Taxon Name
Tetrapisispora phaffii (Van der Walt) Ueda-Nishimura & Mikata
Accession number
6076
Form of supply
agar slant
Synonymous
Fabospora phaffii Van der Walt, Kluyveromyces phaffii Van der Walt
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 24235; CBS 4417; IFO 1672; NRRL Y-8282; UCD 70-5
Risk Group
1
GMO
No
Status of the strain
Isotype of Fabospora phaffii Van der Walt
Isolation source
uncultivated surface soil
Isolation Locality
ZAF – South Africa
Received from
Miller – UCD, Davis, CA, USA
LSU (D1/D2)
GenBank U69578
18S rRNA
GenBank X89525
ITS1&2
GenBank AY046176; Tetrapisispora_phaffii_DBVPG6076_ITS
ACACGTGGAGGATTTTTTTACAATACTTCTGAGAAACACCGACAACTTTTTTATTACAGC
AGTCAGCCGGATTTCTTAATTGAAAACAATAATTAAAACTTTCAACAACGGATCTCTTGG
TTCTCGCGCCGATGAAGAACGCAGCGAAATGCGATACGTAATGTGAATTGCATAATTCCG
TGAATCATCGAATCTTTGAACGCACATTGCGCCCCACAGTATTCTGTGGGGCATGCCTGT
TTGAGCGTCATTTCCTTCTCAGCAAGCGATTGTTGGTTGTGAGTGATACTCTGCGAGTTA
GCTTGAAAGTGATACCAGGCGGAGTGCCATGCGAAATGGGACGGACGCGAATGAGTTAGG
TTTTTCCAAGTCGTTTGTGTTTTGTTCTGGGGCGCGTGGGAAGCCGCTAGTCGTAAAACG
GACACAAGTTTGACCTCAAATCAGGTAGGAATACCCGCTGAACTTAAGCATATCAATAAG
CGGAGGAAAAGAAACCAACCGGGATTGCCTCAGTAACGGCGAGTGAAGCGGCAAGAGCTC
AAATTTGAAATCTGGTACCTGTGGTGCCCGAGTTGTAATTTGTAGAGCAGGACTCCAGCA
GCGGCCTTTGCCTATGTTCTTTGGAACAAGACGTCATGGAGGGTGATAATCCCGTATGGC
GGGGGCCCCGCTGCGGTGTGAGTGCTGGTCGACGAGTCGAGTTGTTTGGGAATGCAGCTC
TAAGTGGGGTGGTATACTCCATCTAAAGCTAAATATCAGCGAGAGACCGATAGCGAACAA
GTACAGTGATGGAAAGATGAAAAGAACTTTGAAAAGAGAGTGAAAAAGTACGTGAAATTG
TTGAAAGGGAAGGGCATTTGATCAGACATGGTAGGCAGCGCCCTGCGCCCCT
Recommended growth temperature
25°C
Recommended growth medium
YPDA (Yeast Extract Peptone Glucose Agar)
References
van der Walt. Fabospora phaffii sp.n.. A.v.Leeuwenhoek (1963), 29: 319-322 DOI: 10.1007/BF02046076
Ando et al.. Phylogenetic Relationships of Species of the Genus Kluyveromyces van der Walt (Saccharomycetaceae) Deduced from the Partial Sequences of 18S and 26S Ribosomal RNAs. Biosci.Biotechnol.Biochem. (1997), 60: 1063-1069 DOI: 10.1271/bbb.60.1063
Ponzoni et al.. Biotransformation of Acyclic Monoterpenoids by Debaryomyces sp., Kluyveromyces sp., and Pichia sp. Strains of Environmental Origin. Chem.Biodiv. (2008), 5: 471-483 DOI: 10.1002/cbdv.200890046
Buzzini, Martini. Differential growth inhibition as a tool to increase the discriminating power of killer toxin sensitivity in fingerprinting of yeasts. FEMS Microbiol.Lett. (2000), 193: 31-36 DOI: 10.1016/S0378-1097(00)00450-X
Kurtzman, Robnett. Phylogenetic relationships among yeasts of the ‘Saccharomyces complex’ determined from multigene sequence analyses. FEMS Yeast Res. (2003), 3: 417-732 DOI: 10.1016/S1567-1356(03)00012-6
Cai et al.. Phylogenetic Relationships among Members of the Ascomycetous Yeast Genera Brettanomyces, Debaryomyces, Dekkera, and Kluyveromyces Deduced by Small-Subunit rRNA Gene Sequences. Int.J.Syst.Bacteriol. (1996), 46: 542-549 DOI: 10.1099/00207713-46-2-542
Comitini, Ciani. The zymocidial activity of Tetrapisispora phaffii in the control of Hanseniaspora uvarum during the early stages of winemaking. Lett.Appl.Microbiol. (2010), 50: 50-56 DOI: 10.1111/j.1472-765X.2009.02754.x
Buzzini, Martini. Utilisation of differential killer toxin sensitivity patterns for fingerprinting and clustering yeast strains belonging to different genera. Syst.Appl.Microbiol. (2000), 23: 450-457 DOI: 10.1016/S0723-2020(00)80077-6
Ando et al.. Phylogenetic Relationships of Species of the Genus Kluyveromyces van der Walt (Saccharomycetaceae) Deduced from the Partial Sequences of 18S and 26S Ribosomal RNAs. Biosci.Biotechnol.Biochem. (1997), 60: 1063-1069 DOI: 10.1271/bbb.60.1063
Ponzoni et al.. Biotransformation of Acyclic Monoterpenoids by Debaryomyces sp., Kluyveromyces sp., and Pichia sp. Strains of Environmental Origin. Chem.Biodiv. (2008), 5: 471-483 DOI: 10.1002/cbdv.200890046
Buzzini, Martini. Differential growth inhibition as a tool to increase the discriminating power of killer toxin sensitivity in fingerprinting of yeasts. FEMS Microbiol.Lett. (2000), 193: 31-36 DOI: 10.1016/S0378-1097(00)00450-X
Kurtzman, Robnett. Phylogenetic relationships among yeasts of the ‘Saccharomyces complex’ determined from multigene sequence analyses. FEMS Yeast Res. (2003), 3: 417-732 DOI: 10.1016/S1567-1356(03)00012-6
Cai et al.. Phylogenetic Relationships among Members of the Ascomycetous Yeast Genera Brettanomyces, Debaryomyces, Dekkera, and Kluyveromyces Deduced by Small-Subunit rRNA Gene Sequences. Int.J.Syst.Bacteriol. (1996), 46: 542-549 DOI: 10.1099/00207713-46-2-542
Comitini, Ciani. The zymocidial activity of Tetrapisispora phaffii in the control of Hanseniaspora uvarum during the early stages of winemaking. Lett.Appl.Microbiol. (2010), 50: 50-56 DOI: 10.1111/j.1472-765X.2009.02754.x
Buzzini, Martini. Utilisation of differential killer toxin sensitivity patterns for fingerprinting and clustering yeast strains belonging to different genera. Syst.Appl.Microbiol. (2000), 23: 450-457 DOI: 10.1016/S0723-2020(00)80077-6
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