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Secondary metabolite profiling, growth profiles and other tools for species recognition and important Aspergillus mycotoxins

Jens C. FrisvadCenter for Microbial Biotechnology, BioCentrum-DTU, Technical University of Denmark, DK-2800 Kgs. Lyngby, DenmarkThomas Ostenfeld LarsenCenter for Microbial Biotechnology, BioCentrum‐DTU, Technical University of Denmark, DK‐2800, Kgs. Lyngby, DenmarkRonald P. de VriesMicrobiology, Utrecht University, Utrecht, The NetherlandsMartin MeijerMicrobiology, Utrecht University, Utrecht, The NetherlandsJos HoubrakenCBS Fungal Biodiversity Centre, Utrecht, The NetherlandsF. Javier CabañesVeterinary Mycology Group. Departament de Sanitat i d”Anatomia Animals, Universitat Autònoma de Barcelona, Bellaterra, SpainK. EhrlichSouthern Regional Research Center/ARS/USDA, New Orleans, LA 70124, U.S.ARobert A. SamsonCBS Fungal Biodiversity Centre, Utrecht, The Netherlands
2007en
ABI

Annotatsiya

Species in the genus Aspergillus have been classified primarily based on morphological features. Sequencing of house-hold genes has also been used in Aspergillus taxonomy and phylogeny, while extrolites and physiological features have been used less frequently. Three independent ways of classifying and identifying aspergilli appear to be applicable: Morphology combined with physiology and nutritional features, secondary metabolite profiling and DNA sequencing. These three ways of identifying Aspergillus species often point to the same species. This consensus approach can be used initially, but if consensus is achieved it is recommended to combine at least two of these independent ways of characterising aspergilli in a polyphasic taxonomy. The chemical combination of secondary metabolites and DNA sequence features has not been explored in taxonomy yet, however. Examples of these different taxonomic approaches will be given for Aspergillus section Nigri.

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