2024
The genome organization of the Lake Magadi tilapia, Oreochromis Alcolapia grahami, a cichlid extremophile
Bernardi G, Kavembe G, Bergman H, Bucciarelli G, Wood C. The genome organization of the Lake Magadi tilapia, Oreochromis Alcolapia grahami, a cichlid extremophile. Journal Of Great Lakes Research 2024, 50: 102326. DOI: 10.1016/j.jglr.2024.102326.Peer-Reviewed Original ResearchGC-rich isochoresGC-rich regionBase compositionLake Magadi tilapiaGC-poorRepetitive elementsGC-rich genomic regionsGC-poor genomeRepetitive element analysisProtein coding genesGenomes of vertebratesMagadi tilapiaNile tilapiaGenome organizationGenome sequenceGC-richGenomic regionsCoding genesGenomeHot-waterNatural selectionAlcolapia grahamiFish speciesTilapiaCichlids
2019
Lipidomics for wildlife disease etiology and biomarker discovery: a case study of pansteatitis outbreak in South Africa
Koelmel J, Ulmer C, Fogelson S, Jones C, Botha H, Bangma J, Guillette T, Luus-Powell W, Sara J, Smit W, Albert K, Miller H, Guillette M, Olsen B, Cochran J, Garrett T, Yost R, Bowden J. Lipidomics for wildlife disease etiology and biomarker discovery: a case study of pansteatitis outbreak in South Africa. Metabolomics 2019, 15: 38. PMID: 30838461, PMCID: PMC11005104, DOI: 10.1007/s11306-019-1490-9.Peer-Reviewed Original ResearchConceptsApplication of lipidomicsDiverse biological rolesWildlife studiesPossible disease mechanismsClasses of lipidsHigh-resolution tandem mass spectrometryLoskop DamBiological roleMozambique tilapiaCell deathMortality eventsPansteatitisLipidomicsOxidative damageDisease mechanismsAdipose tissuePromising biomarker candidatesBiomarker discoveryDisease etiologyTilapiaTandem mass spectrometryCeramideAquatic lifeLipidomeBiomarker candidates
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