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Journal article

Taxonomy and antifungal susceptibility of clinically important Rasamsonia species

From

CBS-KNAW Fungal Biodiversity Centre1

Université Nantes Angers Le Mans2

Université de Montpellier3

Department of Systems Biology, Technical University of Denmark4

Natural Product Chemistry, Department of Systems Biology, Technical University of Denmark5

Canisius Wilhelmina Hospital6

Centre Hospitalier Universitaire, Angers7

In recent years, Geosmithia argillacea has been increasingly reported in humans and animals and can be considered an emerging pathogen. The taxonomy of Geosmithia was recently studied, and Geosmithia argillacea and related species were transferred to the new genus Rasamsonia. The diversity among a set of Rasamsonia argillacea strains, including 28 clinical strains, was studied, and antifungal susceptibility profiles were generated.

Data obtained from morphological studies and from phylogenetic analyses of internal transcribed spacer (ITS) and partial _-tubulin and calmodulin sequences revealed the presence of four species in the Rasamsonia argillacea complex, two of which are newly described here: R. piperina sp. nov. and R. aegroticola sp. nov.

In contrast to other related genera, all Rasamsonia species can be identified with ITS sequences. A retrospective identification was performed on recently reported clinical isolates from animal or human patients. Susceptibility tests showed that the antifungal susceptibility profiles of the four members of the R. argillacea complex are similar, and caspofungin showed significant activity in vitro, followed by amphotericin B and posaconazole.

Voriconazole was the least active of the antifungals tested. The phenotypically similar species R. brevistipitata and R. cylindrospora had different antifungal susceptibility profiles, and this indicates that correct species identification is important to help guide appropriate antifungal therapy.

Language: English
Publisher: American Society for Microbiology
Year: 2013
Pages: 22-30
ISSN: 1098660x , 00951137 and 1070633x
Types: Journal article
DOI: 10.1128/JCM.02147-12
ORCIDs: Frisvad, Jens Christian

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