Floral convergence in Oncidiinae (Cymbidieae; Orchidaceae): An expanded concept of Gomesa and a new genus Nohawilliamsia

Detalhes bibliográficos
Autor(a) principal: Chase, Mark W.
Data de Publicação: 2009
Outros Autores: Williams, Norris H., Faria, Aparecida D., Neubig, Kurt M., Amaral, Maria do Carmo Estanislau do, Whitten, William Mark
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional do INPA
Texto Completo: https://repositorio.inpa.gov.br/handle/1/16304
Resumo: BackgroundFloral morphology, particularly the angle of lip attachment to the column, has historically been the fundamental character used in establishing generic limits in subtribe Oncidiinae (Orchidaceae), but it has also been long recognized that reliance on this character alone has produced a highly artificial set of genera. In essence, lip/column relationships reflect syndromes associated with pollinator preferences; most genera of Oncidiinae as previously defined have consisted of a single floral type. Here, the degree to which this has influenced generic delimitation in Brazilian members of the largest genus of Oncidiinae, Oncidium, which previous molecular (DNA) studies have demonstrated to be polyphyletic, is evaluated.MethodsPhylogenetic analyses of the following multiple DNA regions were used: the plastid psbA-trnH intergenic spacer, matK exon and two regions of ycf1 exon and nuclear ribosomal DNA, comprised of the two internal transcribed spacers, ITS1 and ITS2, and the 5·8S gene. Results from all regions analysed separately indicated highly similar relationships, so a combined matrix was analysed.Key ResultsNearly all species groups of Brazilian Oncidium are only distantly related to the type species of the genus, O. altissimum, from the Caribbean. There are two exceptions to this geographical rule: O. baueri is related to the type group and O. orthostates, an isolated species that lacks the defining tabula infrastigmata of Oncidium, is not exclusively related to any previously described genus in the subtribe. Several well-supported subclades can be observed in these results, but they do not correspond well to sections of Oncidium as previously circumscribed or to segregate genera as defined by several recent authors. In spite of their floral differences, these groups of Oncidium, formerly treated as O. sections Barbata, Concoloria pro parte, Crispa, Ranifera, Rhinocerotes, Rostrata (only O. venustum), Synsepala, Verrucituberculata pro parte and Waluewa, form a well-supported clade with Gomesa (including Rodrigueziella and Rodrigueziopsis) embedded in it. Two often recognized segregate genera, Baptistonia and Ornithophora, and the recently described Carriella are also embedded within the Brazilian clade. The level of variation within major subclades of the Gomesa clade is low and similar to that observed within other genera of Oncidiinae.ConclusionsConvergence on a stereotypical syndrome of floral traits associated with pollination by oil-collecting bees has resulted in these characters not being reliable for producing monophyletic taxa, and the genus Oncidium, defined by these characters, is grossly polyphyletic. Vegetative and a few floral/inflorescence characters link these taxa with a mainly Brazilian distribution, and they were all transferred to Gomesa on this basis rather than separated from Gomesa based on their floral differences, which we hypothesize to be simple shifts in pollination strategies. Other authors have described a large number of new genera for these former members of Oncidium, but most of these are not supported by the results presented here (i.e. they are not monophyletic). A new genus, Nohawilliamsia, is described for O. orthostates because it does not fit in any currently recognized genus and is only distantly related to any other member of Oncidiinae.
