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Mycoparasites, Gut Dwellers, and Saprotrophs: Phylogenomic Reconstructions and Comparative Analyses of Kickxellomycotina Fungi.
Reynolds, Nicole K; Stajich, Jason E; Benny, Gerald L; Barry, Kerrie; Mondo, Stephen; LaButti, Kurt; Lipzen, Anna; Daum, Chris; Grigoriev, Igor V; Ho, Hsiao-Man; Crous, Pedro W; Spatafora, Joseph W; Smith, Matthew E.
Affiliation
  • Reynolds NK; Department of Plant Pathology, University of Florida.
  • Stajich JE; Department of Microbiology & Plant Pathology and Institute for Integrative Genome Biology, University of California-Riverside.
  • Benny GL; Department of Plant Pathology, University of Florida.
  • Barry K; U.S. Department of Energy Joint Genome Institute, Lawrence Berkeley National Laboratory.
  • Mondo S; U.S. Department of Energy Joint Genome Institute, Lawrence Berkeley National Laboratory.
  • LaButti K; U.S. Department of Energy Joint Genome Institute, Lawrence Berkeley National Laboratory.
  • Lipzen A; U.S. Department of Energy Joint Genome Institute, Lawrence Berkeley National Laboratory.
  • Daum C; U.S. Department of Energy Joint Genome Institute, Lawrence Berkeley National Laboratory.
  • Grigoriev IV; U.S. Department of Energy Joint Genome Institute, Lawrence Berkeley National Laboratory.
  • Ho HM; Department of Plant and Microbial Biology, University of California Berkeley.
  • Crous PW; Department of Science Education, University of Education, 134, Section 2, Heping E. Road, National Taipei, Taipei 106, Taiwan.
  • Spatafora JW; Department of Evolutionary Phytopathology, Westerdijk Fungal Biodiversity Institute, Uppsalalaan 8, 3584 CT, Utrecht, The Netherlands.
  • Smith ME; Department of Botany and Plant Pathology, Oregon State University.
Genome Biol Evol ; 15(1)2023 Jan 04.
Article in En | MEDLINE | ID: mdl-36617272
ABSTRACT
Improved sequencing technologies have profoundly altered global views of fungal diversity and evolution. High-throughput sequencing methods are critical for studying fungi due to the cryptic, symbiotic nature of many species, particularly those that are difficult to culture. However, the low coverage genome sequencing (LCGS) approach to phylogenomic inference has not been widely applied to fungi. Here we analyzed 171 Kickxellomycotina fungi using LCGS methods to obtain hundreds of marker genes for robust phylogenomic reconstruction. Additionally, we mined our LCGS data for a set of nine rDNA and protein coding genes to enable analyses across species for which no LCGS data were obtained. The main goals of this study were to 1) evaluate the quality and utility of LCGS data for both phylogenetic reconstruction and functional annotation, 2) test relationships among clades of Kickxellomycotina, and 3) perform comparative functional analyses between clades to gain insight into putative trophic modes. In opposition to previous studies, our nine-gene analyses support two clades of arthropod gut dwelling species and suggest a possible single evolutionary event leading to this symbiotic lifestyle. Furthermore, we resolve the mycoparasitic Dimargaritales as the earliest diverging clade in the subphylum and find four major clades of Coemansia species. Finally, functional analyses illustrate clear variation in predicted carbohydrate active enzymes and secondary metabolites (SM) based on ecology, that is biotroph versus saprotroph. Saprotrophic Kickxellales broadly lack many known pectinase families compared with saprotrophic Mucoromycota and are depauperate for SM but have similar numbers of predicted chitinases as mycoparasitic.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Arthropods / Fungi Limits: Animals / Humans Language: En Journal: Genome Biol Evol Journal subject: BIOLOGIA / BIOLOGIA MOLECULAR Year: 2023 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Arthropods / Fungi Limits: Animals / Humans Language: En Journal: Genome Biol Evol Journal subject: BIOLOGIA / BIOLOGIA MOLECULAR Year: 2023 Document type: Article
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