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1.
Malaysian Journal of Medicine and Health Sciences ; : 348-353, 2023.
Article in English | WPRIM | ID: wpr-996585

ABSTRACT

@#The emergence of microfungi medicinal applications represents a turnover in the drug discovery field. These microfungi species are found in rotten woods and leaf litters collected from forests and reserves in some tropical countries during rainy seasons. Among these species is Trametes elegans, which shares a commensalism-based relationship with the host (plants), offering protection against external invasions. Thus, Trametes elegans possesses unique compositional values and gained tremendous interest in the last decade for its promising applications, such as inhibiting a wide range of bacteria and harmful fungi, reducing oxidative stresses caused by free-radicals, nitric oxide, and hydrogen peroxide, as well as extending food shelf-life. This mini-review reports the available literature on Trametes elegans sources, studied extracts applications, and urges the investigation of other Trametes elegans potential applications as antiviral and anticancer agents.

2.
Acta amaz ; 43(1): 1-8, mar. 2013. ilus
Article in English | LILACS-Express | LILACS, VETINDEX | ID: biblio-1455116

ABSTRACT

The Amazon has a high diversity of fungi, including species of the genus Daldinia (Ascomycota, Xylariaceae), which produce secondary metabolites with recognized nematicidal and antimicrobial activity. The ecological role of Daldinia is important, as stromata serve as refuges to many insects and arthropodes, and the fungi contribute to the degradation of vegetable organic matter. The aim of this study was to analyze the taxonomic features and mycelial growth conditions in vitro of a Daldinia specimen collected in the Brazilian Amazon. Morphological and molecular studies of the fungus identified it as D. eschscholtzii. To evaluate mycelial growth, we cultivated the fungus at 20, 25, 30, 35, and 40 °C in malt extract-peptone agar (MEPA), malt extract-peptone (MEP), potato dextrose (PD), and minimum medium (MM). The best mycelial growth occurred at 35 °C, although the greatest amount of biomass was obtained at 25 °C and 30 °C. PD proved to be the best medium for biomass production.


A Amazônia apresenta alta diversidade de fungos, incluindo Daldinia (Ascomycota, Xylariaceae), cujas espécies produzem metabólitos secundários com reconhecida atividade antimicrobiana e nematicida. O papel ecológico é importante, visto que estromas servem de abrigo para muitos insetos e artrópodes, além de contribuir na degradação da matéria orgânica vegetal. O objetivo desse estudo foi analizar as características taxonômicas e as condições do crescimento micelial in vitro de um espécime de Daldinia coletado na Amazônia brasileira. Estudos morfológicos e moleculares do fungo o indetificaram como D. eschscholtzii. Para avaliação do crescimento micelial o fungo foi cultivado nas temperaturas de 20, 25, 30, 35 e 40 °C e nos meios de cultura extrato de malte-peptona ágar (EMPA), extrato de malte-peptona (EMP), batata dextrose (BD) e meio mínimo (MM). O melhor crescimento micelial ocorreu a 35 °C, entretanto, a maior quantidade de biomassa foi obtida a 25 e 30 °C. O meio BD provou ser o melhor meio para produção de biomassa.

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