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Biomedical subjects

Marc-André Lachance

Publications and source records attributed to Marc-André Lachance.

4 recordsLinked to original sources

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

Taxogenomic analysis of Pichia senei sp. nov. and new insights into hybridization events in the Pichia cactophila species complex.

Three strains of a novel yeast species were isolated from necrotic cactus tissues of Cereus saddianus and Micranthocereus dolichospermaticus and from phytotelmata of Bromelia karatas. DNA sequence analysis of the Internal Transcribed Spacer (ITS) region and D1/D2 domains of the large subunit ribosomal RNA, along with whole genome phylogenomic analysis, showed that this yeast is most closely related to Pichia insulana, Pichia cactophila, and Pichia inconspicua. The new species differs by 10-13 nucleotide substitutions from these species in D1/D2 sequences and exhibits <90% genome-wide average nucleotide identity to them. The name Pichia senei sp. nov. is proposed for the novel species, which is homothallic and produces asci with one to four hat-shaped ascospores. The holotype is CBS 16311 (MycoBank MB 858723). Taxogenomic analyses of the P. cactophila species complex, including P. senei, provide new insights about the hybridizations events that shaped this group. Pichia insulana and P. inconspicua are identified as the parental lineages that originated P. cactophila, and P. senei also appears closely related to one of the progenitors of P. inconspicua. We assess phylogeny, heterozygosity, and ploidy to explore the processes shaping diversity, showing how genomic data support yeast species delimitation and reveal complex hybridization.

Phylogeny

Reviving &#xc9;lie Metschnikoff's Monospora: the obligately parasitic yeast Australozyma monospora sp. nov.

A vast literature explores a model system that consists of a prey crustacean, the water flea Daphnia spp., and an obligately pathogenic yeast that has been referred to as Metschnikowia bicuspidata and thought to represent the material used by Metschnikoff in his study of innate immunity. Typification of species bearing that name and indeed the whole genus has been problematic as regards yeasts that only grow or form aciculate ascospores in hospite. The neotype of M. bicuspidata, unlike the Daphnia parasite, is easily cultured on a variety of laboratory media, although it too can cause serious infections in a variety of mostly aquatic animals. It has become evident that the Daphnia parasite studied by Metschnikoff or current workers is not closely related to M. bicuspidata as currently understood. Analysis of whole genome DNA extracted from the yeast repeatedly found in infected Daphnia specimens shows that it belongs to the recently circumscribed genus Australozyma. The yeast is described here as Australozyma monospora sp. nov. The species, although haplontic and heterothallic, forms single-spored asci without mating. It also appears that all species in the genus are restricted to asexual reproduction, which may explain their rare status. The holotype is MICH 346683. The name is registered in Mycobank under the number MB 859667.

Animals

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 (MAT&#x3b1;). Strain UFMG-CM-Y7613A (MAT a) is designated as allotype. The new combination is registered as MB 859665.

Brazil