6533b81ffe1ef96bd1277d05
RESEARCH PRODUCT
Spatial clustering of Borrelia burgdorferi sensu lato within populations of Allen's chipmunks and dusky-footed woodrats in northwestern California.
Gregory M. HackerRobert S. LaneYvette A. GirardBernadette ClueitNatalia FedorovaRichard N. BrownMark Higleysubject
0301 basic medicineBacterial DiseasesChipmunkslcsh:MedicineForestsDisease VectorsPathology and Laboratory MedicineTrees0302 clinical medicineTicksMedicine and Health SciencesSquirrelslcsh:ScienceMammalsMultidisciplinarybiologyEcologyArvicolinaeSciuridaeEukaryotaPlantsTerrestrial EnvironmentsBacterial PathogensInfectious DiseasesMedical MicrobiologyVertebratesPathogensNeotamiasNorthern flying squirrelResearch ArticleBorrelia BurgdorferiArthropoda030231 tropical medicine030106 microbiologyZoologyTickMicrobiologyRodentsHost SpecificityEcosystems03 medical and health sciencesSensubiology.animalparasitic diseasesArachnidaAnimalsBorrelia burgdorferiMicrobial PathogensEcosystemSpatial AnalysisBacteriaIxodesBorrelialcsh:REcology and Environmental SciencesOrganismsBiology and Life Sciences15. Life on landbiology.organism_classificationbacterial infections and mycosesNeotoma fuscipesInvertebratesBorrelia InfectionChipmunkSpecies InteractionsCalifornia ground squirrelAmnioteslcsh:Qdescription
The ecology of Lyme borreliosis is complex in northwestern California, with several potential reservoir hosts, tick vectors, and genospecies of Borrelia burgdorferi sensu lato. The primary objective of this study was to determine the fine-scale spatial distribution of different genospecies in four rodent species, the California ground squirrel (Otospermophilus beecheyi), northern flying squirrel (Glaucomys sabrinus), dusky-footed woodrat (Neotoma fuscipes), and Allen's chipmunk (Neotamias senex). Rodents were live-trapped between June 2004 and May 2005 at the Hoopa Valley Tribal Reservation (HVTR) in Humboldt County, California. Ear-punch biopsies obtained from each rodent were tested by polymerase chain reaction (PCR) and sequencing analysis. The programs ArcGIS and SaTScan were used to examine the spatial distribution of genospecies. Multinomial log-linear models were used to model habitat and host-specific characteristics and their effect on the presence of each borrelial genospecies. The Akaike information criterion (AICc) was used to compare models and determine model fit. Borrelia burgdorferi sensu stricto was primarily associated with chipmunks and B. bissettiae largely with woodrats. The top model included the variables "host species", "month", and "elevation" (weight = 0.84). Spatial clustering of B. bissettiae was detected in the northwestern section of the HVTR, whereas B. burgdorferi sensu stricto was clustered in the southeastern section. We conclude that the spatial distribution of these borreliae are driven at least in part by host species, time-of-year, and elevation.
| year | journal | country | edition | language |
|---|---|---|---|---|
| 2017-08-01 | PloS one |