Metagenomic surveillance for bacterial tick-borne pathogens using nanopore adaptive sampling

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Abstract

Technological and computational advancements in the fields of genomics and bioinformatics are providing exciting new opportunities for pathogen discovery and genomic surveillance. In particular, single-molecule nucleotide sequence data originating from Oxford Nanopore Technologies (ONT) sequencing platforms can be bioinformatically leveraged, in real-time, for enhanced biosurveillance of a vast array of zoonoses. The recently released nanopore adaptive sampling (NAS) strategy facilitates immediate mapping of individual nucleotide molecules to a given reference as each molecule is being sequenced. User-defined thresholds then allow for the retention or rejection of specific molecules, informed by the real-time reference mapping results, as they are physically passing through a given sequencing nanopore. Here, we show how NAS can be used to selectively sequence DNA of multiple bacterial tick-borne pathogens circulating in wild populations of the blacklegged tick vector, Ixodes scapularis.

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Kipp, E. J., Lindsey, L. L., Khoo, B., Faulk, C., Oliver, J. D., & Larsen, P. A. (2023). Metagenomic surveillance for bacterial tick-borne pathogens using nanopore adaptive sampling. Scientific Reports, 13(1). https://doi.org/10.1038/s41598-023-37134-9

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