Typification and Characterization of Trametes multicolor (Agaricomycetes), a Perspective Species of Medicinal Mushrooms

Типификация и характеристика Trametes multicolor (Agaricomycetes), перспективного вида лекарственных грибов
Solomon P. Wasser, Ivan V. Zmitrovich, Margarita A. Bondartseva, Nadezhda V. Psurtseva
2017-01-01

Trametes multicolorcultural characterizationepitypificationlectotypificationtaxonomical revision
Nomenclature revision and enlarged taxonomical descriptions are still needed for some well-known species whose interpretation is complicated by many nomenclature or taxonomical problems. The polyporoid fungus widely known as Trametes ochracea (= Coriolus zonatus) belongs to such a problematic group. At the same time, recent data show that this species, like its sister species T. versicolor, seems to be a perspective subject for fungal biotechnology and pharmacology. This article is devoted to stabilizing the nomenclature of the species in question via lectotypification and epitypification of Boletus multicolor. It will clarify the name T. multicolor as applied to this species is nomenclaturally correct and useful, free of further problems. An expanded species description and cultural characterization of epitype materials are presented.
1
An expanded species description for Trametes multicolor is provided.
2
Cultural characterization of epitype materials for Trametes multicolor is presented.
3
The name Trametes multicolor is clarified as nomenclaturally correct and free of further problems for this species.
4
The nomenclature of the polyporoid fungus historically known as Trametes ochracea/Coriolus zonatus has been stabilized by lectotypification and epitypification of Boletus multicolor.
5
Trametes multicolor is identified as a promising species for fungal biotechnology and pharmacology, similar to T. versicolor.

Trametes multicolor (polyporoid fungus)

Nomenclatural typification (lectotypification and epitypification), taxonomic stabilization, expanded species description and cultural characterization of epitype materials

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2017-01-01
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Solomon P. Wasser
Ivan V. Zmitrovich
Margarita A. Bondartseva
Nadezhda V. Psurtseva
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