1887

Abstract

The order Cystofilobasidiales is described for teleomorphic basidiomycetous yeasts with holobasidia and teliospores. Their septa have dolipores, but lack parenthesomes. -Glucuronate, nitrate and nitrite are assimilated and -inositol is usually assimilated. Coenzyme Q has 8 or 10 isoprenologues. 25S and 18S rDNA sequence analysis indicates a monophyletic branch within the Tremellomycetidae of the Hymenomycetes. is the type genus.

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1999-04-01
2024-04-25
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References

  1. von Arx J. A., Weijman A. C. M. 1979; Conidiation and carbohydrate composition in some Candida and Torulopsis species. Antonie Leeuwenhoek 45:547–555
    [Google Scholar]
  2. von Arx J. A., Rodrigues de Miranda L., Smith M. T., Yarrow D. 1977; The genera of the yeasts and the yeast-like fungi. Stud Mycol 14:1–42
    [Google Scholar]
  3. Bandoni R. J. 1995; Dimorphic heterobasidiomycetes : taxonomy and parasitism. Stud Mycol 38:13–27
    [Google Scholar]
  4. Barnett J. A., Payne R. W., Yarrow D. 1990 Yeasts: Characteristics and Identification, 2. Cambridge: Cambridge University Press;
    [Google Scholar]
  5. Billon-Grand G. 1988 Contribution la taxonomie et la phylogenie des levures. Apport du critère ‘Coenzyme Q’ PhD thesis, Université Claude Bernard; Lyon, France:
    [Google Scholar]
  6. Billon-Grand G. 1989; Influence on minor peaks of coenzyme Q of the glucose concentration in the culture medium, the stage of the growth cycle, and the duration of the coenzyme Q extraction: required conditions for determining the minor coenzymes Q. J Gen Appl Microbiol 35:261–268
    [Google Scholar]
  7. Boekhout T., Yamada Y., Weijman A. C. M., Roeijmans H. J., Batenburg-van der Vegte W. H. 1992; The significance of coenzyme Q, carbohydrate composition and septal ultra-structure for the taxonomy of ballistoconidia-forming yeasts and fungi. Syst Appl Microbiol 15:1–10
    [Google Scholar]
  8. Boekhout T., Fonseca A., Sampaio J.-P., Golubev W. I. 1993; Classification of heterobasidiomycetous yeasts : characteristics and affiliation of genera to higher taxa. Can J Microbiol 39:276–290
    [Google Scholar]
  9. Boekhout T., Fell J. W., O’Donnell K. 1995; Molecular systematics of some yeast-like anamorphs belonging to the Ustilaginales and Tilletiales. Stud Mycol 38:175–183
    [Google Scholar]
  10. Elinov N. P., Vitovskaya G. A., Kaloshin V. G., Kolotinskaya T. M. 1974; Structural polysaccharides of some species of Rhodotorula and Cryptococcus. Biokhimiya 39:787–792
    [Google Scholar]
  11. Fell J. W., Boekhout T., Freshwater D. W. 1995; The role of nucleotide sequence analysis in the systematics of the yeast genera Cryptococcus and Rhodotorula. StudMycol 3S:129–146
    [Google Scholar]
  12. Golubev W. I. 1989; Catabolism of i-inositol and taxonomie value of d-glucuronate assimilation in yeasts. Mikrobiologiya 58:276–283
    [Google Scholar]
  13. Golubev W. I. 1995; Perfect state of Rhodomyces dendrorhous (Phaffia rhodozyma). Yeast 11, 101-110. Mycol 38:47–58
    [Google Scholar]
  14. Gorin P. A. J., Spencer J. F. T. 1970; Proton magnetic resonance spectroscopy as an aid in identification and chemo-taxonomy of yeasts. Adv Appl Microbiol 13:25–89
    [Google Scholar]
  15. Guého E., Smith M. Th., de Hoog G. S., Billon-Grand G., Christen R., Batenburg-van der Vegte W. H. 1992; Contributions to a revision of the genus Trichosporon. Antonie Leeuwenhoek 61:289–316
    [Google Scholar]
  16. Guého E., Improvisi L., Christen R., de Hoog G. S. 1993; Phylogenetic relationships of Cryptococcus neoformans and some related basidiomycetous yeasts determined from partial large subunit rRNA sequences. Antonie Leeuwenhoek 63:175–189
    [Google Scholar]
