Literature DB >> 23396156

A systematic, morphological and ecological overview of the Clavariaceae (Agaricales).

Joshua M Birkebak1, Jordan R Mayor, K Martin Ryberg, P Brandon Matheny.   

Abstract

The Clavariaceae is a diverse family of mushroom-forming fungi composed of species that produce simple clubs, coralloid, lamellate-stipitate, hydnoid and resupinate sporocarps. Here we present a systematic and ecological overview of the Clavariaceae based on phylogenetic analysis of sequences of the nuclear large subunit ribosomal RNA (nLSU), including nine from type collections. Forty-seven sequences from sporocarps of diverse taxa across the Clavariaceae were merged with 243 environmental sequences from GenBank and analyzed phylogenetically to determine major clades within the family. Four major clades or lineages were recovered: (i) Mucronella, (ii) Ramariopsis-Clavulinopsis, (iii) Hyphodontiella and (iv) Clavaria-Camarophyllopsis-Clavicorona. Clavaria is paraphyletic, within which the lamellate and pileate-stipitate genus Camarophyllopsis is derived and composed of two independent lineages. The monotypic genus Clavicorona also appears nested within Clavaria. The monophyly of Clavaria and Camarophyllopsis, however, cannot be statistically rejected. We compared differing classification schemes for the genera Ramariopsis and Clavulinopsis, most of which are inconsistent with the molecular phylogeny and are statistically rejected. Scytinopogon, a genus classified in the Clavariaceae by several authors, shares phylogenetic affinities with the Trechisporales. Overall 126 molecular operational taxonomic units can be recognized in the Clavariaceae, roughly half of which are known only from environmental sequences, an estimate that exceeds the known number of species in the family. Stable isotope ratios of carbon and nitrogen were measured from specimens representing most major phylogenetic lineages to predict trophic strategies. These results suggest that most non-lignicolous species feature a biotrophic mode of nutrition. Ancestral state reconstruction analysis highlights the taxonomic significance of at least nine morphological traits at various depths in the family tree.

Entities:  

Keywords:  biotrophy; evolution; morphology; nutritional mode; taxonomy

Mesh:

Year:  2013        PMID: 23396156     DOI: 10.3852/12-070

Source DB:  PubMed          Journal:  Mycologia        ISSN: 0027-5514            Impact factor:   2.696


  6 in total

1.  Does warming by open-top chambers induce change in the root-associated fungal community of the arctic dwarf shrub Cassiope tetragona (Ericaceae)?

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Journal:  Mycorrhiza       Date:  2017-03-27       Impact factor: 3.387

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Authors:  I Olariaga; S Huhtinen; T Læssøe; J H Petersen; K Hansen
Journal:  Stud Mycol       Date:  2020-06-12       Impact factor: 16.097

Review 3.  Pattern formation features might explain homoplasy: fertile surfaces in higher fungi as an example.

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Journal:  Theory Biosci       Date:  2022-02-16       Impact factor: 1.919

Review 4.  Evolutionary Morphogenesis of Sexual Fruiting Bodies in Basidiomycota: Toward a New Evo-Devo Synthesis.

Authors:  Máté Virágh; Zsolt Merényi; Árpád Csernetics; Csenge Földi; Neha Sahu; Xiao-Bin Liu; David S Hibbett; László G Nagy
Journal:  Microbiol Mol Biol Rev       Date:  2021-11-24       Impact factor: 13.044

5.  Amplicon-Based Sequencing of Soil Fungi from Wood Preservative Test Sites.

Authors:  Grant T Kirker; Amy B Bishell; Michelle A Jusino; Jonathan M Palmer; William J Hickey; Daniel L Lindner
Journal:  Front Microbiol       Date:  2017-10-18       Impact factor: 5.640

6.  Horizontal gene cluster transfer increased hallucinogenic mushroom diversity.

Authors:  Hannah T Reynolds; Vinod Vijayakumar; Emile Gluck-Thaler; Hailee Brynn Korotkin; Patrick Brandon Matheny; Jason C Slot
Journal:  Evol Lett       Date:  2018-02-27
  6 in total

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