Charlotte Cravero
Arrival date : 04/11/2019
Departure date : 30/06/2025
Status : Research Assistant
Roles :
Last completed degree : Master's degree in Genomics and Data Analysis
Professional experiences :
A chromosome-level genome assembly of Vanilla planifolia uncovers the genomic architecture underlying partial endoreplication
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A reference genome assembly for Quercus canariensis Willd
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A reference genome assembly for Quercus canariensis Willd
Authors
F. Couturier, C. Cravero, I. Lesur, J. Confais, E. Belmonte, L. Piat, W. Marande, C. Rellstab, M. Valbuena, E. Saez-Laguna, L. Duvaux
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Abstract
We present a genome assembly from a specimen of Quercus canariensis (Fagaceae; Fagales; Magnoliopsida). The assembly was generated using PacBio HiFi long reads with an approximate sequencing depth of 39X and scaffolded using a reference-guided approach. The genome sequence has a total length of 816.0 megabases for haplotype 1 and 804.8 megabases for haplotype 2. The two haplotypes are each resolved into 12 chromosomal pseudomolecules, with only 3.48% and 1.36% of sequences remaining unplaced in haplotypes 1 and 2, respectively. Assembly completeness is supported by BUSCO scores of 98.3% and 98.2% complete genes for haplotypes 1 and 2, respectively. Structural annotation identified 51,882 and 46,482 protein-coding genes in haplotypes 1 and 2, respectively. This genome assembly provides the first chromosome-scale reference genome for Q. canariensis, laying the base for future genomic and evolutionary studies in this understudied species of the hybridizing white oak species complex.
Taxonomy Lineage cellular organisms; Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta; Spermatophyta; Magnoliopsida; eudicotyledons; Gunneridae; Pentapetalae; rosids; fabids; Fagales; Fagaceae; Quercus
EBI:txid568684
Quercus canariensis Willd. 1809 (Willdenow)
A cluster of putative resistance genes is associated with a dominant resistance to sunflower broomrape
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Low-frequency somatic mutations are heritable in tropical trees Dicorynia guianensis and Sextonia rubra
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An online database for einkorn wheat to aid in gene discovery and functional genomics studies
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Einkorn genomics sheds light on history of the oldest domesticated wheat
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