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Cultivation Methods of Spirochetes from Borrelia burgdorferi Sensu Lato Complex and Relapsing Fever Borrelia
Published on: November 25, 2022
Phylogeny of a relapsing fever Borrelia species transmitted by the hard tick Ixodes scapularis
1Department of Microbiology & Molecular Genetics, University of California Irvine, Irvine, CA 92697, USA; Department of Medicine, University of California Irvine, Irvine, CA 92697, USA; Department of Ecology & Evolutionary Biology, University of California Irvine, Irvine, CA 92697, USA.
Abstract:
The discovery of Borrelia species that were related to the agents of relapsing fever but were transmitted by hard ticks rather than soft ticks challenged previous taxonomies based largely on microbe-host specificities and geographic considerations. One of these newly-identified organisms is the Borrelia miyamotoi sensu lato strain LB-2001 from North America and transmitted by Ixodes scapularis. This or related strains have been identified as the cause of human disease, but comparatively little is known about their biology or genetics. Using recently acquired chromosome sequence of LB-2001 together with database sequences and additional sequences determined here, I carried out comparisons of the several species of Borrelia, including those in the two major clades: the relapsing fever group of species and the Lyme disease group of species. Phylogenetic inference at the species level was based on four data sets: whole chromosomes of ∼1Mb each, and concatenated sequences of 19 ribosomal protein genes, 3 conserved nucleic acid enzymes (rpoC, recC, and dnaE), and 4 contiguous genes for nucleotide salvage on a large plasmid. Analyses using neighbor-joining, maximum likelihood, and Bayesian methods were largely concordant for each of the trees. They showed that LB-2001 and related hard tick-associated organisms, like Borrelia lonestari, are deeply positioned within the RF group of species and that these organisms did not, as some earlier estimations had suggested, constitute a paraphyletic group. The analyses also provided further evidence that major changes in host ranges and life cycles, such as hard to soft ticks or vice versa, may not correlate well with overall sequence differences. The genetic differences between LB-2001 and B. miyamotoi sensu stricto justify provisional use of the "sensu lato" designation for LB-2001.
Insights
Borrelia miyamotoi sensu lato strain LB-2001, transmitted by hard ticks, is phylogenetically placed within the relapsing fever group. Genetic differences support its distinct classification from Borrelia miyamotoi sensu stricto.
Area of Science:
- Microbiology
- Genetics
- Tick-borne diseases
Background:
- Borrelia species taxonomy was challenged by hard tick-transmitted relapsing fever agents.
- Borrelia miyamotoi sensu lato (LB-2001) is a North American strain transmitted by Ixodes scapularis, implicated in human disease.
- Limited knowledge exists regarding the biology and genetics of LB-2001.
Purpose of the Study:
- To compare Borrelia species, including LB-2001, to understand phylogenetic relationships.
- To investigate the evolutionary positioning of hard tick-associated Borrelia within major clades.
- To assess the genetic basis for classification and host-switching events.
Main Methods:
- Phylogenetic inference using whole chromosome sequences (~1Mb).
- Analysis of concatenated ribosomal protein genes (19 genes).
- Comparison of conserved nucleic acid enzyme genes (rpoC, recC, dnaE) and plasmid-located nucleotide salvage genes.
- Utilized neighbor-joining, maximum likelihood, and Bayesian phylogenetic methods.
Main Results:
- Phylogenetic analyses consistently positioned LB-2001 and related hard tick-associated Borrelia within the relapsing fever (RF) group.
- These organisms do not form a paraphyletic group as previously suggested.
- Host range and life cycle shifts (hard to soft ticks) showed limited correlation with overall sequence divergence.
Conclusions:
- Borrelia miyamotoi sensu lato LB-2001 is phylogenetically nested within the RF group, not a distinct clade.
- The genetic divergence between LB-2001 and B. miyamotoi sensu stricto warrants the "sensu lato" designation.
- Evolutionary adaptations in Borrelia may occur independently of major genomic changes.
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