Resolution of the ordinal phylogeny of mosses using targeted exons from organellar and nuclear genomes

Mosses are a highly diverse lineage of land plants. Here, the authors provide a detailed phylogeny of 29 orders of moss, using nuclear and organelle data to provide robust hypotheses for most of the ordinal moss relationships.

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Autores principales: Yang Liu, Matthew G. Johnson, Cymon J. Cox, Rafael Medina, Nicolas Devos, Alain Vanderpoorten, Lars Hedenäs, Neil E. Bell, James R. Shevock, Blanka Aguero, Dietmar Quandt, Norman J. Wickett, A. Jonathan Shaw, Bernard Goffinet
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/b9ba2c9fad984c4b8d7ac37c3b37c951
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spelling oai:doaj.org-article:b9ba2c9fad984c4b8d7ac37c3b37c9512021-12-02T13:27:31ZResolution of the ordinal phylogeny of mosses using targeted exons from organellar and nuclear genomes10.1038/s41467-019-09454-w2041-1723https://doaj.org/article/b9ba2c9fad984c4b8d7ac37c3b37c9512019-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09454-whttps://doaj.org/toc/2041-1723Mosses are a highly diverse lineage of land plants. Here, the authors provide a detailed phylogeny of 29 orders of moss, using nuclear and organelle data to provide robust hypotheses for most of the ordinal moss relationships.Yang LiuMatthew G. JohnsonCymon J. CoxRafael MedinaNicolas DevosAlain VanderpoortenLars HedenäsNeil E. BellJames R. ShevockBlanka AgueroDietmar QuandtNorman J. WickettA. Jonathan ShawBernard GoffinetNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yang Liu
Matthew G. Johnson
Cymon J. Cox
Rafael Medina
Nicolas Devos
Alain Vanderpoorten
Lars Hedenäs
Neil E. Bell
James R. Shevock
Blanka Aguero
Dietmar Quandt
Norman J. Wickett
A. Jonathan Shaw
Bernard Goffinet
Resolution of the ordinal phylogeny of mosses using targeted exons from organellar and nuclear genomes
description Mosses are a highly diverse lineage of land plants. Here, the authors provide a detailed phylogeny of 29 orders of moss, using nuclear and organelle data to provide robust hypotheses for most of the ordinal moss relationships.
format article
author Yang Liu
Matthew G. Johnson
Cymon J. Cox
Rafael Medina
Nicolas Devos
Alain Vanderpoorten
Lars Hedenäs
Neil E. Bell
James R. Shevock
Blanka Aguero
Dietmar Quandt
Norman J. Wickett
A. Jonathan Shaw
Bernard Goffinet
author_facet Yang Liu
Matthew G. Johnson
Cymon J. Cox
Rafael Medina
Nicolas Devos
Alain Vanderpoorten
Lars Hedenäs
Neil E. Bell
James R. Shevock
Blanka Aguero
Dietmar Quandt
Norman J. Wickett
A. Jonathan Shaw
Bernard Goffinet
author_sort Yang Liu
title Resolution of the ordinal phylogeny of mosses using targeted exons from organellar and nuclear genomes
title_short Resolution of the ordinal phylogeny of mosses using targeted exons from organellar and nuclear genomes
title_full Resolution of the ordinal phylogeny of mosses using targeted exons from organellar and nuclear genomes
title_fullStr Resolution of the ordinal phylogeny of mosses using targeted exons from organellar and nuclear genomes
title_full_unstemmed Resolution of the ordinal phylogeny of mosses using targeted exons from organellar and nuclear genomes
title_sort resolution of the ordinal phylogeny of mosses using targeted exons from organellar and nuclear genomes
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/b9ba2c9fad984c4b8d7ac37c3b37c951
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