bioRxiv · 10.1101/2022.10.03.510741
In-silico enrichment of bacterial plasmids by chromosomal depletion using nanopore adaptive sampling
Abstract
Bacterial plasmids play a major role in the spread of antibiotic resistance genes. However, their characterization via DNA sequencing suffers from the low abundance of plasmid DNA in those samples. Although sample preparation methods can enrich the proportion of plasmid DNA before sequencing, these methods are expensive and laborious, and they might introduce a bias by enriching only for specific plasmid DNA sequences. Nanopore adaptive sampling could overcome these issues by rejecting uninteresting DNA molecules during the sequencing process. In this study, we assess the application of adaptive sampling for the enrichment of low-abundant plasmids in known bacterial isolates using two different adaptive sampling tools. We show that a significant enrichment can be achieved even on expired flow cells. By applying adaptive sampling, we also improve the quality of de novo plasmid assemblies and reduce the sequencing time. However, our experiments also highlight issues with adaptive sampling if target and non-target sequences span similar regions.
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Ulrich, J.-U., Epping, L., Pilz, T., Walther, B., Stingl, K., Semmler, T., Renard, B. Y.. 2022-10-04. In-silico enrichment of bacterial plasmids by chromosomal depletion using nanopore adaptive sampling. https://doi.org/10.1101/2022.10.03.510741
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