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A chromosome-level, haplotype-phased Vanilla planifolia genome highlights the challenge of partial endoreplication for accurate whole-genome assembly

Vanilla planifolia, the species cultivated to produce one of the world’s most popular flavors, is highly prone to partial genome endoreplication, which leads to highly unbalanced DNA content in cells. We report here the first molecular evidence of partial endoreplication at the chromosome scale by t...

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Autores principales: Piet, Quentin, Droc, Gaetan, Marande, William, Sarah, Gautier, Bocs, Stéphanie, Klopp, Christophe, Bourge, Mickael, Siljak-Yakovlev, Sonja, Bouchez, Olivier, Lopez-Roques, Céline, Lepers-Andrzejewski, Sandra, Bourgois, Laurent, Zucca, Joseph, Dron, Michel, Besse, Pascale, Grisoni, Michel, Jourda, Cyril, Charron, Carine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9482989/
https://www.ncbi.nlm.nih.gov/pubmed/35617961
http://dx.doi.org/10.1016/j.xplc.2022.100330
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author Piet, Quentin
Droc, Gaetan
Marande, William
Sarah, Gautier
Bocs, Stéphanie
Klopp, Christophe
Bourge, Mickael
Siljak-Yakovlev, Sonja
Bouchez, Olivier
Lopez-Roques, Céline
Lepers-Andrzejewski, Sandra
Bourgois, Laurent
Zucca, Joseph
Dron, Michel
Besse, Pascale
Grisoni, Michel
Jourda, Cyril
Charron, Carine
author_facet Piet, Quentin
Droc, Gaetan
Marande, William
Sarah, Gautier
Bocs, Stéphanie
Klopp, Christophe
Bourge, Mickael
Siljak-Yakovlev, Sonja
Bouchez, Olivier
Lopez-Roques, Céline
Lepers-Andrzejewski, Sandra
Bourgois, Laurent
Zucca, Joseph
Dron, Michel
Besse, Pascale
Grisoni, Michel
Jourda, Cyril
Charron, Carine
author_sort Piet, Quentin
collection PubMed
description Vanilla planifolia, the species cultivated to produce one of the world’s most popular flavors, is highly prone to partial genome endoreplication, which leads to highly unbalanced DNA content in cells. We report here the first molecular evidence of partial endoreplication at the chromosome scale by the assembly and annotation of an accurate haplotype-phased genome of V. planifolia. Cytogenetic data demonstrated that the diploid genome size is 4.09 Gb, with 16 chromosome pairs, although aneuploid cells are frequently observed. Using PacBio HiFi and optical mapping, we assembled and phased a diploid genome of 3.4 Gb with a scaffold N50 of 1.2 Mb and 59 128 predicted protein-coding genes. The atypical k-mer frequencies and the uneven sequencing depth observed agreed with our expectation of unbalanced genome representation. Sixty-seven percent of the genes were scattered over only 30% of the genome, putatively linking gene-rich regions and the endoreplication phenomenon. By contrast, low-coverage regions (non-endoreplicated) were rich in repeated elements but also contained 33% of the annotated genes. Furthermore, this assembly showed distinct haplotype-specific sequencing depth variation patterns, suggesting complex molecular regulation of endoreplication along the chromosomes. This high-quality, anchored assembly represents 83% of the estimated V. planifolia genome. It provides a significant step toward the elucidation of this complex genome. To support post-genomics efforts, we developed the Vanilla Genome Hub, a user-friendly integrated web portal that enables centralized access to high-throughput genomic and other omics data and interoperable use of bioinformatics tools.
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spelling pubmed-94829892022-09-20 A chromosome-level, haplotype-phased Vanilla planifolia genome highlights the challenge of partial endoreplication for accurate whole-genome assembly Piet, Quentin Droc, Gaetan Marande, William Sarah, Gautier Bocs, Stéphanie Klopp, Christophe Bourge, Mickael Siljak-Yakovlev, Sonja Bouchez, Olivier Lopez-Roques, Céline Lepers-Andrzejewski, Sandra Bourgois, Laurent Zucca, Joseph Dron, Michel Besse, Pascale Grisoni, Michel Jourda, Cyril Charron, Carine Plant Commun Research Article Vanilla planifolia, the species cultivated to produce one of the world’s most popular flavors, is highly prone to partial genome endoreplication, which leads to highly unbalanced DNA content in cells. We report here the first molecular evidence of partial endoreplication at the chromosome scale by the assembly and annotation of an accurate haplotype-phased genome of V. planifolia. Cytogenetic data demonstrated that the diploid genome size is 4.09 Gb, with 16 chromosome pairs, although aneuploid cells are frequently observed. Using PacBio HiFi and optical mapping, we assembled and phased a diploid genome of 3.4 Gb with a scaffold N50 of 1.2 Mb and 59 128 predicted protein-coding genes. The atypical k-mer frequencies and the uneven sequencing depth observed agreed with our expectation of unbalanced genome representation. Sixty-seven percent of the genes were scattered over only 30% of the genome, putatively linking gene-rich regions and the endoreplication phenomenon. By contrast, low-coverage regions (non-endoreplicated) were rich in repeated elements but also contained 33% of the annotated genes. Furthermore, this assembly showed distinct haplotype-specific sequencing depth variation patterns, suggesting complex molecular regulation of endoreplication along the chromosomes. This high-quality, anchored assembly represents 83% of the estimated V. planifolia genome. It provides a significant step toward the elucidation of this complex genome. To support post-genomics efforts, we developed the Vanilla Genome Hub, a user-friendly integrated web portal that enables centralized access to high-throughput genomic and other omics data and interoperable use of bioinformatics tools. Elsevier 2022-05-05 /pmc/articles/PMC9482989/ /pubmed/35617961 http://dx.doi.org/10.1016/j.xplc.2022.100330 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Piet, Quentin
Droc, Gaetan
Marande, William
Sarah, Gautier
Bocs, Stéphanie
Klopp, Christophe
Bourge, Mickael
Siljak-Yakovlev, Sonja
Bouchez, Olivier
Lopez-Roques, Céline
Lepers-Andrzejewski, Sandra
Bourgois, Laurent
Zucca, Joseph
Dron, Michel
Besse, Pascale
Grisoni, Michel
Jourda, Cyril
Charron, Carine
A chromosome-level, haplotype-phased Vanilla planifolia genome highlights the challenge of partial endoreplication for accurate whole-genome assembly
title A chromosome-level, haplotype-phased Vanilla planifolia genome highlights the challenge of partial endoreplication for accurate whole-genome assembly
title_full A chromosome-level, haplotype-phased Vanilla planifolia genome highlights the challenge of partial endoreplication for accurate whole-genome assembly
title_fullStr A chromosome-level, haplotype-phased Vanilla planifolia genome highlights the challenge of partial endoreplication for accurate whole-genome assembly
title_full_unstemmed A chromosome-level, haplotype-phased Vanilla planifolia genome highlights the challenge of partial endoreplication for accurate whole-genome assembly
title_short A chromosome-level, haplotype-phased Vanilla planifolia genome highlights the challenge of partial endoreplication for accurate whole-genome assembly
title_sort chromosome-level, haplotype-phased vanilla planifolia genome highlights the challenge of partial endoreplication for accurate whole-genome assembly
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9482989/
https://www.ncbi.nlm.nih.gov/pubmed/35617961
http://dx.doi.org/10.1016/j.xplc.2022.100330
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