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Pfister, Donald

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Pfister

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Pfister, Donald

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Now showing 1 - 3 of 3
  • Publication

    Multigene Molecular Phylogeny and Biogeographic Diversification of the Earth Tongue Fungi in the Genera Cudonia and Spathularia (Rhytismatales, Ascomycota)

    (Public Library of Science, 2014) Ge, Zai-Wei; Yang, Zhu L.; Pfister, Donald; Carbone, Matteo; Bau, Tolgor; Smith, Matthew E.

    The family Cudoniaceae (Rhytismatales, Ascomycota) was erected to accommodate the “earth tongue fungi” in the genera Cudonia and Spathularia. There have been no recent taxonomic studies of these genera, and the evolutionary relationships within and among these fungi are largely unknown. Here we explore the molecular phylogenetic relationships within Cudonia and Spathularia using maximum likelihood and Bayesian inference analyses based on 111 collections from across the Northern Hemisphere. Phylogenies based on the combined data from ITS, nrLSU, rpb2 and tef-1α sequences support the monophyly of three main clades, the /flavida, /velutipes, and /cudonia clades. The genus Cudonia and the family Cudoniaceae are supported as monophyletic groups, while the genus Spathularia is not monophyletic. Although Cudoniaceae is monophyletic, our analyses agree with previous studies that this family is nested within the Rhytismataceae. Our phylogenetic analyses circumscribes 32 species-level clades, including the putative recognition of 23 undescribed phylogenetic species. Our molecular phylogeny also revealed an unexpectedly high species diversity of Cudonia and Spathularia in eastern Asia, with 16 (out of 21) species-level clades of Cudonia and 8 (out of 11) species-level clades of Spathularia. We estimate that the divergence time of the Cudoniaceae was in the Paleogene approximately 28 Million years ago (Mya) and that the ancestral area for this group of fungi was in Eastern Asia based on the current data. We hypothesize that the large-scale geological and climatic events in Oligocene (e.g. the global cooling and the uplift of the Tibetan plateau) may have triggered evolutionary radiations in this group of fungi in East Asia. This work provides a foundation for future studies on the phylogeny, diversity, and evolution of Cudonia and Spathularia and highlights the need for more molecular studies on collections from Europe and North America.

  • Publication

    The Ascomycota Tree of Life: A Phylum Wide Phylogeny Clarifies the Origin and Evolution of Fundamental Reproductive and Ecological Traits

    (Oxford University Press, 2009) Hewitt, David; Spatafora, Joseph W.; Lutzoni, Francois; Trappe, James M.; Hansen, Karen; Cole, Mariette S.; Crittenden, Peter D.; Dyer, Paul S.; Zuccaro, Alga; Stenroos, Soili; Johnston, Peter; Untereiner, Wendy; Summerbell, Richard C.; Sugiyama, Junta; Shoemaker, Robert A.; Rogers, Jack D.; Sipman, Harrie; O'Donnell, Kerry; Mostert, Lizel; Volkmann-Kohlmeyer, Brigitte; Kohlmeyer, Jan; Inderbitzin, Patrik; Hosaka, Kentaro; Geiser, David M.; Ertz, Damien; Diederich, Paul; Rauhut, Alexandra; Budel, Burkhard; Lucking, Robert; Lumbsch, H. Thorsten; Rossman, Amy Y.; Castlebury, Lisa A.; Griffith, Gareth W.; Hillis, David M.; Blackwell, Meredith; Suh, Sung-Oui; Aptroot, Andre; Wingfield, Michael J.; Gryzenhout, Marieka; Crous, Pedro W.; de Hoog, G. Sybren; Arzanlou, Mahdi; Groenewald, Johannes Z.; Yahr, Rebecca; Bonito, Gregory; Hodkinson, Brendan P.; Fraker, Emily; Wynns, Anja; Ciufetti, Linda; Trippe, Kristin; Andrie, Rachael M.; Gueidan, Cecile; Wang, Zheng; Kauff, Frank; Matheny, P. Brandon; Robbertse, Barbara; Hofstetter, Valerie; Miadlikowska, Jolanta; Townsend, Jeffery P.; Lopez-Giraldez, Francesc; Sung, Gi-Ho; Schoch, Conrad L.; Pfister, Donald; Peterson, Kristin

    We present a 6-gene, 420-species maximum-likelihood phylogeny of Ascomycota, the largest phylum of Fungi. This analysis is the most taxonomically complete to date with species sampled from all 15 currently circumscribed classes. A number of superclass-level nodes that have previously evaded resolution and were unnamed in classifications of the Fungi are resolved for the first time. Based on the 6-gene phylogeny we conducted a phylogenetic informativeness analysis of all 6 genes and a series of ancestral character state reconstructions that focused on morphology of sporocarps, ascus dehiscence, and evolution of nutritional modes and ecologies. A gene-by-gene assessment of phylogenetic informativeness yielded higher levels of informativeness for protein genes (RPB1, RPB2, and TEF1) as compared with the ribosomal genes, which have been the standard bearer in fungal systematics. Our reconstruction of sporocarp characters is consistent with 2 origins for multicellular sexual reproductive structures in Ascomycota, once in the common ancestor of Pezizomycotina and once in the common ancestor of Neolectomycetes. This first report of dual origins of ascomycete sporocarps highlights the complicated nature of assessing homology of morphological traits across Fungi. Furthermore, ancestral reconstruction supports an open sporocarp with an exposed hymenium (apothecium) as the primitive morphology for Pezizomycotina with multiple derivations of the partially (perithecia) or completely enclosed (cleistothecia) sporocarps. Ascus dehiscence is most informative at the class level within Pezizomycotina with most superclass nodes reconstructed equivocally. Character state reconstructions support a terrestrial, saprobic ecology as ancestral. In contrast to previous studies, these analyses support multiple origins of lichenization events with the loss of lichenization as less frequent and limited to terminal, closely related species.

  • Publication

    Morphological and molecular identification of a new species of Truncospora (Polyporales, Basidiomycota) in North America

    (Magnolia Press, 2016) ZHAO, CHANG-LIN; Xu, Feng; Pfister, Donald

    Truncospora wisconsinensis sp. nov., a new poroid wood-inhabiting species, is proposed based on a combination of molecular and morphological data. This species demonstrates a unique combination of characters including: annual habit; pileate basidiomata with a white pileus and pore surface; a dimitic hyphal system with non- to slightly dextrinoid, cyanophilous skeletal hyphae; and ellipsoid, truncate, slightly thick-walled, strongly dextrinoid basidiospores. Phylogenetic analyses using ITS and partial tef1-α support the position of this new species as a sister clade of T. ohiensis.