2012
Analysis of Plasmodium falciparum diversity in natural infections by deep sequencing
Manske M, Miotto O, Campino S, Auburn S, Almagro-Garcia J, Maslen G, O’Brien J, Djimde A, Doumbo O, Zongo I, Ouedraogo J, Michon P, Mueller I, Siba P, Nzila A, Borrmann S, Kiara S, Marsh K, Jiang H, Su X, Amaratunga C, Fairhurst R, Socheat D, Nosten F, Imwong M, White N, Sanders M, Anastasi E, Alcock D, Drury E, Oyola S, Quail M, Turner D, Ruano-Rubio V, Jyothi D, Amenga-Etego L, Hubbart C, Jeffreys A, Rowlands K, Sutherland C, Roper C, Mangano V, Modiano D, Tan J, Ferdig M, Amambua-Ngwa A, Conway D, Takala-Harrison S, Plowe C, Rayner J, Rockett K, Clark T, Newbold C, Berriman M, MacInnis B, Kwiatkowski D. Analysis of Plasmodium falciparum diversity in natural infections by deep sequencing. Nature 2012, 487: 375-379. PMID: 22722859, PMCID: PMC3738909, DOI: 10.1038/nature11174.Peer-Reviewed Original Research
2008
MLST of housekeeping genes captures geographic population structure and suggests a European origin of Borrelia burgdorferi
Margos G, Gatewood A, Aanensen D, Hanincová K, Terekhova D, Vollmer S, Cornet M, Piesman J, Donaghy M, Bormane A, Hurn M, Feil E, Fish D, Casjens S, Wormser G, Schwartz I, Kurtenbach K. MLST of housekeeping genes captures geographic population structure and suggests a European origin of Borrelia burgdorferi. Proceedings Of The National Academy Of Sciences Of The United States Of America 2008, 105: 8730-8735. PMID: 18574151, PMCID: PMC2435589, DOI: 10.1073/pnas.0800323105.Peer-Reviewed Original ResearchConceptsHousekeeping genesIntergenic spacerPopulation structureGeographic population structureChromosomal housekeeping genesMultilocus sequence typing (MLST) schemeB. burgdorferiPhylogenetic signalNorth AmericaEvolutionary relationshipsSequence typing schemeEvolutionary trajectoriesIGS locusSequence dataMLST schemeCultured isolatesGenesBorrelia burgdorferiOuter surface protein CMLST dataDistinct populationsSurface protein CBacterium Borrelia burgdorferiEuropean populationsVector-borne diseases
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