Taxon Name
Sporobolomyces johnsonii (Nyland) Q.M. Wang, F.Y. Bai, M. Groenew. & Boekhout
Accession number
7467
Form of supply
agar slant
Synonymous
Prosporobolomyces holsaticus (Windisch) E.K. Novák & Zsolt, Sporobolomyces holsaticus Windisch ex Yarrow & Fell, Sporidiobolus johnsonii Nyland
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 10765; ATCC 58441; CBS 5470; CBS 522.50; CCRC 21351; IFO 6903; IGC 3834 ; JCM 1840; NCYC 2653; NRRL Y-17303
Risk Group
1
GMO
No
Status of the strain
Isotype of Sporidiobolus johnsonii Nyland
Isolation source
dead pustule of Phragmidium rubi-idaei on leaf of Rubus sp.
Received from
Meyer – Georgia State Univ., USA
Date of deposit
15/09/2002
LSU (D1/D2)
GenBank AF070435
18S rRNA
GenBank AY015431
ITS1&2
GenBank AY015431
Recommended growth temperature
25°C
Recommended growth medium
PDA (Potato Dextrose Agar)
References
Fell et al.. Validation of the basidiomycetous yeast, Sporidiobolus microsporus sp. nov., based on phenotypic and molecular analyses. A.v.Leeuwenhoek (1998), 74: 265-270 DOI: 10.1023/A:1001714104005
Sampaio. Utilization of low molecular weight aromatic compounds by heterobasidiomycetous yeasts: Taxonomic implications. Can.J.Microbiol. (1999), 45: 491-512 DOI: 10.1139/w99-020
Buzzini et al.. Carotenoid profiles of yeasts belonging to the genera Rhodotorula, Rhodosporidium, Sporobolomyces, and Sporidiobolus. Can.J.Microbiol. (2007), 53: 1024-1031 DOI: 10.1139/W07-068
Fell, Statzell-Tallman. Heterothallism in the basidiomycetous yeast genus Sporidiobolus Nyland. Curr.Microbiol. (1981), 5: 77-82 DOI: 10.1007/BF01567423
Holzschu et al.. Validation of the yeast Sporidiobolus ruinenii based on its deoxyribonucleic acid relatedness to other species of the genus Sporidiobolus. Curr.Microbiol. (1981), 5: 73-76 DOI: 10.1007/BF01567422
Fell et al.. Recognition of the basidiomycetous yeast Sporobolomyces ruberrimus sp. nov. as a distinct species based on molecular and morphological analyses. FEMS Yeast Res. (2002), 1: 265-270 DOI: 10.1016/S1567-1356(01)00039-3
Sampaio et al.. Curvibasidium cygneicollum gen. nov., sp. nov. and Curvibasidium pallidicorallinum sp. nov., novel taxa in the microbotryomycetidae (Urediniomycetes), and their relationship with Rhodotorula fujisanensis and Rhodotorula nothofagi. Int.J.Syst.Evol.Microbiol. (2004), 54: 1401-1407 DOI: 10.1099/ijs.0.03037-0
Libkind et al.. Sporidiobolus longiusculus sp. nov. and Sporobolomyces patagonicus sp. nov., novel yeasts of the Sporidiobolales isolated from aquatic environments in Patagonia, Argentina. Int.J.Syst.Evol.Microbiol. (2005), 55: 503-509 DOI: 10.1099/ijs.0.63322-0
Dufossé et al.. Production of γ-decalactone and 4-hydroxy-decanoic acid in the genus Sporidiobolus. J.Ferment.Bioeng. (1998), 86: 169-173 DOI: 10.1016/S0922-338X(98)80056-1
Yamada et al.. THE COENZYME Q SYSTEM IN STRAINS OF SOME YEASTS AND YEAST-LIKE FUNGI. J.Gen.Appl.Microbiol. (1983), 29: 51-57 DOI: 10.2323/jgam.29.51
Suh et al. QUANTITATIVE DIFFERENCES OF NUCLEAR DNA CONTENTS AND THEIR TAXONOMIC IMPLICATIONS IN LEUCOSPORIDIUM SCOTTII, RHODOSPORIDIUM TORULOIDES, AND RELATED BASIDIOMYCETOUS YEASTS. J.Gen.Appl.Microbiol. (1993), 39: 295-302 DOI: 10.2323/jgam.39.295
Nyland. Studies on Some Unusual Heterobasidiomycetes from Washington State. Mycologia (1949), 41: 686-701 DOI: 10.1080/00275514.1949.12017812

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