  17. Hiraishi A., Hoshino Y., Kitamura H. 1984; Isoprenoid quinone composition in the classification of Rhodospirillaceae. J Gen Appl Microbiol 30:197–210
    [Google Scholar]
  18. Kuraishi H., Katayama-Fujimura Y., Sugiyama J., Yokoyama T. 1985; Ubiquinone systems in fungi I. Distribution of ubiquinones in the major families of ascomycetes, basidio-mycetes, and deuteromycetes, and their taxonomie implications. Trans Mycol Soc Jpn 26:383–395
    [Google Scholar]
  19. Kurtzman C. P., Fell J. W. 1998 The Yeasts: a Taxonomie Study, 4. Amsterdam: Elsevier;
    [Google Scholar]
  20. Kwon-Chung K. J. 1998; Cystofilobasidium Oberwinkler, Bandoni, Blanz, Kishimova-Horovitz. The Yeasts: a Taxonomie Study, 4.650–657 Kurtzman C. P., Fell J. W. Amsterdam: Elsevier;
    [Google Scholar]
  21. Kwon-Chung K. J., Chang Y. C., Bauer R., Swann E. C., Taylor J. W., Goel R. 1995; The characteristics that differentiate Filobasidiella depauperata from Filobasidiella neoformans. Stud
    [Google Scholar]
  22. McLaughlin D. J., Frieders M. E., Lue H. 1995; A microscopist’s view of heterobasidiomycete phylogeny. Stud
    [Google Scholar]
  23. Moore R. T. 1985; The challenge of the dolipore/parenthesome septum. Developmental Biology of Higher Fungi175–212 Moore D., Casselton L. A., Wood D. A., Frankland J. A. Cambridge: Cambridge University Press;
    [Google Scholar]
  24. Moore R. T. 1987; Micromorphology of yeasts and yeast-like fungi and its taxonomie implications. Stud Mycol 30:203–226
    [Google Scholar]
  25. Moore R. T., Kreger-van Rij N. J. W. 1972; Ultrastructure of Filobasidium. Can J Microbiol 18:1949–1951
    [Google Scholar]
  26. Mueller W. H., van Aelst A. V., van der Krift T., Boekhout T. 1995; Novel approaches to visualize the septal pore cap. Stud
    [Google Scholar]
  27. Mueller W. H., Humbel B. M., van Aelst A. C., van der Krift T., Boekhout T. 1998; Intercellular exchange through perforate septal pore caps in homobasidiomycetes. Plasmodesmata : Nanochannels with Megatasks van Bel A. Berlin: Springer (in press);
    [Google Scholar]
  28. Nakase T., Suzuki M. 1986; The ubiquinone system in strains of species in the ballistospore-forming yeast genera Sporidiobolus Sporobolomyces and Bullera. J Gen Appl Microbiol 32:251–258
    [Google Scholar]
  29. Nakase T., Takematsu A. 1992; Udeniomyces a new ballistosporous anamorphic yeast genus in the Cryptococcaceae proposed for three Bullera species which produce large bilaterally symmetrical ballistospores. FEMS Microbiol Lett 100:497–502
    [Google Scholar]
  30. Oberwinkler F. 1987; Heterobasidiomycetes with ontogenetic yeast-stages. Systematic and phylogenetic aspects. Stud Mycol 30:61–74
    [Google Scholar]
  31. Oberwinkler F., Bandoni R. J. 1982; Trimorphomyces: a new genus in the Tremellaceae. Syst Appl Microbio! 4:105–113
    [Google Scholar]
  32. Oberwinkler F., Bandoni R. J., Kisimova-Horovitz L. 1983; Cystofilobasidium: a new genus in the Filobasidiaceae. Syst Appl Microbiol 4:114–122
    [Google Scholar]
  33. Orlovich D. A., Ashford A. E. 1994; Structure and development of the dolipore septum in Pisolithus tinctorius. Protoplasma 178:66–80
    [Google Scholar]
  34. Prillinger H., Oberwinkler F., Umile C., Tlachac K., Bauer R., Dorfler C., Taufratzhofer E. 1993; Analysis of cell wall carbohydrates (neutral sugars) from ascomycetous and basidiomycetous yeasts with and without derivatization. J Gen Appl Microbiol 39:1–34
    [Google Scholar]
  35. Rhodes J. C., Kwon-Chung K. J., Popkin T. J. 1981; Ultra-structure of the septal complex in hyphae of Cryptococcus laurentii. J Bacteriol 145:1410–1412
    [Google Scholar]
  36. Roeijmans H. J., van Eijk G. W., Yarrow D. 1989; Some name changes necessitated by the redefinition of the genus Candida. Mycotaxon 35:405–406
    [Google Scholar]
