μLAS technology for DNA isolation coupled to Cas9-assisted targeting for sequencing and assembly of a 30 kb region in plant genome

Author:

Milon Nicolas12,Chantry-Darmon Céline3,Satge Carine3,Fustier Margaux-Alison3,Cauet Stephane3,Moreau Sandra4,Callot Caroline3,Bellec Arnaud3,Gabrieli Tslil5,Saïas Laure2,Boutonnet Audrey2,Ginot Frédéric2ORCID,Bergès Hélène3,Bancaud Aurélien1ORCID

Affiliation:

1. CNRS, LAAS, 7 Avenue du Colonel Roche, F-31400, Toulouse, France

2. Adelis Technologies, 478 Rue de la Découverte, 31670 Labège, France

3. French Plant Genomic Resource Center, INRA—CNRGV, 24 Chemin de Borde Rouge—Auzeville, CS 52627, 31326 Castanet Tolosan Cedex, France

4. Laboratory of Plant-Microbe Interactions, INRA—LIPM, 24 Chemin de Borde Rouge—Auzeville, CS 52627, 31326 Castanet Tolosan Cedex, France

5. School of Chemistry, Center of Nanoscience and Nanotechnology, Raymond and Beverly Sackler Faculty of Exact Sciences, Tel Aviv University, Tel Aviv, Israel

Abstract

Abstract Cas9-assisted targeting of DNA fragments in complex genomes is viewed as an essential strategy to obtain high-quality and continuous sequence data. However, the purity of target loci selected by pulsed-field gel electrophoresis (PFGE) has so far been insufficient to assemble the sequence in one contig. Here, we describe the μLAS technology to capture and purify high molecular weight DNA. First, the technology is optimized to perform high sensitivity DNA profiling with a limit of detection of 20 fg/μl for 50 kb fragments and an analytical time of 50 min. Then, μLAS is operated to isolate a 31.5 kb locus cleaved by Cas9 in the genome of the plant Medicago truncatula. Target purification is validated on a Bacterial Artificial Chromosome plasmid, and subsequently carried out in whole genome with μLAS, PFGE or by combining these techniques. PacBio sequencing shows an enrichment factor of the target sequence of 84 with PFGE alone versus 892 by association of PFGE with μLAS. These performances allow us to sequence and assemble one contig of 29 441 bp with 99% sequence identity to the reference sequence.

Funder

European Commission

Région Midi-Pyrénées–Occitanie

Publisher

Oxford University Press (OUP)

Subject

Genetics

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