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J. D. Bezerra

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Open access Jul 2026

Taxonomic re-identification and biotechnological potential of a Brazilian Aspergillus section Flavi collection: exploring kojic acid production

Species of Aspergillus section Flavi are recognized for their ability to produce metabolites, such as mycotoxins and organic acids. Kojic acid has gained widespread recognition in the cosmetics market for its efficacy in lightening skin blemishes. The importance of these species makes their correct identification and preservation essential. This study aimed to re-identify, taxonomically, Aspergillus section Flavi strains stored at the URM culture collection (WDCM 604) in Brazil and to investigate their potential for kojic acid production. Initially, 194 Aspergillus section Flavi strains were reactivated and authenticated based on DNA sequences (CaM and BenA). Furthermore, 99 strains were evaluated on synthetic solid medium to verify their ability to produce kojic acid. A representative strain from each species was selected to evaluate kojic acid production via submerged fermentation, using sugarcane molasses and corn steep liquor as carbon and nitrogen sources, respectively. Quantitative analysis of kojic acid was performed by high-performance liquid chromatography. In submerged fermentation, Aspergillus caelatus URM 4242 showed the highest production (10.65 ± 0.4 g/L with a yield of 0.54 g/g). Our results highlight the importance of culture collections, taxonomic re-identification, and assessment of the biotechnological potential of strains deposited in these biobanks.

Maria Tamara de Caldas Felipe, R. N. Barbosa, J. D. Bezerra et al. · 0 citations
Open access Aug 2026

Morphological and phylogenetic analyses of Gonatobotryum (Dothideaceae, Dothideales), and the description of a new species from a mangrove sediment in Brazil

Gonatobotryum is an anamorphic fungus reported mainly as a saprophyte, parasite, or endophyte. The genus has traditionally been identified based on morphological features, with its phylogenetic placement remaining uncertain due to the lack of molecular data. During the analysis of fungi obtained from mangrove sediments in Brazil, nine isolates were morphologically identified as Gonatobotryum and subsequently analysed using the internal transcribed spacer (ITS) region, including the intervening 5.8S nRNA gene and the nuclear ribosomal RNA large subunit (LSU) gene, leading to the description of a new species, Gonatobotryum mangrovei. Additionally, the type material of Gonatobotryum bahiense was re-evaluated regarding its phylogenetic placement. Here, we propose a new combination, Ophiostoma bahiense, to place this species within the genus. Our results clarify the phylogenetic position of Gonatobotryum and expand the current understanding of fungi in mangrove environments.

Karen B. E. Carmo, T. G. Carvalho, C. S. Oliveira et al. · 0 citations

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