACTGAGGGGGGTGTGTGCTGTGCGAGCCCGGCTGATAATTGTTTTAATTGTTAGCTTGGATTGCACACACAGTCTCATCAGTCTTCAGCTTGGGTTATCGATATTCTGTAAGTCCAAACTTATCCATTCACATTCACTGTAGTGTAGGTTGCAGAGAGGACTTGGAAAGTTCTCTCTCTGCACTGGGCATACTACTGATTTTATGGTCATGGGGGACTTGGGAGCTGGTGCTTGTGTCGCATAAGGTAGAGTTGATGGTTGGACAGATAGATAAGCATTTTTATGTCGCGGGGGACTTGGGGTAAGACGCCTTGCAGCAAGTAAGAGAGTCAAACAGTAGTTACTTGTTCTAGTCGTGGGGGACTTTGGTAGTGGTAGTGAGCCGGAATGAGAGATGGATAAATGCAGTATGGATGGTGACAGGAGGAGCAGCAGAGCGTATGCAGTGGATATGTATATAGTTGAGAAGGGATGGACAGTAGAACGTTTGAACGTTGAGGAATAATTGACCCAAGGGTGATTCTAATAGACTTGTCAAGAAAAAGTTAAGTTGAATCAAGCTTGGTCAAGCAAAGTCTAGAAAAGATTTACAATCACCAAGAATTGCCCGAGTCGCGGGGGGCTTGTCACTTCTCTTGCTCATTGTGGGTCCAGTCT glycerol-3-phosphate dehydrogenase 1 (GPD1) gene, partial cds CAACGGTTTCGGTACGTAATCAATCCTTCTCTTCCCGTTGCTTCATATCCCACCGATGTGACTTCCAATATTGTGCGCTGGCTGTTCTTGAGTTATGGTAGCTAATAGCTATGTGATAGGTCGTATTGGTCGAATTGTTCTCAGGTATGCTTTCTTTAAGTCAACGGGGTAAGAAGCCCGTGTATCTAACGTTCAGGTAGGAACGCCATCGAGCATGGGGACCTCGAGGTTGTTGCTGTCAACGAGTGAGTGTCCCAAAAGTGTTAATCCATTAGATGAATCACTTAATTGTCCATAGCCCTTTTATTGACTTAGACTACATGGTATGATACTTCTTTCCGCCCAATAGCTTCGTACTGACTCTGTTGCGCAGGTCTACATGTTCAAGTATGACTCCGTAAGTCTCCCAAGTTCTAACGTTCTGTATGGCTTATTAACCTGATTTTCGACAGACACATGGTCGCTTCAAGGGCTCCGTCGAGGTTAAGGACGGTAAACTTTACATCAACAACAAGGCCATTGCCGTCTTCGGCGAGAAAGACCCTGCCAACATCAAGTGGGG |
Name of Depositor | KJ Kwon-Chung |
Isolation | Single-basidiospore isolate from a cross of ATCC 28957 x ATCC 28958. |
Cross References | Nucleotide (GenBank) : AF316889 Filobasidiella neoformans var. neoformans elongation factor 3 mRNA, complete cds. |
References | Salas SD, et al. Effect of the laccase gene, CNLAC1, on virulence of cryptococcus neoformans. J. Exp. Med. 184: 377-386, 1996. PubMed: 8760791 Schmeding KA, et al. Sexual compatibility between serotypes of Filobasidiella neoformans (Cryptococcus neoformans). Curr. Microbiol. 5: 133-138, 1981. Kwon-Chung KJ. Morphogenesis of Filobasidiella neoformans, the sexual state of Cryptococcus neoformans. Mycologia 68: 821-833, 1976. PubMed: 790172 Kwon-Chung KJ. Nuclear genotypes of spore chains in Filobasidiella neoformans (Cryptococcus neoformans). Mycologia 72: 418-422, 1980. PubMed: 6991936 Jacobson ES, Compton GM. Discordant regulation of phenoloxidase and capsular polysaccharide in Cryptococcus neoformans. J. Med. Vet. Mycol. 34: 289-291, 1996. PubMed: 8873890 Williamson PR, et al. Melanin biosynthesis in Cryptococcus neoformans. J. Bacteriol. 180: 1570-1572, 1998. PubMed: 9515929 Liu L, et al. Catecholamine oxidative products, but not melanin, are produced by Cryptococcus neoformans during neuropathogenesis in mice. Infect. Immun. 67: 108-112, 1999. PubMed: 9864203 Blakely G, et al. Evolutionary divergence of an elongation factor 3 from Cryptococcus neoformans. J. Bacteriol. 183: 2241-2248, 2001. PubMed: 11244063 Ikeda R, et al. Characterization of a phenol oxidase from Cryptococcus neoformans var. neoformans. Microbiol. Immunol. 37: 759-764, 1993. PubMed: 8289682 Kupfer DM, et al. Introns and splicing elements of five diverse fungi. Eukaryot. Cell 3(5): 1088-1100, 2004. PubMed: 15470237 Meyer W. et al. Consensus multi-locus sequence typing scheme for Cryptococcus neoformans and Cryptococcus gattii. Med. Mycol. 47(6):561-570, 2009. PubMed: 19462334 Hagen F, et al. Recognition of seven species in the Cryptococcus gattii/Cryptococcus neoformans species complex. Fungal Genet. Biol. 78: 16-48, 2015. PubMed: 25721988 Schmeding KA, et al. Sexual compatibility between serotypes of Filobasidiella neoformans (Cryptococcus neoformans). Curr. Microbiol. 5: 133-138, 1981. Kwon-Chung KJ. Morphogenesis of Filobasidiella neoformans, the sexual state of Cryptococcus neoformans. Mycologia 68: 821-833, 1976. PubMed: 790172 Kwon-Chung KJ. Nuclear genotypes of spore chains in Filobasidiella neoformans (Cryptococcus neoformans). Mycologia 72: 418-422, 1980. PubMed: 6991936 |
序號(hào) | 文章標(biāo)題 | 操作 |
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1 | ATCC細(xì)胞運(yùn)輸和處理 | 查看詳情 |
2 | 其他海外品牌代理 | 查看詳情 |
3 | ATCC代理 | 查看詳情 |
4 | 購(gòu)買須知 | 查看詳情 |
5 | 訂購(gòu)流程 | 查看詳情 |
梅經(jīng)理 | 17280875617 | 1438578920 |
胡經(jīng)理 | 13345964880 | 2438244627 |
周經(jīng)理 | 17757487661 | 1296385441 |
于經(jīng)理 | 18067160830 | 2088210172 |
沈經(jīng)理 | 19548299266 | 2662369050 |
李經(jīng)理 | 13626845108 | 972239479 |