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Metschnikowia maris comb. nov., a large-spored yeast species endemic to Serra do Mar Atlantic Rainforest biome, Sao Paulo State, Brazil.

Two yeast isolates from passion flowers were sampled in the southern part of the Serra do Mar Atlantic Rainforest in Sao Paulo State, Brazil. Barcode sequencing and mating experiments showed them to be representatives of Metschnikowia matae var. maris, thus originally named due to the availability of only a single isolate and uncertainties regarding reproductive isolation. The two new isolates being of the complementary mating type to the previously known strain, intravarietal crosses were performed. They yielded a preponderance of two-spored asci, unlike crosses with M. matae var. matae, which led to largely sterile asci. We therefore elevate the variety maris to the rank of species, with the name Metschnikowia maris comb. nov. The holotype is UFMG-CM-Y397T (MATα). Strain UFMG-CM-Y7613A (MAT a) is designated as allotype. The new combination is registered as MB 859665.

Brazil

Sungouiella purgamenti sp. nov., a yeast isolated from hospital wastewater in Brazil: a taxogenomic analysis.

Yeasts recovered from wastewater of a public hospital in Minas Gerais state, Brazil, included a single isolate representing a putative novel species. Sequence analysis of the ITS-5.8S region and the D1/D2 domains of the LSU rRNA gene placed this yeast within the genus Sungouiella, close to Sungouiella thailandica. Phylogenomic inference based on 1,849 single-copy orthologues from Sungouiella species with available genomes confirmed that strain UFMG-CM-Y7468 forms a distinct lineage with S. thailandica as its closest known relative. The name Sungouiella purgamenti sp. nov. (MycoBank MB 863665) is proposed, with CBS 19634 designated as the holotype. The isolate was able to grow at 37 °C, showed susceptibility to most antifungal agents tested, except for itraconazole with an MIC of 0.5 mg l-1, within the dose-dependent range, and exhibited strong extracellular protease activity. However, S. purgamenti showed a genomic toolkit consistent with a stress-tolerant and environmentally versatile lifestyle, while no specific or unique virulence determinants were identified based on genome content alone.

Brazil

Population structure and properties of Candida albicans, as determined by multilocus sequence typing.

We submitted a panel of 416 isolates of Candida albicans from separate sources to multilocus sequence typing (MLST). The data generated determined a population structure in which four major clades of closely related isolates were delineated, together with eight minor clades comprising five or more isolates. By Fisher's exact test, a statistically significant association was found between particular clades and the anatomical source, geographical source, ABC genotype, decade of isolation, and homozygosity versus heterozygosity at the mating type-like locus (MTL) of the isolates in the clade. However, these associations may have been influenced by confounding variables, since in a univariate analysis of variance, only the clade associations with ABC type and anatomical source emerged as statistically significant, providing the first indication of possible differences between C. albicans strain type clades and their propensity to infect or colonize different anatomical locations. There were no significant differences between clades with respect to distributions of isolates resistant to fluconazole, itraconazole, or flucytosine. However, the majority of flucytosine-resistant isolates belonged to clade 1, and these isolates, but not flucytosine-resistant isolates in other clades, bore a unique mutation in the FUR1 gene that probably accounts for their resistance. A significantly higher proportion of isolates resistant to fluconazole, itraconazole, and flucytosine were homozygous at the MTL, suggesting that antifungal pressure may trigger a common mechanism that leads both to resistance and to MTL homozygosity. The utility of MLST for determining clade assignments of clinical isolates will form the basis for strain selection for future research into C. albicans virulence.

Analysis of Variance