Javascript must be enabled to continue!
Rhodotorula bloemfonteinensis sp. nov., Rhodotorula eucalyptica sp. nov., Rhodotorula orientis sp. nov. and Rhodotorula pini sp. nov., yeasts isolated from monoterpene-rich environments
View through CrossRef
Recent rDNA sequencing of 25 isolates from a previous study, during which limonene-utilizing yeasts were isolated from monoterpene-rich environments by using 1,4-disubstituted cyclohexanes as sole carbon sources, led to the identification of four hitherto unknown Rhodotorula species. Analyses of the 26S rDNA D1/D2 region as well as the internal transcribed spacer (ITS) domain indicated that two isolates (CBS 8499T and CBS 10736) were identical and were closely related to Rhodotorula cycloclastica, a previously described limonene-utilizing yeast. These novel isolates differed from known yeast species and could be distinguished from R. cycloclastica by standard physiological tests. The other three isolates represent three novel Rhodotorula species, closely related to Sporobolomyces magnisporus. These three species could also be distinguished from other Rhodotorula species by standard physiological tests. Based on these results, we suggest that the new isolates represent novel species, for which the names Rhodotorula eucalyptica sp. nov. (type strain CBS 8499T = NRRL Y-48408T), Rhodotorula pini sp. nov. (type strain CBS 10735T = NRRL Y-48410T), Rhodotorula bloemfonteinensis sp. nov. (type strain CBS 8598T = NRRL Y-48407T) and Rhodotorula orientis sp. nov. (type strain CBS 8594T = NRRL Y-48719T) are proposed. R. eucalyptica and R. pini can also utilize limonene.
Title: Rhodotorula bloemfonteinensis sp. nov., Rhodotorula eucalyptica sp. nov., Rhodotorula orientis sp. nov. and Rhodotorula pini sp. nov., yeasts isolated from monoterpene-rich environments
Description:
Recent rDNA sequencing of 25 isolates from a previous study, during which limonene-utilizing yeasts were isolated from monoterpene-rich environments by using 1,4-disubstituted cyclohexanes as sole carbon sources, led to the identification of four hitherto unknown Rhodotorula species.
Analyses of the 26S rDNA D1/D2 region as well as the internal transcribed spacer (ITS) domain indicated that two isolates (CBS 8499T and CBS 10736) were identical and were closely related to Rhodotorula cycloclastica, a previously described limonene-utilizing yeast.
These novel isolates differed from known yeast species and could be distinguished from R.
cycloclastica by standard physiological tests.
The other three isolates represent three novel Rhodotorula species, closely related to Sporobolomyces magnisporus.
These three species could also be distinguished from other Rhodotorula species by standard physiological tests.
Based on these results, we suggest that the new isolates represent novel species, for which the names Rhodotorula eucalyptica sp.
nov.
(type strain CBS 8499T = NRRL Y-48408T), Rhodotorula pini sp.
nov.
(type strain CBS 10735T = NRRL Y-48410T), Rhodotorula bloemfonteinensis sp.
nov.
(type strain CBS 8598T = NRRL Y-48407T) and Rhodotorula orientis sp.
nov.
(type strain CBS 8594T = NRRL Y-48719T) are proposed.
R.
eucalyptica and R.
pini can also utilize limonene.
Related Results
Sponges of the Guyana Shelf
Sponges of the Guyana Shelf
Sponges collected on the Guyana Shelf, predominantly in Suriname offshore waters, by Dutch HMS ‘Snellius’ O.C.P.S. 1966, HMS ’Luymes’ O.C.P.S. II 1969, and HMS ‘Luymes’ Guyana Shel...
A Review on Chemical Structure and Biological Activities of Monoterpene Glycosides
A Review on Chemical Structure and Biological Activities of Monoterpene Glycosides
Monoterpene glycosides are important active ingredients in many commonly
used traditional Chinese medicines. Based on their different aglycones, monoterpene glycosides
are primaril...
Pseudocetherinae (Hemiptera: Reduviidae) revisited: phylogeny and taxonomy of the lobe-headed bugs
Pseudocetherinae (Hemiptera: Reduviidae) revisited: phylogeny and taxonomy of the lobe-headed bugs
The concept of the previously monogeneric subfamily Pseudocetherinae (Hemiptera: Heteroptera: Reduviidae) is revised and expanded. We here transfer Gerbelius Distant, 1903, Kayanoc...
Systematic revision of the South American “Nuncia” (Opiliones, Laniatores, Triaenonychidae)
Systematic revision of the South American “Nuncia” (Opiliones, Laniatores, Triaenonychidae)
The genus Nuncia has long been the most speciose within the Opiliones family Triaenonychidae, comprising 63 species and subspecies distributed across New Zealand and South America....
The Australian Hersiliidae (Arachnida : Araneae): Taxonomy, phylogeny, zoogeography
The Australian Hersiliidae (Arachnida : Araneae): Taxonomy, phylogeny, zoogeography
The Australian species of the spider family Hersiliidae are revised and compared in a key. Hersilia australiensis, sp. nov., is newly described, the first record of the genus Hersi...
Integrative taxonomy of the genus Dyscolus (Coleoptera, Carabidae, Platynini) in Ecuadorian Andes
Integrative taxonomy of the genus Dyscolus (Coleoptera, Carabidae, Platynini) in Ecuadorian Andes
The genus Dyscolus Dejean, 1831 is a highly speciose taxon of neotropical Carabidae and the major component of high-altitude ground beetle communities in the tropical Andes. The ai...
Taxonomic review of the ladybird genus Sticholotis from China (Coleoptera: Coccinellidae)
Taxonomic review of the ladybird genus Sticholotis from China (Coleoptera: Coccinellidae)
The Chinese species of the genus Sticholotis Crotch are described, a key for their identification is provided and most of the species are illustrated. The number of Chinese species...
Wheat phyllosphere yeasts degrade propiconazole
Wheat phyllosphere yeasts degrade propiconazole
Abstract
Background: Yeasts, which are ubiquitous in agroecosystems, are known to degrade various xenobiotics. The aim of this study was to analyze the effect of fungicides...

