DataSheet_1_A Phylogenomic Perspective on Evolution and Discordance in the Alpine-Arctic Plant Clade Micranthes (Saxifragaceae).pdf

The increased availability of large phylogenomic datasets is often accompanied by difficulties in disentangling and harnessing the data. These difficulties may be enhanced for species resulting from reticulate evolution and/or rapid radiations producing large-scale discordance. As a result, there is...

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Main Authors: Rebecca L. Stubbs, Ryan A. Folk, Chun-Lei Xiang, Shichao Chen, Douglas E. Soltis, Nico Cellinese
Format: Dataset
Language:unknown
Published: 2020
Subjects:
Online Access:https://doi.org/10.3389/fpls.2019.01773.s001
https://figshare.com/articles/DataSheet_1_A_Phylogenomic_Perspective_on_Evolution_and_Discordance_in_the_Alpine-Arctic_Plant_Clade_Micranthes_Saxifragaceae_pdf/11822952
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spelling ftfrontimediafig:oai:figshare.com:article/11822952 2023-05-15T14:55:51+02:00 DataSheet_1_A Phylogenomic Perspective on Evolution and Discordance in the Alpine-Arctic Plant Clade Micranthes (Saxifragaceae).pdf Rebecca L. Stubbs Ryan A. Folk Chun-Lei Xiang Shichao Chen Douglas E. Soltis Nico Cellinese 2020-02-07T13:26:15Z https://doi.org/10.3389/fpls.2019.01773.s001 https://figshare.com/articles/DataSheet_1_A_Phylogenomic_Perspective_on_Evolution_and_Discordance_in_the_Alpine-Arctic_Plant_Clade_Micranthes_Saxifragaceae_pdf/11822952 unknown doi:10.3389/fpls.2019.01773.s001 https://figshare.com/articles/DataSheet_1_A_Phylogenomic_Perspective_on_Evolution_and_Discordance_in_the_Alpine-Arctic_Plant_Clade_Micranthes_Saxifragaceae_pdf/11822952 CC BY 4.0 CC-BY Botany Plant Biology Plant Systematics and Taxonomy Plant Cell and Molecular Biology Plant Developmental and Reproductive Biology Plant Pathology Plant Physiology Plant Biology not elsewhere classified arctic alpine diversification coalescent gene tree conflict phylogenomics incongruence Saxifragaceae Dataset 2020 ftfrontimediafig https://doi.org/10.3389/fpls.2019.01773.s001 2020-02-12T23:52:17Z The increased availability of large phylogenomic datasets is often accompanied by difficulties in disentangling and harnessing the data. These difficulties may be enhanced for species resulting from reticulate evolution and/or rapid radiations producing large-scale discordance. As a result, there is a need for methods to investigate discordance, and in turn, use this conflict to inform and aid in downstream analyses. Therefore, we drew upon multiple analytical tools to investigate the evolution of Micranthes (Saxifragaceae), a clade of primarily arctic-alpine herbs impacted by reticulate and rapid radiations. To elucidate the evolution of Micranthes we sought near-complete taxon sampling with multiple accessions per species and assembled extensive nuclear (518 putatively single copy loci) and plastid (95 loci) datasets. In addition to a robust phylogeny for Micranthes, this research shows that genetic discordance presents a valuable opportunity to develop hypotheses about its underlying causes, such as hybridization, polyploidization, and range shifts. Specifically, we present a multi-step approach that incorporates multiple checks points for paralogy, including reciprocally blasting targeted genes against transcriptomes, running paralogy checks during the assembly step, and grouping genes into gene families to look for duplications. We demonstrate that a thorough assessment of discordance can be a source of evidence for evolutionary processes that were not adequately captured by a bifurcating tree model, and helped to clarify processes that have structured the evolution of Micranthes. Dataset Arctic Frontiers: Figshare Arctic
institution Open Polar
collection Frontiers: Figshare
op_collection_id ftfrontimediafig
language unknown
topic Botany
Plant Biology
Plant Systematics and Taxonomy
Plant Cell and Molecular Biology
Plant Developmental and Reproductive Biology
Plant Pathology
Plant Physiology
Plant Biology not elsewhere classified
arctic
alpine
diversification
coalescent
gene tree conflict
phylogenomics
incongruence
Saxifragaceae
spellingShingle Botany
Plant Biology
