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Genome Size Variation and Comparative Genomics Reveal Intraspecific Diversity in Brassica rapa

Traditionally, reference genomes in crop species rely on the assembly of one accession, thus occulting most of intraspecific diversity. However, rearrangements, gene duplications, and transposable element content may have a large impact on the genomic structure, which could generate new phenotypic t...

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Autores principales: Boutte, Julien, Maillet, Loeiz, Chaussepied, Thomas, Letort, Sébastien, Aury, Jean-Marc, Belser, Caroline, Boideau, Franz, Brunet, Anael, Coriton, Olivier, Deniot, Gwenaëlle, Falentin, Cyril, Huteau, Virginie, Lodé-Taburel, Maryse, Morice, Jérôme, Trotoux, Gwenn, Chèvre, Anne-Marie, Rousseau-Gueutin, Mathieu, Ferreira de Carvalho, Julie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7689015/
https://www.ncbi.nlm.nih.gov/pubmed/33281844
http://dx.doi.org/10.3389/fpls.2020.577536
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author Boutte, Julien
Maillet, Loeiz
Chaussepied, Thomas
Letort, Sébastien
Aury, Jean-Marc
Belser, Caroline
Boideau, Franz
Brunet, Anael
Coriton, Olivier
Deniot, Gwenaëlle
Falentin, Cyril
Huteau, Virginie
Lodé-Taburel, Maryse
Morice, Jérôme
Trotoux, Gwenn
Chèvre, Anne-Marie
Rousseau-Gueutin, Mathieu
Ferreira de Carvalho, Julie
author_facet Boutte, Julien
Maillet, Loeiz
Chaussepied, Thomas
Letort, Sébastien
Aury, Jean-Marc
Belser, Caroline
Boideau, Franz
Brunet, Anael
Coriton, Olivier
Deniot, Gwenaëlle
Falentin, Cyril
Huteau, Virginie
Lodé-Taburel, Maryse
Morice, Jérôme
Trotoux, Gwenn
Chèvre, Anne-Marie
Rousseau-Gueutin, Mathieu
Ferreira de Carvalho, Julie
author_sort Boutte, Julien
collection PubMed
description Traditionally, reference genomes in crop species rely on the assembly of one accession, thus occulting most of intraspecific diversity. However, rearrangements, gene duplications, and transposable element content may have a large impact on the genomic structure, which could generate new phenotypic traits. Comparing two Brassica rapa genomes recently sequenced and assembled using long-read technology and optical mapping, we investigated structural variants and repetitive content between the two accessions and genome size variation among a core collection. We explored the structural consequences of the presence of large repeated sequences in B. rapa ‘Z1’ genome vs. the B. rapa ‘Chiifu’ genome, using comparative genomics and cytogenetic approaches. First, we showed that large genomic variants on chromosomes A05, A06, A09, and A10 are due to large insertions and inversions when comparing B. rapa ‘Z1’ and B. rapa ‘Chiifu’ at the origin of important length differences in some chromosomes. For instance, lengths of ‘Z1’ and ‘Chiifu’ A06 chromosomes were estimated in silico to be 55 and 29 Mb, respectively. To validate these observations, we compared using fluorescent in situ hybridization (FISH) the two A06 chromosomes present in an F1 hybrid produced by crossing these two varieties. We confirmed a length difference of 17.6% between the A06 chromosomes of ‘Z1’ compared to ‘Chiifu.’ Alternatively, using a copy number variation approach, we were able to quantify the presence of a higher number of rDNA and gypsy elements in ‘Z1’ genome compared to ‘Chiifu’ on different chromosomes including A06. Using flow cytometry, the total genome size of 12 Brassica accessions corresponding to a B. rapa available core collection was estimated and revealed a genome size variation of up to 16% between these accessions as well as some shared inversions. This study revealed the contribution of long-read sequencing of new accessions belonging to different cultigroups of B. rapa and highlighted the potential impact of differential insertion of repeat elements and inversions of large genomic regions in genome size intraspecific variability.
