Taxon Name
Naganishia albida (Saito) X.Z. Liu, F.Y. Bai, M. Groenew. & Boekhout
Accession number
6110
Form of supply
agar slant
Synonymous
Cryptococcus albidus (Saito) C.E. Skinner et al., Rhodotorula albida (Saito) Galg?czy & E.K. Novák, Torula albida Saito, Torulopsis albida (Saito) Lodder var. albida, Torulopsis neoformans (Sanfelice) Redaelli var. albida (Saito) W. Kaufman, Cryptococcus
Restrictions on use
For research use only
Nagoya protocol compliance conditions
Not under the scope of the CBD and the Nagoya protocol
Other Collections numbers
ATCC 10666; CBS 142; CCRC 21672; IFO 0378; IGC 2409; JCM 2334; MUCL 30400; NCYC 445; NRRL Y-1400; VKM Y-2223; UCD 68-150
Risk Group
1
GMO
No
Status of the strain
Isotype of Torula albida Saito
Isolation source
air
Isolation Locality
JPN – Japan
Received from
Miller – UCD, Davis, CA, USA
LSU (D1/D2)
Naganishia_albida_DBVPG6110_D1D2
TGGTAGCCTTCGGTTGCCCGAGTTGTAATCTAGAGAAGTGTTTTCCGTGCCGGCCCATGT
ACAAGTCCCTTGGAACAGGGCGTCATAGAGGGTGAGAATCCCGTCCTTGACATGGACCCC
CGGTGCTTTGTGATACACTTTCAACGAGTCGAGTTGTTTGGGAATGCAGCTCAAAATGGG
TGGTGAATTCCATCTAAAGCTAAATATTGGCGAGAGACCGATAGCGAACAAGTACCGTGA
GGGAAAGATGAAAAGCACTTTGGAAAGAGAGTTAAACAGTACGTGAAATTGTTGAAAGGG
AAACGATTGAAGTCAGTCATGCTCTTGGGACTTACCTCCCTTGAGTGGGGTCAACATCAG
TTTTGATCGATGGATAAAGGCACGGGGAAGGTAGCACTCTCGGGTGAACTTATAGCCTCG
CGTCATATACATTGATTGGGACTGAGGAACGCAGCATGCCTTATGGCCGGGATTCGTCCA
CGTACATGCTTAGGATGTTGACATAATGGCTTTAAACGACCCGTCTTG
18S rRNA
GenBank D31655
ITS1&2
GenBank AF145321; Naganishia_albida_DBVPG6110_ITS CATCATATCCATAACACCTGTGCACTTGTCGGATGGCTTAGTGAAGACCGCAAGGTTGAA
TCTATCCATCTACTTTACATAACAATTCTGTAACAAATGTAGTCTTATTATAACATAATA
AAACTTTCAACAACGGATCTCTTGGCTCTCGCATCGATGAAGAACGCAGCGAAATGCGAT
AAGTAATGTGAATTGCAGAATTCAGTGAATCATCGAATCTTTGAACGCACCTTGCGCTCC
TTGGTATTCCGAGGAGCATGCCTGTTTGAGTGTCATGAAAACCCTCAACCCTAGATTGGT
TAAAACCTCTCTTTGGTTTGGATTTGGACGTTTGCCGATGATAAGTCGGCTCGTCTTAAA
AGTAATAGCTGGATCTGTCTCGCGACATGGTTTGACTTGGCGTAATAAGTATTTCGCTAA
GGACATCTTCGGATGGCCGCGTTGCAGGACTAAAGACCGCTTTCTAATCCATTGATCTTC
GGATTAATACTCTTGACATCTGGCCTCAAATCAGGTAGGACTACCCGCTGAACTTAAGCA
TATCAATAAGCGGAGGAAAAGAAACTAACAAGGATTCCCCTAGTAACGGCGAGTGAAGCG
GGAAGAGCTCAAATTTGAAATCTGGTAGCCTTCGGTTGCCCGAGTTGTAATCTAGAGAAG
TGTTTTCCGTGCCGGCCCATGTACAAGTCCCTTGGAACAGGGCGTCATAGAGGGTGAGAA
TCCCGTCCTTGACATGGACCCCCGGTGCTTTGTGATACACTTTCAACGAGTCGAGTTGTT
TGGGAATGCAGCTCAAAATGGGTGGTGAATTCCATCTAAAGCTAAATATTGGCGAGAGAC
CGATAGCGAACAAGTACCGTGAGGGAAAGATGAAAAGCACTTTGGAAAGAGAGTTAAACA
GTACGTGAAATTGTTGAAAGGGAAACGATTGAAGTCAGTCATGCTCTTGGGACTTACCTC
CCTTGAGTGGGGTCAACATCAGTTTTGATCGATG
Recommended growth temperature
25°C
Recommended growth medium
PDA (Potato Dextrose Agar)
References
Kooiman. The chemical structure of the extracellular “Starch” produced by Cryptococcus albidus and C. laurentii var. flavescens. A.v.Leeuwenhoek (1963), 29: 169-176 DOI: 10.1007/BF02046049
Scorzetti et al.. Cryptococcus adeliensis sp. nov., a xylanase producing basidiomycetous yeast from Antarctica. A.v.Leeuwenhoek (2000), 77: 153-157 DOI: 10.1023/A:1002124504936
Fukuda et al.. Microbial production of C3- and C4-hydrocarbons. Agric.Biol.Chem. (1984), 48: 1679-1682
Vaughan-Martini. Intraspecific discontinuity within the yeast speciesCryptococcus albidus as revealed bynDNA/nDNAreassociation. Exptl.Mycol. (1991), 15: 140-145 DOI: 10.1016/0147-5975(91)90014-5
