Publication:
Using Phylogenetic and Coalescent Methods to Understand the Species Diversity in the Cladia aggregata Complex (Ascomycota, Lecanorales)

dc.contributor.authorParnmen S.
dc.contributor.authorRangsiruji A.
dc.contributor.authorMongkolsuk P.
dc.contributor.authorBoonpragob K.
dc.contributor.authorNutakki A.
dc.contributor.authorLumbsch H.T.
dc.date.accessioned2021-04-05T03:33:32Z
dc.date.available2021-04-05T03:33:32Z
dc.date.issued2012
dc.date.issuedBE2555
dc.description.abstractThe Cladia aggregata complex is one of the phenotypically most variable groups in lichenized fungi, making species determination difficult and resulting in different classifications accepting between one to eight species. Multi-locus DNA sequence data provide an avenue to test species delimitation scenarios using genealogical and coalescent methods, employing gene and species trees. Here we tested species delimitation in the complex using molecular data of four loci (nuITS and IGS rDNA, protein-coding GAPDH and Mcm-7), including 474 newly generated sequences. Using a combination of ML and Bayesian gene tree topologies, species tree inferences, coalescent-based species delimitation, and examination of phenotypic variation we assessed the circumscription of lineages. We propose that results from our analyses support a 12 species delimitation scenario, suggesting that there is a high level of species diversity in the complex. Morphological and chemical characters often do not characterize lineages but show some degree of plasticity within at least some of the clades. However, clades can often be characterized by a combination of several phenotypical characters. In contrast to the amount of homoplasy in the morphological characters, the data set exhibits some geographical patterns with putative species having distribution patterns, such as austral, Australasian or being endemic to Australia, New Zealand or Tasmania. © 2012 Parnmen et al.
dc.format.mimetypeapplication/pdf
dc.identifier.citationPLoS ONE. Vol 7, No.12 (2012), p.-
dc.identifier.doi10.1371/journal.pone.0052245
dc.identifier.issn19326203
dc.identifier.other2-s2.0-84871278727
dc.identifier.urihttps://hdl.handle.net/20.500.14740/6849
dc.rights.holderมหาวิทยาลัยศรีนครินทรวิโรฒ
dc.subject.otherArticle
dc.subject.otherAscomycetes
dc.subject.otherCladia aggregata complex
dc.subject.otherControlled study
dc.subject.otherFungal structures
dc.subject.otherGene locus
dc.subject.otherLecanorales
dc.subject.otherMolecular genetics
dc.subject.otherNonhuman
dc.subject.otherPhenotypic plasticity
dc.subject.otherPhylogeny
dc.subject.otherSpecies diversity
dc.subject.otherTaxon
dc.subject.otherAscomycota
dc.subject.otherBiodiversity
dc.subject.otherEvolution, Molecular
dc.subject.otherGenes, Fungal
dc.subject.otherPhenotype
dc.subject.otherPhylogeny
dc.subject.otherSpecies Specificity
dc.subject.otherAscomycota
dc.subject.otherCladia aggregata
dc.subject.otherFungi
dc.subject.otherLecanorales
dc.titleUsing Phylogenetic and Coalescent Methods to Understand the Species Diversity in the Cladia aggregata Complex (Ascomycota, Lecanorales)
dc.typeArticle
dspace.entity.typePublication
swu.datasource.scopushttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84871278727&doi=10.1371%2fjournal.pone.0052245&partnerID=40&md5=6351d9a64c28b9e48f3d080bc83f135b

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