Featured Publications
Within-host microevolution of Streptococcus pneumoniae is rapid and adaptive during natural colonisation
Chaguza C, Senghore M, Bojang E, Gladstone RA, Lo SW, Tientcheu PE, Bancroft RE, Worwui A, Foster-Nyarko E, Ceesay F, Okoi C, McGee L, Klugman KP, Breiman RF, Barer MR, Adegbola RA, Antonio M, Bentley SD, Kwambana-Adams BA. Within-host microevolution of Streptococcus pneumoniae is rapid and adaptive during natural colonisation. Nature Communications 2020, 11: 3442. PMID: 32651390, PMCID: PMC7351774, DOI: 10.1038/s41467-020-17327-w.Peer-Reviewed Original ResearchConceptsNatural colonisationHost microevolutionNucleotide substitution ratesWhole-genome sequencingGenomic evolutionNeutral evolutionGenetic diversityHomologous recombinationParallel evolutionGenomic changesAdhesion genesSubstitution ratesHuman-adapted pathogenMicroevolutionStrain variantsColonisationImmune evasionStreptococcus pneumoniaeAntibiotic resistanceGenesEvolutionSequencingDiversityNasopharyngeal carriageBacteria
2023
Accelerated SARS-CoV-2 intrahost evolution leading to distinct genotypes during chronic infection
Chaguza C, Hahn A, Petrone M, Zhou S, Ferguson D, Breban M, Pham K, Peña-Hernández M, Castaldi C, Hill V, Initiative Y, Billig K, Earnest R, Fauver J, Kalinch C, Kerantzas N, Koch T, De Kumar B, Landry M, Ott I, Peaper D, Tikhonova I, Vogels C, Schulz W, Swanstrom R, Roberts S, Grubaugh N. Accelerated SARS-CoV-2 intrahost evolution leading to distinct genotypes during chronic infection. Cell Reports Medicine 2023, 4: 100943. PMID: 36791724, PMCID: PMC9906997, DOI: 10.1016/j.xcrm.2023.100943.Peer-Reviewed Original ResearchConceptsChronic infectionEvolutionary ratesGenetic diversityIntrahost evolutionDistinct genotypesHigher viral genome copiesVirus evolutionary ratesSARS-CoV-2 evolutionUntreated chronic infectionAdvantageous mutationsNucleotide substitutionsViral genome copiesDivergent variantsInfection hypothesisVariant emergenceViral populationsInfectious virusInfectionHallmark changesGenome copiesDifferent genotypesDiversityGenotypesTemporal dynamicsEvolution
2015
Mechanisms and impact of genetic recombination in the evolution of Streptococcus pneumoniae
Chaguza C, Cornick JE, Everett DB. Mechanisms and impact of genetic recombination in the evolution of Streptococcus pneumoniae. Computational And Structural Biotechnology Journal 2015, 13: 241-247. PMID: 25904996, PMCID: PMC4404416, DOI: 10.1016/j.csbj.2015.03.007.Peer-Reviewed Original ResearchGenetic recombinationWhole-genome sequence dataKey evolutionary mechanismGenome sequence dataPopulation geneticsEvolutionary mechanismsGenetic variationSequence dataExogenous DNASelective pressureSpontaneous mutationsHuman diseasesEvolution studiesPneumococcal adaptationRecombinationAdaptive immune responsesComputational toolsGenomeEvolutionGeneticsOrganismsImmune responseRapid influxDNABacterium