Fell et al.. Cystofilobasidiales, a new order of basidiomycetous yeasts. Int.J.Syst.Bacteriol. (1999), 49: 907-913 DOI: 10.1099/00207713-49-2-907
Chen et al. Polymorphic Internal Transcribed Spacer Region 1 DNA Sequences Identify Medically Important Yeasts. J.Clin.Microbiol. (2001), 39: 4042-4051 DOI: 10.1128/JCM.39.11.4042-4051.2001
Sugita et al.. DNA RELATEDNESS AMONG THE THREE VARIETIES OF CRYPTOCOCCUS ALBIDUS. J.Gen.Appl.Microbiol. (1992), 38: 83-86 DOI: 10.2323/jgam.38.83
Saito. Untersuchungen uber die atmospharischen Pilzkeime. Jpn.J.Bot. (1922), 1: 1-54
Ikeda et al.. Comparison of Serological and Chemical Characteristics of Capsular Polysaccharides of Cryptococcus neoformans var. neoformans Serotype A and Cryptococcus albidus var. albidus. Microbiol.Immunol. (1991), 35: 125-138 DOI: 10.1111/j.1348-0421.1991.tb01540.x
Sugita et al.. Intraspecies Diversity of Cryptococcus albidus Isolated from Humans as Revealed by Sequences of the Internal Transcribed Spacer Regions. Microbiol.Immunol. (2001), 45: 291-297 DOI: 10.1111/j.1348-0421.2001.tb02621.x Citations: 26
Vancanneyt et al.. Whole-cell Protein Patterns, DNA Base Compositions and Coenzyme Q Types in the Yeast Genus Cryptococcus Kützing and Related Taxa. Syst.Appl.Microbiol. (1994), 17: 65-75 DOI: 10.1016/S0723-2020(11)80033-0
Scorzetti et al.. Cryptococcus adeliensis sp. nov., a xylanase producing basidiomycetous yeast from Antarctica. A.v.Leeuwenhoek (2000), 77: 153-157 DOI: 10.1023/A:1002124504936
Fukuda et al.. Microbial production of C3- and C4-hydrocarbons. Agric.Biol.Chem. (1984), 48: 1679-1682
Vaughan-Martini. Intraspecific discontinuity within the yeast speciesCryptococcus albidus as revealed bynDNA/nDNAreassociation. Exptl.Mycol. (1991), 15: 140-145 DOI: 10.1016/0147-5975(91)90014-5
Fell et al.. Cystofilobasidiales, a new order of basidiomycetous yeasts. Int.J.Syst.Bacteriol. (1999), 49: 907-913 DOI: 10.1099/00207713-49-2-907
Chen et al. Polymorphic Internal Transcribed Spacer Region 1 DNA Sequences Identify Medically Important Yeasts. J.Clin.Microbiol. (2001), 39: 4042-4051 DOI: 10.1128/JCM.39.11.4042-4051.2001
Sugita et al.. DNA RELATEDNESS AMONG THE THREE VARIETIES OF CRYPTOCOCCUS ALBIDUS. J.Gen.Appl.Microbiol. (1992), 38: 83-86 DOI: 10.2323/jgam.38.83
Saito. Untersuchungen uber die atmospharischen Pilzkeime. Jpn.J.Bot. (1922), 1: 1-54
Ikeda et al.. Comparison of Serological and Chemical Characteristics of Capsular Polysaccharides of Cryptococcus neoformans var. neoformans Serotype A and Cryptococcus albidus var. albidus. Microbiol.Immunol. (1991), 35: 125-138 DOI: 10.1111/j.1348-0421.1991.tb01540.x
Sugita et al.. Intraspecies Diversity of Cryptococcus albidus Isolated from Humans as Revealed by Sequences of the Internal Transcribed Spacer Regions. Microbiol.Immunol. (2001), 45: 291-297 DOI: 10.1111/j.1348-0421.2001.tb02621.x Citations: 26
Vancanneyt et al.. Whole-cell Protein Patterns, DNA Base Compositions and Coenzyme Q Types in the Yeast Genus Cryptococcus Kützing and Related Taxa. Syst.Appl.Microbiol. (1994), 17: 65-75 DOI: 10.1016/S0723-2020(11)80033-0
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