2018
Uncovering Genomic Regions Associated with Trypanosoma Infections in Wild Populations of the Tsetse Fly Glossina fuscipes
Gloria-Soria A, Dunn WA, Yu X, Vigneron A, Lee KY, Li M, Weiss BL, Zhao H, Aksoy S, Caccone A. Uncovering Genomic Regions Associated with Trypanosoma Infections in Wild Populations of the Tsetse Fly Glossina fuscipes. G3: Genes, Genomes, Genetics 2018, 8: 887-897. PMID: 29343494, PMCID: PMC5844309, DOI: 10.1534/g3.117.300493.Peer-Reviewed Original ResearchConceptsGenomic resourcesRelated speciesCandidate genesNonmodel organismsTranscript librariesFunctional genomicsTranscriptome assemblyFunctional annotationWild populationsPhysiological traitsGenomic regionsDNA regulationMost speciesRNAseq experimentsGenetic basisLaboratory coloniesGenesFunctional studiesPolymorphic sitesSpeciesTrypanosome infection statusGenomeNew assemblyTrypanosoma infectionFlies
2017
Theory, practice, and conservation in the age of genomics: The Galápagos giant tortoise as a case study
Gaughran S, Quinzin M, Miller J, Garrick R, Edwards D, Russello M, Poulakakis N, Ciofi C, Beheregaray L, Caccone A. Theory, practice, and conservation in the age of genomics: The Galápagos giant tortoise as a case study. Evolutionary Applications 2017, 11: 1084-1093. PMID: 30026799, PMCID: PMC6050186, DOI: 10.1111/eva.12551.Peer-Reviewed Original ResearchGalápagos giant tortoisesSingle nucleotide polymorphismsGenetic differentiationPopulation structureGiant tortoisesRecent single nucleotide polymorphismGenomewide single nucleotide polymorphismsGenomic single nucleotide polymorphismsGiant tortoise speciesHigh-throughput DNA sequencingStructured natural populationsHundreds of SNPsThousands of SNPsPopulation genetics theoryTraditional genetic markersAge of genomicsMitochondrial DNA analysisNonmodel organismsNonmodel speciesEvolutionary historyNatural populationsGenetic theoryTortoise speciesUnnatural groupingGenomic data