Tangthirasunun, Narumon
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Preferred name
Tangthirasunun, Narumon
Alternative Name
Tangthirasunun, N.
Main Affiliation
Email
narumon.ta@kmitl.ac.th
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Item type:Publication, Diversity of Sordariales Fungi: Identification of Seven New Species of Naviculisporaceae Through Morphological Analyses and Genome Sequencing(2025-12-01); ;Gautier, Valérie ;Lalanne, Christophe ;Bonometti, LucasCros-Arteil, SandrineThanks to next-generation sequencing (NGS) technologies, the diversity of fungi can now be investigated through the analysis of their genome sequences. Naviculisporaceae is a family within the Sordariales, whose diversity is not well-known, with only one genome sequence published for this family. Here, we report on the isolation and cultivation of 20 new strains of Naviculisporaceae. Their genome sequences, as well as those of the five commercially available strains, were determined, thus providing complete genome sequences for 25 new Naviculisporaceae strains. Species delimitation was conducted using a combination of (1) ITS + LSU phylogenetic analysis of the new isolates along with other known species of the family, (2) comparisons between DNA barcode sequences of the new strains with those of the known species, and (3) average genome-wide nucleotide identity calculation. We built a phylogenomic tree and studied the organization of the mating-type locus. In vitro fruiting was obtained for 16 strains, enabling the definition of seven new species, namely Pseudorhypophila gallica, Pseudorhypophila guyanensis Rhypophila alpibus, Rhypophila brasiliensis, Rhypophila camarguensis, Rhypophila reunionensis and Rhypophila thailandica, as well as two new combinations, namely Pseudorhypophila latipes and Pseudorhypophila oryzae. Eight strains for which in vitro fruiting was not obtained may belong to additional new species. These results expand the known diversity of the Naviculisporaceae and greatly enlarge the genomic data available for the family. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, The Podospora anserina (Rabenh.) Niessl Species Complex in Metropolitan and Overseas France with Description of a New Species, Podospora reunionensis Silar, sp. nov.(2025-12-16) ;Silar, Philippe ;Gautier, Valérie ;Lalanne, Christophe; Arthur, MarvynPodospora anserina (Rabenh.) Niessl is a model fungus that was shown to belong to a complex of seven species with morphologically indistinguishable sexual fruiting bodies. Through the morphological analyses and ITS (Intergenic Transcribed Spacer) sequences of 86 newly-isolated strains, as well as the genome sequences of five strains, we show that members of the P. anserina species complex present different distribution ranges in metropolitan and overseas France. Podospora anserina is present all-over metropolitan France, including Corsica, while P. comata Milovtz. is restricted to the Northern part and P. pauciseta (Ces.) Traverso to the Southern part of continental France. The Guadeloupe hosts P. pseudoanserina C.Boucher, T.S.Nguyen & P.Silar and La Réunion island a species new to science, described here as Podospora reunionensis Silar, sp. nov. This species is closely related to P. comata, but exhibit clear morphological and biological differences. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Characterization of the Podospora anserina (Rabenh.) Niessl peroxidase gene family(2024-02-15) ;Ferrari, Roselyne ;Gautier, Valérie; ;Chan Ho Tong, LaetitiaSilar, PhilippeMajor role of peroxidases in plant biomass degradation is well-established in the white rot basidiomycetes. On the contrary, peroxidases are not used for this purpose by brown rot basidiomycetes, which use instead a non-enzymatic mechanism. In the case of the ascomycetes, not much is known although these fungi have peroxidase genes. Here, we identify and characterize the peroxidase genes of Podospora anserina (Rabenh.) Niessl, an ascomycete used to study development and lignocellulose degradation. We show that this fungus has one class II peroxidase, one hybrid B peroxidase, one haloperoxidase, four functional aromatic peroxygenases, one glutathione peroxidase, one cytochrome C peroxidase and one alkyl peroxidase, but lacks a dye peroxidase. We show that potentially secreted peroxidases (i.e., the class II, hybrid B, haloperoxidase and aromatic peroxygenase peroxidases) present a patchy phylogenetic distribution compatible with an accessory role in finely adapting the different fungal species to their ecological niche, rather than being involved in fundamental roles in fungal biology. Accordingly, targeted gene deletions of the different P. anserina peroxidase genes identified only one phenotype, seemingly an alteration of the timing of ascospore maturation at intermediate concentration of vanillic acid. However, direct measure of peroxidase activity did not show drastic loss of activity in the tested mutants, suggesting compensation between the enzymes. Hence, in P. anserina peroxidases appears to have a minor role in biomass degradation, unlike what has been described in white rot fungi, and thus in this regard appears to be similar to the brown rot fungi.
