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Frederik, A.

Publications and source records attributed to Frederik, A..

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A near-complete chromosome from a bacterial pathogen integrated into the genome of its arthropod vector

Lateral gene transfer (LGT) from organellar to eukaryotic genomes is ubiquitous, resulting in the presence of widespread nuclear mitochondrial DNA segments (NUMTs) and/or plastid gene transfers. While LGT from bacterial associates of eukaryotes is generally less common, many arthropod genomes are littered with LGT originating from Wolbachia (order Rickettsiales) - a vertically transmitted, obligate intracellular symbiont of invertebrates. This contrasts with Rickettsia, a related genus including many important human pathogens, which has not been shown to promulgate LGT within its arthropod vectors. Here, we present the 8.6 Gb genome of a cell line derived from A. variegatum (the tropical bont tick), which is the primary vector of Rickettsia africae (agent of African tick-bite fever). In addition to numerous NUMTs and diverse families of transposable elements, an almost-complete chromosome of R. africae origin was identified in the cell line genome, localised to the putative sex chromosome. Sequencing of field-collected A. variegatum confirmed the presence of this large LGT in wild ticks, although the absence of transferred genes from the R. africae plasmid provided a means to differentiate LGT from genuine rickettsial infections. These findings highlight the imperative to consider the possibility of LGT when screening vectors for pathogens by PCR.

genomics↗