Plant Systematics and Taxonomy
Plant Cell and Molecular Biology
Plant Developmental and Reproductive Biology
Plant Pathology
Plant Physiology
Plant Biology not elsewhere classified
arctic
alpine
diversification
coalescent
gene tree conflict
phylogenomics
incongruence
Saxifragaceae
Rebecca L. Stubbs
Ryan A. Folk
Chun-Lei Xiang
Shichao Chen
Douglas E. Soltis
Nico Cellinese
DataSheet_1_A Phylogenomic Perspective on Evolution and Discordance in the Alpine-Arctic Plant Clade Micranthes (Saxifragaceae).pdf
topic_facet Botany
Plant Biology
Plant Systematics and Taxonomy
Plant Cell and Molecular Biology
Plant Developmental and Reproductive Biology
Plant Pathology
Plant Physiology
Plant Biology not elsewhere classified
arctic
alpine
diversification
coalescent
gene tree conflict
phylogenomics
incongruence
Saxifragaceae
description The increased availability of large phylogenomic datasets is often accompanied by difficulties in disentangling and harnessing the data. These difficulties may be enhanced for species resulting from reticulate evolution and/or rapid radiations producing large-scale discordance. As a result, there is a need for methods to investigate discordance, and in turn, use this conflict to inform and aid in downstream analyses. Therefore, we drew upon multiple analytical tools to investigate the evolution of Micranthes (Saxifragaceae), a clade of primarily arctic-alpine herbs impacted by reticulate and rapid radiations. To elucidate the evolution of Micranthes we sought near-complete taxon sampling with multiple accessions per species and assembled extensive nuclear (518 putatively single copy loci) and plastid (95 loci) datasets. In addition to a robust phylogeny for Micranthes, this research shows that genetic discordance presents a valuable opportunity to develop hypotheses about its underlying causes, such as hybridization, polyploidization, and range shifts. Specifically, we present a multi-step approach that incorporates multiple checks points for paralogy, including reciprocally blasting targeted genes against transcriptomes, running paralogy checks during the assembly step, and grouping genes into gene families to look for duplications. We demonstrate that a thorough assessment of discordance can be a source of evidence for evolutionary processes that were not adequately captured by a bifurcating tree model, and helped to clarify processes that have structured the evolution of Micranthes.
format Dataset
author Rebecca L. Stubbs
Ryan A. Folk
Chun-Lei Xiang
Shichao Chen
Douglas E. Soltis
Nico Cellinese
author_facet Rebecca L. Stubbs
Ryan A. Folk
Chun-Lei Xiang
Shichao Chen
Douglas E. Soltis
Nico Cellinese
author_sort Rebecca L. Stubbs
title DataSheet_1_A Phylogenomic Perspective on Evolution and Discordance in the Alpine-Arctic Plant Clade Micranthes (Saxifragaceae).pdf
title_short DataSheet_1_A Phylogenomic Perspective on Evolution and Discordance in the Alpine-Arctic Plant Clade Micranthes (Saxifragaceae).pdf
title_full DataSheet_1_A Phylogenomic Perspective on Evolution and Discordance in the Alpine-Arctic Plant Clade Micranthes (Saxifragaceae).pdf
title_fullStr DataSheet_1_A Phylogenomic Perspective on Evolution and Discordance in the Alpine-Arctic Plant Clade Micranthes (Saxifragaceae).pdf
title_full_unstemmed DataSheet_1_A Phylogenomic Perspective on Evolution and Discordance in the Alpine-Arctic Plant Clade Micranthes (Saxifragaceae).pdf
title_sort datasheet_1_a phylogenomic perspective on evolution and discordance in the alpine-arctic plant clade micranthes (saxifragaceae).pdf
publishDate 2020
url https://doi.org/10.3389/fpls.2019.01773.s001
https://figshare.com/articles/DataSheet_1_A_Phylogenomic_Perspective_on_Evolution_and_Discordance_in_the_Alpine-Arctic_Plant_Clade_Micranthes_Saxifragaceae_pdf/11822952
geographic Arctic
geographic_facet Arctic
genre Arctic
genre_facet Arctic
op_relation doi:10.3389/fpls.2019.01773.s001
https://figshare.com/articles/DataSheet_1_A_Phylogenomic_Perspective_on_Evolution_and_Discordance_in_the_Alpine-Arctic_Plant_Clade_Micranthes_Saxifragaceae_pdf/11822952
op_rights CC BY 4.0
op_rightsnorm CC-BY
op_doi https://doi.org/10.3389/fpls.2019.01773.s001
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