2021
Demographic history and patterns of molecular evolution from whole genome sequencing in the radiation of Galapagos giant tortoises
Jensen E, Gaughran S, Garrick R, Russello M, Caccone A. Demographic history and patterns of molecular evolution from whole genome sequencing in the radiation of Galapagos giant tortoises. Molecular Ecology 2021, 30: 6325-6339. PMID: 34510620, DOI: 10.1111/mec.16176.Peer-Reviewed Original ResearchConceptsGalapagos giant tortoisesPopulation genetics theoryGiant tortoisesWhole-genome sequencingMolecular evolutionWhole genomeGenetic theoryGenome sequencingPopulation genetic summary statisticsGiant tortoise speciesPopulation genetic predictionsLife-history traitsSignals of selectionPatterns of diversityMutation accumulation ratesGenetic summary statisticsEvolutionary distinctivenessRecent radiationExtant lineagesPhylogeographic studiesHistory traitsPopulation genomicsEvolutionary historyMutation accumulationDemographic history
2019
The population genomics of multiple tsetse fly (Glossina fuscipes fuscipes) admixture zones in Uganda
Saarman NP, Opiro R, Hyseni C, Echodu R, Opiyo EA, Dion K, Johnson T, Aksoy S, Caccone A. The population genomics of multiple tsetse fly (Glossina fuscipes fuscipes) admixture zones in Uganda. Molecular Ecology 2019, 28: 66-85. PMID: 30471158, PMCID: PMC9642080, DOI: 10.1111/mec.14957.Peer-Reviewed Original ResearchConceptsAdmixture zonePopulation genomicsHybrid zoneMitochondrial cytochrome oxidase IGenome-wide admixtureProcess of speciationCytochrome oxidase IPatterns of divergenceMaternal inheritance patternDivergent lineagesReproductive barriersSecondary contactOxidase IEvolutionary biologyApproximate Bayesian computationGenetic lineagesParental typesGenetic markersInheritance patternGenomicsLineagesMultiple generationsBayesian computationSpeciationRiver network
2018
Population genomics through time provides insights into the consequences of decline and rapid demographic recovery through head‐starting in a Galapagos giant tortoise
Jensen E, Edwards D, Garrick R, Miller J, Gibbs J, Cayot L, Tapia W, Caccone A, Russello M. Population genomics through time provides insights into the consequences of decline and rapid demographic recovery through head‐starting in a Galapagos giant tortoise. Evolutionary Applications 2018, 11: 1811-1821. PMID: 30459831, PMCID: PMC6231475, DOI: 10.1111/eva.12682.Peer-Reviewed Original ResearchGiant tortoisesBottleneck eventsGenetic diversityGenetic variationPopulation declineTortoise populationsPopulation sizeCurrent genetic diversityEffective population sizePopulation genetics theoryWide single nucleotide polymorphism dataCaptive breeding programsRapid demographic recoveryRecent population declineSingle nucleotide polymorphism dataGalapagos giant tortoisesNucleotide polymorphism dataRapid population declineLarge population sizesPopulation genomicsSpecies restorationLong-term persistencePopulation structureGenetic patternsGenetic theoryUrban rat races: spatial population genomics of brown rats (Rattus norvegicus) compared across multiple cities
Combs M, Byers K, Ghersi B, Blum M, Caccone A, Costa F, Himsworth C, Richardson J, Munshi-South J. Urban rat races: spatial population genomics of brown rats (Rattus norvegicus) compared across multiple cities. Proceedings Of The Royal Society B 2018, 285: 20180245. PMID: 29875297, PMCID: PMC6015871, DOI: 10.1098/rspb.2018.0245.Peer-Reviewed Original ResearchConceptsGene flowGenome-wide single nucleotide polymorphismsSpatial population genomicsGenome-wide diversityShortest distance classesGenerality of predictionsPopulation genomicsGenetic discontinuityLimited dispersalNeutral evolutionSingle nucleotide polymorphismsMultiple speciesPest managementSame speciesBrown ratsDifferent biomesDistance classesNucleotide polymorphismsAnimal movementSpeciesGenomicsMajor waterwaysCoancestryClustering analysisDispersal
2017
Population genomics of the Asian tiger mosquito, Aedes albopictus: insights into the recent worldwide invasion
Kotsakiozi P, Richardson J, Pichler V, Favia G, Martins A, Urbanelli S, Armbruster P, Caccone A. Population genomics of the Asian tiger mosquito, Aedes albopictus: insights into the recent worldwide invasion. Ecology And Evolution 2017, 7: 10143-10157. PMID: 29238544, PMCID: PMC5723592, DOI: 10.1002/ece3.3514.Peer-Reviewed Original ResearchSingle nucleotide polymorphismsGenetic structureRecent invasionRestriction Site-Associated DNA SequencingAsian tiger mosquitoGenomics-based approachesTiger mosquitoPopulation genomicsInvasive populationsNative rangeWorldwide invasionMultiple invasionsGenomic diversityRange populationsPopulation clustersMajor clustersDNA sequencingNucleotide polymorphismsAedes albopictusVector control strategiesInvasionMosquitoesLocal scaleDifferentiationGenomics
2016
Patterns of Genome-Wide Variation in Glossina fuscipes fuscipes Tsetse Flies from Uganda
Gloria-Soria A, Dunn WA, Telleria EL, Evans BR, Okedi L, Echodu R, Warren WC, Montague MJ, Aksoy S, Caccone A. Patterns of Genome-Wide Variation in Glossina fuscipes fuscipes Tsetse Flies from Uganda. G3: Genes, Genomes, Genetics 2016, 6: 1573-1584. PMID: 27172181, PMCID: PMC4889654, DOI: 10.1534/g3.116.027235.Peer-Reviewed Original ResearchMeSH KeywordsAnimalsChromosome MappingDNA, MitochondrialGene-Environment InteractionGenes, InsectGenetic LinkageGenetic VariationGenetics, PopulationGenome, InsectGenome-Wide Association StudyGenomicsGenotypeGeographyHigh-Throughput Nucleotide SequencingLinkage DisequilibriumMicrosatellite RepeatsPolymorphism, Single NucleotideSelection, GeneticTsetse FliesUgandaConceptsSingle nucleotide polymorphismsLinkage disequilibriumExtent of LDLocal environmental adaptationGenome-wide variationDetection of lociOverall linkage disequilibriumInsect vectorsDifferent environmental conditionsWhole-genome sequencingPopulation genomicsStrong selectionAssociation analysisEnvironmental adaptationGenomic patternsPopulation dynamicsSignificant genetic associationUninfected fliesDisease transmissionSequence technologyAssociation studiesEnvironmental conditionsTsetse fliesHuman African trypanosomiasisRelevant phenotypes