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spelling Chase, Mark W.Williams, Norris H.Faria, Aparecida D.Neubig, Kurt M.Amaral, Maria do Carmo Estanislau doWhitten, William Mark2020-06-03T19:27:18Z2020-06-03T19:27:18Z2009https://repositorio.inpa.gov.br/handle/1/1630410.1093/aob/mcp067BackgroundFloral morphology, particularly the angle of lip attachment to the column, has historically been the fundamental character used in establishing generic limits in subtribe Oncidiinae (Orchidaceae), but it has also been long recognized that reliance on this character alone has produced a highly artificial set of genera. In essence, lip/column relationships reflect syndromes associated with pollinator preferences; most genera of Oncidiinae as previously defined have consisted of a single floral type. Here, the degree to which this has influenced generic delimitation in Brazilian members of the largest genus of Oncidiinae, Oncidium, which previous molecular (DNA) studies have demonstrated to be polyphyletic, is evaluated.MethodsPhylogenetic analyses of the following multiple DNA regions were used: the plastid psbA-trnH intergenic spacer, matK exon and two regions of ycf1 exon and nuclear ribosomal DNA, comprised of the two internal transcribed spacers, ITS1 and ITS2, and the 5·8S gene. Results from all regions analysed separately indicated highly similar relationships, so a combined matrix was analysed.Key ResultsNearly all species groups of Brazilian Oncidium are only distantly related to the type species of the genus, O. altissimum, from the Caribbean. There are two exceptions to this geographical rule: O. baueri is related to the type group and O. orthostates, an isolated species that lacks the defining tabula infrastigmata of Oncidium, is not exclusively related to any previously described genus in the subtribe. Several well-supported subclades can be observed in these results, but they do not correspond well to sections of Oncidium as previously circumscribed or to segregate genera as defined by several recent authors. In spite of their floral differences, these groups of Oncidium, formerly treated as O. sections Barbata, Concoloria pro parte, Crispa, Ranifera, Rhinocerotes, Rostrata (only O. venustum), Synsepala, Verrucituberculata pro parte and Waluewa, form a well-supported clade with Gomesa (including Rodrigueziella and Rodrigueziopsis) embedded in it. Two often recognized segregate genera, Baptistonia and Ornithophora, and the recently described Carriella are also embedded within the Brazilian clade. The level of variation within major subclades of the Gomesa clade is low and similar to that observed within other genera of Oncidiinae.ConclusionsConvergence on a stereotypical syndrome of floral traits associated with pollination by oil-collecting bees has resulted in these characters not being reliable for producing monophyletic taxa, and the genus Oncidium, defined by these characters, is grossly polyphyletic. Vegetative and a few floral/inflorescence characters link these taxa with a mainly Brazilian distribution, and they were all transferred to Gomesa on this basis rather than separated from Gomesa based on their floral differences, which we hypothesize to be simple shifts in pollination strategies. Other authors have described a large number of new genera for these former members of Oncidium, but most of these are not supported by the results presented here (i.e. they are not monophyletic). A new genus, Nohawilliamsia, is described for O. orthostates because it does not fit in any currently recognized genus and is only distantly related to any other member of Oncidiinae.Volume 104, Número 3, Pags. 387-402Attribution-NonCommercial-NoDerivs 3.0 Brazilhttp://creativecommons.org/licenses/by-nc-nd/3.0/br/info:eu-repo/semantics/openAccessDna, Ribosomal SpacerConvergent EvolutionFloral TraitMonocotyledonNew GenusPhylogeneticsPollinatorRelatednessTaxonomyClassificationFlowerGeneticsHistologyOrchidaceaePhylogenyPlastidDna, Ribosomal SpacerFlowersOrchidaceaePhylogenyPlastidsApoideaCymbidieaeGomesaOncidiinaeOncidiumOncidium AltissimumOncidium BaueriOrchidaceaeRodrigueziellaRostrataApoideaCymbidieaeGomesaOncidiinaeOncidiumOncidium AltissimumOncidium BaueriOrchidaceaeRodrigueziellaFloral convergence in Oncidiinae (Cymbidieae; Orchidaceae): An expanded concept of Gomesa and a new genus Nohawilliamsiainfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleAnnals of Botanyengreponame:Repositório Institucional do INPAinstname:Instituto Nacional de Pesquisas da Amazônia (INPA)instacron:INPAORIGINALartigo-inpa.pdfartigo-inpa.pdfapplication/pdf362801https://repositorio.inpa.gov.br/bitstream/1/16304/1/artigo-inpa.pdfc13413be7b08119017a6831b3ccccec8MD511/163042020-06-03 16:02:23.597oai:repositorio:1/16304Repositório de PublicaçõesPUBhttps://repositorio.inpa.gov.br/oai/requestopendoar:2020-06-03T20:02:23Repositório Institucional do INPA - Instituto Nacional de Pesquisas da Amazônia (INPA)false
dc.title.en.fl_str_mv Floral convergence in Oncidiinae (Cymbidieae; Orchidaceae): An expanded concept of Gomesa and a new genus Nohawilliamsia
title Floral convergence in Oncidiinae (Cymbidieae; Orchidaceae): An expanded concept of Gomesa and a new genus Nohawilliamsia
spellingShingle Floral convergence in Oncidiinae (Cymbidieae; Orchidaceae): An expanded concept of Gomesa and a new genus Nohawilliamsia
Chase, Mark W.