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spelling pubmed-76890152020-12-03 Genome Size Variation and Comparative Genomics Reveal Intraspecific Diversity in Brassica rapa Boutte, Julien Maillet, Loeiz Chaussepied, Thomas Letort, Sébastien Aury, Jean-Marc Belser, Caroline Boideau, Franz Brunet, Anael Coriton, Olivier Deniot, Gwenaëlle Falentin, Cyril Huteau, Virginie Lodé-Taburel, Maryse Morice, Jérôme Trotoux, Gwenn Chèvre, Anne-Marie Rousseau-Gueutin, Mathieu Ferreira de Carvalho, Julie Front Plant Sci Plant Science Traditionally, reference genomes in crop species rely on the assembly of one accession, thus occulting most of intraspecific diversity. However, rearrangements, gene duplications, and transposable element content may have a large impact on the genomic structure, which could generate new phenotypic traits. Comparing two Brassica rapa genomes recently sequenced and assembled using long-read technology and optical mapping, we investigated structural variants and repetitive content between the two accessions and genome size variation among a core collection. We explored the structural consequences of the presence of large repeated sequences in B. rapa ‘Z1’ genome vs. the B. rapa ‘Chiifu’ genome, using comparative genomics and cytogenetic approaches. First, we showed that large genomic variants on chromosomes A05, A06, A09, and A10 are due to large insertions and inversions when comparing B. rapa ‘Z1’ and B. rapa ‘Chiifu’ at the origin of important length differences in some chromosomes. For instance, lengths of ‘Z1’ and ‘Chiifu’ A06 chromosomes were estimated in silico to be 55 and 29 Mb, respectively. To validate these observations, we compared using fluorescent in situ hybridization (FISH) the two A06 chromosomes present in an F1 hybrid produced by crossing these two varieties. We confirmed a length difference of 17.6% between the A06 chromosomes of ‘Z1’ compared to ‘Chiifu.’ Alternatively, using a copy number variation approach, we were able to quantify the presence of a higher number of rDNA and gypsy elements in ‘Z1’ genome compared to ‘Chiifu’ on different chromosomes including A06. Using flow cytometry, the total genome size of 12 Brassica accessions corresponding to a B. rapa available core collection was estimated and revealed a genome size variation of up to 16% between these accessions as well as some shared inversions. This study revealed the contribution of long-read sequencing of new accessions belonging to different cultigroups of B. rapa and highlighted the potential impact of differential insertion of repeat elements and inversions of large genomic regions in genome size intraspecific variability. Frontiers Media S.A. 2020-11-12 /pmc/articles/PMC7689015/ /pubmed/33281844 http://dx.doi.org/10.3389/fpls.2020.577536 Text en Copyright © 2020 Boutte, Maillet, Chaussepied, Letort, Aury, Belser, Boideau, Brunet, Coriton, Deniot, Falentin, Huteau, Lodé-Taburel, Morice, Trotoux, Chèvre, Rousseau-Gueutin and Ferreira de Carvalho. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Boutte, Julien
Maillet, Loeiz
Chaussepied, Thomas
Letort, Sébastien
Aury, Jean-Marc
Belser, Caroline
Boideau, Franz
Brunet, Anael
Coriton, Olivier
Deniot, Gwenaëlle
Falentin, Cyril
Huteau, Virginie
Lodé-Taburel, Maryse
Morice, Jérôme
Trotoux, Gwenn
Chèvre, Anne-Marie
Rousseau-Gueutin, Mathieu
Ferreira de Carvalho, Julie
Genome Size Variation and Comparative Genomics Reveal Intraspecific Diversity in Brassica rapa
title Genome Size Variation and Comparative Genomics Reveal Intraspecific Diversity in Brassica rapa
title_full Genome Size Variation and Comparative Genomics Reveal Intraspecific Diversity in Brassica rapa
title_fullStr Genome Size Variation and Comparative Genomics Reveal Intraspecific Diversity in Brassica rapa
title_full_unstemmed Genome Size Variation and Comparative Genomics Reveal Intraspecific Diversity in Brassica rapa
title_short Genome Size Variation and Comparative Genomics Reveal Intraspecific Diversity in Brassica rapa
title_sort genome size variation and comparative genomics reveal intraspecific diversity in brassica rapa
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7689015/
https://www.ncbi.nlm.nih.gov/pubmed/33281844
http://dx.doi.org/10.3389/fpls.2020.577536
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