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Chloroplast genomes of Rubiaceae: Comparative genomics and molecular phylogeny in subfamily Ixoroideae

In Rubiaceae phylogenetics, the number of markers often proved a limitation with authors failing to provide well-supported trees at tribal and generic levels. A robust phylogeny is a prerequisite to study the evolutionary patterns of traits at different taxonomic levels. Advances in next-generation...

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Autores principales: Ly, Serigne Ndiawar, Garavito, Andrea, De Block, Petra, Asselman, Pieter, Guyeux, Christophe, Charr, Jean-Claude, Janssens, Steven, Mouly, Arnaud, Hamon, Perla, Guyot, Romain
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7192488/
https://www.ncbi.nlm.nih.gov/pubmed/32353023
http://dx.doi.org/10.1371/journal.pone.0232295
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author Ly, Serigne Ndiawar
Garavito, Andrea
De Block, Petra
Asselman, Pieter
Guyeux, Christophe
Charr, Jean-Claude
Janssens, Steven
Mouly, Arnaud
Hamon, Perla
Guyot, Romain
author_facet Ly, Serigne Ndiawar
Garavito, Andrea
De Block, Petra
Asselman, Pieter
Guyeux, Christophe
Charr, Jean-Claude
Janssens, Steven
Mouly, Arnaud
Hamon, Perla
Guyot, Romain
author_sort Ly, Serigne Ndiawar
collection PubMed
description In Rubiaceae phylogenetics, the number of markers often proved a limitation with authors failing to provide well-supported trees at tribal and generic levels. A robust phylogeny is a prerequisite to study the evolutionary patterns of traits at different taxonomic levels. Advances in next-generation sequencing technologies have revolutionized biology by providing, at reduced cost, huge amounts of data for an increased number of species. Due to their highly conserved structure, generally recombination-free, and mostly uniparental inheritance, chloroplast DNA sequences have long been used as choice markers for plant phylogeny reconstruction. The main objectives of this study are: 1) to gain insight in chloroplast genome evolution in the Rubiaceae (Ixoroideae) through efficient methodology for de novo assembly of plastid genomes; and, 2) to test the efficiency of mining SNPs in the nuclear genome of Ixoroideae based on the use of a coffee reference genome to produce well-supported nuclear trees. We assembled whole chloroplast genome sequences for 27 species of the Rubiaceae subfamily Ixoroideae using next-generation sequences. Analysis of the plastid genome structure reveals a relatively good conservation of gene content and order. Generally, low variation was observed between taxa in the boundary regions with the exception of the inverted repeat at both the large and short single copy junctions for some taxa. An average of 79% of the SNP determined in the Coffea genus are transferable to Ixoroideae, with variation ranging from 35% to 96%. In general, the plastid and the nuclear genome phylogenies are congruent with each other. They are well-resolved with well-supported branches. Generally, the tribes form well-identified clades but the tribe Sherbournieae is shown to be polyphyletic. The results are discussed relative to the methodology used and the chloroplast genome features in Rubiaceae and compared to previous Rubiaceae phylogenies.
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spelling pubmed-71924882020-05-11 Chloroplast genomes of Rubiaceae: Comparative genomics and molecular phylogeny in subfamily Ixoroideae Ly, Serigne Ndiawar Garavito, Andrea De Block, Petra Asselman, Pieter Guyeux, Christophe Charr, Jean-Claude Janssens, Steven Mouly, Arnaud Hamon, Perla Guyot, Romain PLoS One Research Article In Rubiaceae phylogenetics, the number of markers often proved a limitation with authors failing to provide well-supported trees at tribal and generic levels. A robust phylogeny is a prerequisite to study the evolutionary patterns of traits at different taxonomic levels. Advances in next-generation sequencing technologies have revolutionized biology by providing, at reduced cost, huge amounts of data for an increased number of species. Due to their highly conserved structure, generally recombination-free, and mostly uniparental inheritance, chloroplast DNA sequences have long been used as choice markers for plant phylogeny reconstruction. The main objectives of this study are: 1) to gain insight in chloroplast genome evolution in the Rubiaceae (Ixoroideae) through efficient methodology for de novo assembly of plastid genomes; and, 2) to test the efficiency of mining SNPs in the nuclear genome of Ixoroideae based on the use of a coffee reference genome to produce well-supported nuclear trees. We assembled whole chloroplast genome sequences for 27 species of the Rubiaceae subfamily Ixoroideae using next-generation sequences. Analysis of the plastid genome structure reveals a relatively good conservation of gene content and order. Generally, low variation was observed between taxa in the boundary regions with the exception of the inverted repeat at both the large and short single copy junctions for some taxa. An average of 79% of the SNP determined in the Coffea genus are transferable to Ixoroideae, with variation ranging from 35% to 96%. In general, the plastid and the nuclear genome phylogenies are congruent with each other. They are well-resolved with well-supported branches. Generally, the tribes form well-identified clades but the tribe Sherbournieae is shown to be polyphyletic. The results are discussed relative to the methodology used and the chloroplast genome features in Rubiaceae and compared to previous Rubiaceae phylogenies. Public Library of Science 2020-04-30 /pmc/articles/PMC7192488/ /pubmed/32353023 http://dx.doi.org/10.1371/journal.pone.0232295 Text en © 2020 Ly et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ly, Serigne Ndiawar
Garavito, Andrea
De Block, Petra
Asselman, Pieter
Guyeux, Christophe
Charr, Jean-Claude
Janssens, Steven
Mouly, Arnaud
Hamon, Perla
Guyot, Romain
Chloroplast genomes of Rubiaceae: Comparative genomics and molecular phylogeny in subfamily Ixoroideae
title Chloroplast genomes of Rubiaceae: Comparative genomics and molecular phylogeny in subfamily Ixoroideae
title_full Chloroplast genomes of Rubiaceae: Comparative genomics and molecular phylogeny in subfamily Ixoroideae
title_fullStr Chloroplast genomes of Rubiaceae: Comparative genomics and molecular phylogeny in subfamily Ixoroideae
title_full_unstemmed Chloroplast genomes of Rubiaceae: Comparative genomics and molecular phylogeny in subfamily Ixoroideae
title_short Chloroplast genomes of Rubiaceae: Comparative genomics and molecular phylogeny in subfamily Ixoroideae
title_sort chloroplast genomes of rubiaceae: comparative genomics and molecular phylogeny in subfamily ixoroideae
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7192488/
https://www.ncbi.nlm.nih.gov/pubmed/32353023
http://dx.doi.org/10.1371/journal.pone.0232295
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