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Supporting data for "Long-read only assembly of Drechmeria coniospora genomes reveals widespread chromosome plasticity and illustrates the limitations of current nanopore methods."
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Supporting data for "Long-read only assembly of Drechmeria coniospora genomes reveals widespread chromosome plasticity and illustrates the limitations of current nanopore methods."

Damien Courtine, Jan Provaznik, Jerome Reboul, Guillaume Blanc, Vladimir Benes et Jonathan, J Ewbank
GigaScience Database
2020

Résumé

drechmeria coniospora genome sequencing Genomic long-read sequencing nanopore technology
Long read sequencing is increasingly being used to determine eukaryotic genomes. We used nanopore technology to generate chromosome-level assemblies for 3 different strains of Drechmeria coniospora, a nematophagous fungus used extensively in the study of innate immunity in Caenorhabditis elegans. One natural geographical isolate demonstrated high stability over decades, whereas a second isolate, not only had a profoundly altered genome structure but exhibited extensive instability. We conducted an in-depth analysis of sequence errors within the 3 genomes and established that even with state-of-the-art tools, nanopore methods alone are insufficient to generate sequence of a sufficient accuracy to merit inclusion in public databases.

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url
https://doi.org/10.5524/100776Afficher
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1 Consultations de la notice

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