Dna, Ribosomal Spacer
Convergent Evolution
Floral Trait
Monocotyledon
New Genus
Phylogenetics
Pollinator
Relatedness
Taxonomy
Classification
Flower
Genetics
Histology
Orchidaceae
Phylogeny
Plastid
Dna, Ribosomal Spacer
Flowers
Orchidaceae
Phylogeny
Plastids
Apoidea
Cymbidieae
Gomesa
Oncidiinae
Oncidium
Oncidium Altissimum
Oncidium Baueri
Orchidaceae
Rodrigueziella
Rostrata
Apoidea
Cymbidieae
Gomesa
Oncidiinae
Oncidium
Oncidium Altissimum
Oncidium Baueri
Orchidaceae
Rodrigueziella
title_short Floral convergence in Oncidiinae (Cymbidieae; Orchidaceae): An expanded concept of Gomesa and a new genus Nohawilliamsia
title_full Floral convergence in Oncidiinae (Cymbidieae; Orchidaceae): An expanded concept of Gomesa and a new genus Nohawilliamsia
title_fullStr Floral convergence in Oncidiinae (Cymbidieae; Orchidaceae): An expanded concept of Gomesa and a new genus Nohawilliamsia
title_full_unstemmed Floral convergence in Oncidiinae (Cymbidieae; Orchidaceae): An expanded concept of Gomesa and a new genus Nohawilliamsia
title_sort Floral convergence in Oncidiinae (Cymbidieae; Orchidaceae): An expanded concept of Gomesa and a new genus Nohawilliamsia
author Chase, Mark W.
author_facet Chase, Mark W.
Williams, Norris H.
Faria, Aparecida D.
Neubig, Kurt M.
Amaral, Maria do Carmo Estanislau do
Whitten, William Mark
author_role author
author2 Williams, Norris H.
Faria, Aparecida D.
Neubig, Kurt M.
Amaral, Maria do Carmo Estanislau do
Whitten, William Mark
author2_role author
author
author
author
author
dc.contributor.author.fl_str_mv Chase, Mark W.
Williams, Norris H.
Faria, Aparecida D.
Neubig, Kurt M.
Amaral, Maria do Carmo Estanislau do
Whitten, William Mark
dc.subject.eng.fl_str_mv Dna, Ribosomal Spacer
Convergent Evolution
Floral Trait
Monocotyledon
New Genus
Phylogenetics
Pollinator
Relatedness
Taxonomy
Classification
Flower
Genetics
Histology
Orchidaceae
Phylogeny
Plastid
Dna, Ribosomal Spacer
Flowers
Orchidaceae
Phylogeny
Plastids
Apoidea
Cymbidieae
Gomesa
Oncidiinae
Oncidium
Oncidium Altissimum
Oncidium Baueri
Orchidaceae
Rodrigueziella
Rostrata
Apoidea
Cymbidieae
Gomesa
Oncidiinae
Oncidium
Oncidium Altissimum
Oncidium Baueri
Orchidaceae
Rodrigueziella
topic Dna, Ribosomal Spacer
Convergent Evolution
Floral Trait
Monocotyledon
New Genus
Phylogenetics
Pollinator
Relatedness
Taxonomy
Classification
Flower
Genetics
Histology
Orchidaceae
Phylogeny
Plastid
Dna, Ribosomal Spacer
Flowers
Orchidaceae
Phylogeny
Plastids
Apoidea
Cymbidieae
Gomesa
Oncidiinae
Oncidium
Oncidium Altissimum
Oncidium Baueri
Orchidaceae
Rodrigueziella
Rostrata
Apoidea
Cymbidieae
Gomesa
Oncidiinae
Oncidium
Oncidium Altissimum
Oncidium Baueri
Orchidaceae
Rodrigueziella
description BackgroundFloral morphology, particularly the angle of lip attachment to the column, has historically been the fundamental character used in establishing generic limits in subtribe Oncidiinae (Orchidaceae), but it has also been long recognized that reliance on this character alone has produced a highly artificial set of genera. In essence, lip/column relationships reflect syndromes associated with pollinator preferences; most genera of Oncidiinae as previously defined have consisted of a single floral type. Here, the degree to which this has influenced generic delimitation in Brazilian members of the largest genus of Oncidiinae, Oncidium, which previous molecular (DNA) studies have demonstrated to be polyphyletic, is evaluated.MethodsPhylogenetic analyses of the following multiple DNA regions were