2024
Pyrroloquinoline quinone production defines the ability of Devosia species to degrade deoxynivalenol
Guo C, Wen J, Sun Y, Liang G, Wang Z, Pan L, Huang J, Liao Y, Wang Z, Chen Q, Mu P, Deng Y. Pyrroloquinoline quinone production defines the ability of Devosia species to degrade deoxynivalenol. Food & Function 2024, 15: 6134-6146. PMID: 38767386, DOI: 10.1039/d4fo00024b.Peer-Reviewed Original ResearchPyrroloquinoline quinone productionPyrroloquinoline quinoneProduction of deoxynivalenolHEK293T cellsGenome comparisonDevosia speciesGene clusterDegradation activitySynthesis genesCompound C.Contaminates cereal cropsAnimal feed industryDON detoxificationDegrading bacteriumSynthesis abilityCell viability assayDegrading strainsDegrading bacteriaCereal cropsAnimal feedFeed industryCulture mediumGenesDeoxynivalenol degradationStrain
2017
Typing and comparative genome analysis of Brucella melitensis isolated from Lebanon
Zaki N, Salloum T, Osman M, Rafei R, Hamze M, Tokajian S. Typing and comparative genome analysis of Brucella melitensis isolated from Lebanon. FEMS Microbiology Letters 2017, 364: fnx199. PMID: 28961704, DOI: 10.1093/femsle/fnx199.Peer-Reviewed Original ResearchConceptsGenome analysisLateral gene transferComparative genome analysisDraft genome sequencingWhole-genome single nucleotide polymorphism (SNP) analysisB. melitensisZoonotic disease brucellosisDepth genomic characterizationMultiple virulence determinantsSingle nucleotide polymorphism analysisNucleotide polymorphism analysisSequence divergenceGenome comparisonGenomic islandsSingle nucleotide polymorphismsGenetic variationGenomic characterizationDisease brucellosisGene transferMobile elements
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