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Resolving species boundaries in a recent radiation with the Angiosperms353 probe set: the Lomatium packardiae/L. anomalum clade of the L. triternatum (Apiaceae) complex

PREMISE: Speciation not associated with morphological shifts is challenging to detect unless molecular data are employed. Using Sanger‐sequencing approaches, the Lomatium packardiae/L. anomalum subcomplex within the larger Lomatium triternatum complex could not be resolved. Therefore, we attempt to...

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Autores principales: Ottenlips, Michael V., Mansfield, Donald H., Buerki, Sven, Feist, Mary Ann E., Downie, Stephen R., Dodsworth, Steven, Forest, Félix, Plunkett, Gregory M., Smith, James F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8362113/
https://www.ncbi.nlm.nih.gov/pubmed/34105148
http://dx.doi.org/10.1002/ajb2.1676
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author Ottenlips, Michael V.
Mansfield, Donald H.
Buerki, Sven
Feist, Mary Ann E.
Downie, Stephen R.
Dodsworth, Steven
Forest, Félix
Plunkett, Gregory M.
Smith, James F.
author_facet Ottenlips, Michael V.
Mansfield, Donald H.
Buerki, Sven
Feist, Mary Ann E.
Downie, Stephen R.
Dodsworth, Steven
Forest, Félix
Plunkett, Gregory M.
Smith, James F.
author_sort Ottenlips, Michael V.
collection PubMed
description PREMISE: Speciation not associated with morphological shifts is challenging to detect unless molecular data are employed. Using Sanger‐sequencing approaches, the Lomatium packardiae/L. anomalum subcomplex within the larger Lomatium triternatum complex could not be resolved. Therefore, we attempt to resolve these boundaries here. METHODS: The Angiosperms353 probe set was employed to resolve the ambiguity within Lomatium triternatum species complex using 48 accessions assigned to L. packardiae, L. anomalum, or L. triternatum. In addition to exon data, 54 nuclear introns were extracted and were complete for all samples. Three approaches were used to estimate evolutionary relationships and define species boundaries: STACEY, a Bayesian coalescent‐based species tree analysis that takes incomplete lineage sorting into account; ASTRAL‐III, another coalescent‐based species tree analysis; and a concatenated approach using MrBayes. Climatic factors, morphological characters, and soil variables were measured and analyzed to provide additional support for recovered groups. RESULTS: The STACEY analysis recovered three major clades and seven subclades, all of which are geographically structured, and some correspond to previously named taxa. No other analysis had full agreement between recovered clades and other parameters. Climatic niche and leaflet width and length provide some predictive ability for the major clades. CONCLUSIONS: The results suggest that these groups are in the process of incipient speciation and incomplete lineage sorting has been a major barrier to resolving boundaries within this lineage previously. These results are hypothesized through sequencing of multiple loci and analyzing data using coalescent‐based processes.
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spelling pubmed-83621132021-08-17 Resolving species boundaries in a recent radiation with the Angiosperms353 probe set: the Lomatium packardiae/L. anomalum clade of the L. triternatum (Apiaceae) complex Ottenlips, Michael V. Mansfield, Donald H. Buerki, Sven Feist, Mary Ann E. Downie, Stephen R. Dodsworth, Steven Forest, Félix Plunkett, Gregory M. Smith, James F. Am J Bot Research Articles PREMISE: Speciation not associated with morphological shifts is challenging to detect unless molecular data are employed. Using Sanger‐sequencing approaches, the Lomatium packardiae/L. anomalum subcomplex within the larger Lomatium triternatum complex could not be resolved. Therefore, we attempt to resolve these boundaries here. METHODS: The Angiosperms353 probe set was employed to resolve the ambiguity within Lomatium triternatum species complex using 48 accessions assigned to L. packardiae, L. anomalum, or L. triternatum. In addition to exon data, 54 nuclear introns were extracted and were complete for all samples. Three approaches were used to estimate evolutionary relationships and define species boundaries: STACEY, a Bayesian coalescent‐based species tree analysis that takes incomplete lineage sorting into account; ASTRAL‐III, another coalescent‐based species tree analysis; and a concatenated approach using MrBayes. Climatic factors, morphological characters, and soil variables were measured and analyzed to provide additional support for recovered groups. RESULTS: The STACEY analysis recovered three major clades and seven subclades, all of which are geographically structured, and some correspond to previously named taxa. No other analysis had full agreement between recovered clades and other parameters. Climatic niche and leaflet width and length provide some predictive ability for the major clades. CONCLUSIONS: The results suggest that these groups are in the process of incipient speciation and incomplete lineage sorting has been a major barrier to resolving boundaries within this lineage previously. These results are hypothesized through sequencing of multiple loci and analyzing data using coalescent‐based processes. John Wiley and Sons Inc. 2021-06-08 2021-07 /pmc/articles/PMC8362113/ /pubmed/34105148 http://dx.doi.org/10.1002/ajb2.1676 Text en © 2021 The Authors. American Journal of Botany published by Wiley Periodicals LLC on behalf of Botanical Society of America. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Ottenlips, Michael V.
Mansfield, Donald H.
Buerki, Sven
Feist, Mary Ann E.
Downie, Stephen R.
Dodsworth, Steven
Forest, Félix
Plunkett, Gregory M.
Smith, James F.
Resolving species boundaries in a recent radiation with the Angiosperms353 probe set: the Lomatium packardiae/L. anomalum clade of the L. triternatum (Apiaceae) complex
title Resolving species boundaries in a recent radiation with the Angiosperms353 probe set: the Lomatium packardiae/L. anomalum clade of the L. triternatum (Apiaceae) complex
title_full Resolving species boundaries in a recent radiation with the Angiosperms353 probe set: the Lomatium packardiae/L. anomalum clade of the L. triternatum (Apiaceae) complex
title_fullStr Resolving species boundaries in a recent radiation with the Angiosperms353 probe set: the Lomatium packardiae/L. anomalum clade of the L. triternatum (Apiaceae) complex
title_full_unstemmed Resolving species boundaries in a recent radiation with the Angiosperms353 probe set: the Lomatium packardiae/L. anomalum clade of the L. triternatum (Apiaceae) complex
title_short Resolving species boundaries in a recent radiation with the Angiosperms353 probe set: the Lomatium packardiae/L. anomalum clade of the L. triternatum (Apiaceae) complex
title_sort resolving species boundaries in a recent radiation with the angiosperms353 probe set: the lomatium packardiae/l. anomalum clade of the l. triternatum (apiaceae) complex
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8362113/
https://www.ncbi.nlm.nih.gov/pubmed/34105148
http://dx.doi.org/10.1002/ajb2.1676
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