Taxon Name
Pichia kudriavzevii Boidin, Pignal & Besson
Accession number
7235
Form of supply
agar slant
Synonymous
Issatchenkia orientalis Kudryavtsev, Monilia krusei (Castellani) Castellani & Chalmers, Pichia kudriavzevii Boidin et al., Pichia orientalis (Kudryavtsev) Kreger-van Rij, Candida acidothermophilum Masuda et al., Candida brassicae Y. Amano et al., Candida
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 749; ATCC 6258; CBS 573; CCRC 20514; IFO 1064; IFO 1395; JCM 1609; KCTC 7213; NRRL Y-413; NRRL Y-7179
Risk Group
1
GMO
No
Status of the strain
Isotype of Saccharomyces krusei Castellani
Received from
Kurtzman – NRRL, Peoria, IL, USA
Date of deposit
07/06/2000
LSU (D1/D2)
GenBank AY497684
18S rRNA
GenBank AB053239
ITS1&2
GenBank AY533547
Recommended growth temperature
25°C
Recommended growth medium
YPDA (Yeast Extract Peptone Glucose Agar)
References
Park et al.. Specific Substitutions in the Echinocandin Target Fks1p Account for Reduced Susceptibility of Rare Laboratory and Clinical Candida sp. Isolates. Antimicrob.Agents Chemother. (2005), 49: 3264-3273 DOI: 10.1128/AAC.49.8.3264-3273.2005
Kahn et al.. Acquired Echinocandin Resistance in a Candida krusei Isolate Due to Modification of Glucan Synthase. Antimicrob.Agents Chemother. (2007), 51: 1876-1878 DOI: 10.1128/AAC.00067-07
Yamada et al.. The Phylogeny of Species of the Genus Issatchenkia Kudriavzev (Saccharomycetaceae) Based on the Partial Sequences of 18S and 26S Ribosomal RNAs. Biosci.Biotechnol.Biochem. (1997), 61: 577-582 DOI: 10.1271/bbb.61.577
Daniel, Meyer. Evaluation of ribosomal RNA and actin gene sequences for the identification of ascomycetous yeasts. Int.J.Food Microbiol. (2003), 86: 61-78 DOI: 10.1016/S0168-1605(03)00248-4
Daniel et al.. Partial sequence analysis of the actin gene and its potential for studying the phylogeny of Candida species and their teleomorphs. Int.J.Syst.Evol.Microbiol. (2001), 51: 1593-1606 DOI: 10.1099/00207713-51-4-1593
Diezmann et al.. Phylogeny and evolution of medical species of candida and related taxa: A multigenic analysis. J.Clin.Microbiol. (2004), 42: 5624-5635 DOI: 10.1128/JCM.42.12.5624-5635.2004
Shin et al. THE SIGNIFICANCE OF ITS-RFLPs AND COENZYME Q SYSTEM IN DETERMINING TAXONOMIC RELATIONSHIPS AMONG CANDIDA SPECIES. J.Gen.Appl.Microbiol. (1996), 42: 481-491 DOI: 10.2323/jgam.42.481
Stenderup Bak. Deoxyribonucleic Acid Base Composition of Some Species within the Genus Candida. J.Gen.Microbiol. (1968), 52: 231-236 DOI: 10.1099/00221287-52-2-231
Buzzini et al.. Large-scale screening of the in vitro susceptibility of Prototheca zopfii towards polyene antibiotics. Med.Mycol. (2008), 46: 511-514 DOI: 10.1080/13693780801993611
Suzuki, Nakase. Cellular neutral sugar compositions and ubiquinone systems of the genus Candida. Microbiol.Cult.Coll. (1998), 14: 49-62
Yamada et al.. Phylogenetic relationships among medically important yeasts based on sequences of mitochondrial large subunit ribosomal RNA gene. Mycoses (2004), 47: 24-28 DOI: 10.1046/j.0933-7407.2003.00942.x
Castellani. Philippine J.Sci., Ser.B (1910), 5: 197-207
Sugita, Nakase. Non-universal Usage of the Leucine CUG Codon and the Molecular Phylogeny of the Genus Candida. Syst.Appl.Microbiol. (1999), 22: 79-86 DOI: 10.1016/S0723-2020(99)80030-7

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