  37. Roeijmans H., Prillinger H., Umile C., Sugiyama J., Nakase T., Boekhout T. 1998; Analysis of carbohydrate composition of cell walls and extracellular carbohydrates. The Yeasts: a Taxonomic Study, 4.103–105 Kurtzman C. P., Fell J. W. Amsterdam: Elsevier;
    [Google Scholar]
  38. Sampaio J. P., Fonseca A. 1995; Physiological aspects in the systematics of heterobasidiomycetous yeasts. Stud Mycol 38:29–46
    [Google Scholar]
  39. Sugiyama J., Fukagawa M., Chiù S. W., Komagata K. 1985; Cellular carbohydrate composition, DNA base composition, ubiquinone systems, and diazonium blue B colour test in the genera Rhodosporidium Leucosporidium Rhodotorula and related basidiomycetous yeasts. J Gen Appl Microbiol 31:519–550
    [Google Scholar]
  40. Suh S. O., Nakase T. 1995; Phylogenetic analysis of the ballistosporous anamorphic genera Udeniomyces and Bullera and related basidiomycetous yeasts, based on 18S rDNA sequence. Microbiology 141:901–906
    [Google Scholar]
  41. Suh S. O., Sugiyama J. 1993; Septal pore ultrastructure of Leucosporidium lari-marini a basidiomycetous yeast, and its taxonomic implications. J Gen Appl Microbiol 39:257–260
    [Google Scholar]
  42. Suh S. O., Hirata A., Sugiyama J., Komagata K. 1993; Septal ultrastructure of basidiomycetous yeasts and their taxonomic implications with observations on the ultrastructure of Erythro-basidium hasegawianum and Sympodiomycopsis paphiopedili. Mycologia 85:30–37
    [Google Scholar]
  43. Swann E. C., Taylor J. W. 1995a; Phylogenetic perspectives on basidiomycete systematics: evidence from the 18S rRNA gene. Can J Bot 73:S862–S868
    [Google Scholar]
  44. Swann E. C., Taylor J. W. 1995b; Phylogenetic diversity of yeast-producing basidiomycetes. Mycol Res 99:1205–1210
    [Google Scholar]
  45. Swann E. C., Taylor J. W. 1995c; Toward a phylogenetic systematics of the Basidiomycota : integrating yeasts and filamentous basidiomycetes using 18S rRNA gene sequences. Stud Mycol 38:147–161
    [Google Scholar]
  46. van der Walt J. P. 1987; The yeasts - a conspectus. Stud Mycol 30:19–31
    [Google Scholar]
  47. Weijman A. C. M. 1979; Carbohydrate composition of Geotrichum Trichosporon and allied genera. Antonie Leeuwenhoek 45:119–127
    [Google Scholar]
  48. Weijman A. C. M., Golubev W. I. 1987; Carbohydrate patterns and taxonomy of yeasts and yeast-like fungi. Stud Mycol 30:361–371
    [Google Scholar]
  49. Weijman A. C. M., Rodrigues de Miranda L. 1988; Carbohydrate patterns of the genera Candida Rhodotorula and Cryptococcus. Antonie Leeuwenhoek 54:535–543
    [Google Scholar]
  50. Yamada Y., Komagata K. 1987; Mrakia gen. nov., a heterobasidiomycetous yeast genus for the Q8 equipped, self-sporulating organism which produces a unicellular meta-basidi um, formerly classified in the genus Leucosporidium. J Gen Appl Microbiol 33:455–457
    [Google Scholar]
  51. Yamada Y., Kondo K. 1972; Taxonomic significance of the coenzyme Q system in yeasts and yeast-like fungi. Proceedings of the 4th International Fermentation Symposium, Kyoto, Japan. Ferment Technol Today781–784
    [Google Scholar]
  52. Yamada Y., Kondo K. 1973; Coenzyme Q system in the classification of the yeast genera Rhodotorula and Cryptococcus and the yeast-like genera Sporobolomyces and Rhodosporidium. J Gen Appl Microbiol 19:59–77
    [Google Scholar]
  53. Yamada Y., Matsumoto A. 1989; An electrophoretic comparison of enzymes in strains of species in the genus Mrakia Yamada et Komagata (Filobasidiaceae). J Gen Appl Microbiol 34:201–208
    [Google Scholar]
  54. Yamada Y., Banno I., von Arx J. A., van der Walt J. P. 1987; Taxonomic significance of the coenzyme Q system in yeasts and yeast-like fungi. Stud Mycol 30:299–308
    [Google Scholar]
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