used: the plastid psbA-trnH intergenic spacer, matK exon and two regions of ycf1 exon and nuclear ribosomal DNA, comprised of the two internal transcribed spacers, ITS1 and ITS2, and the 5·8S gene. Results from all regions analysed separately indicated highly similar relationships, so a combined matrix was analysed.Key ResultsNearly all species groups of Brazilian Oncidium are only distantly related to the type species of the genus, O. altissimum, from the Caribbean. There are two exceptions to this geographical rule: O. baueri is related to the type group and O. orthostates, an isolated species that lacks the defining tabula infrastigmata of Oncidium, is not exclusively related to any previously described genus in the subtribe. Several well-supported subclades can be observed in these results, but they do not correspond well to sections of Oncidium as previously circumscribed or to segregate genera as defined by several recent authors. In spite of their floral differences, these groups of Oncidium, formerly treated as O. sections Barbata, Concoloria pro parte, Crispa, Ranifera, Rhinocerotes, Rostrata (only O. venustum), Synsepala, Verrucituberculata pro parte and Waluewa, form a well-supported clade with Gomesa (including Rodrigueziella and Rodrigueziopsis) embedded in it. Two often recognized segregate genera, Baptistonia and Ornithophora, and the recently described Carriella are also embedded within the Brazilian clade. The level of variation within major subclades of the Gomesa clade is low and similar to that observed within other genera of Oncidiinae.ConclusionsConvergence on a stereotypical syndrome of floral traits associated with pollination by oil-collecting bees has resulted in these characters not being reliable for producing monophyletic taxa, and the genus Oncidium, defined by these characters, is grossly polyphyletic. Vegetative and a few floral/inflorescence characters link these taxa with a mainly Brazilian distribution, and they were all transferred to Gomesa on this basis rather than separated from Gomesa based on their floral differences, which we hypothesize to be simple shifts in pollination strategies. Other authors have described a large number of new genera for these former members of Oncidium, but most of these are not supported by the results presented here (i.e. they are not monophyletic). A new genus, Nohawilliamsia, is described for O. orthostates because it does not fit in any currently recognized genus and is only distantly related to any other member of Oncidiinae.
publishDate 2009
dc.date.issued.fl_str_mv 2009
dc.date.accessioned.fl_str_mv 2020-06-03T19:27:18Z
dc.date.available.fl_str_mv 2020-06-03T19:27:18Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv https://repositorio.inpa.gov.br/handle/1/16304
dc.identifier.doi.none.fl_str_mv 10.1093/aob/mcp067
url https://repositorio.inpa.gov.br/handle/1/16304
identifier_str_mv 10.1093/aob/mcp067
dc.language.iso.fl_str_mv eng
language eng
dc.relation.ispartof.pt_BR.fl_str_mv Volume 104, Número 3, Pags. 387-402
dc.rights.driver.fl_str_mv Attribution-NonCommercial-NoDerivs 3.0 Brazil
http://creativecommons.org/licenses/by-nc-nd/3.0/br/
info:eu-repo/semantics/openAccess
rights_invalid_str_mv Attribution-NonCommercial-NoDerivs 3.0 Brazil
http://creativecommons.org/licenses/by-nc-nd/3.0/br/
eu_rights_str_mv openAccess
dc.publisher.none.fl_str_mv Annals of Botany
publisher.none.fl_str_mv Annals of Botany
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