Area of research
Infectious Diseases · Molecular Biology
Research interest
Research interests include SARS-CoV-2 and COVID-19 Research, Genomics and Phylogenetic Studies, Antibiotic Resistance in Bacteria, and Insect symbiosis and bacterial influences.
The transposable element-rich genome of the cereal pest <i>Sitophilus oryzae</i>
Reductive evolution of virulence repertoire to drive the divergence between community- and hospital-associated methicillin-resistant <i>Staphylococcus aureus</i> of the ST1 lineage
Evolution and epidemic spread of SARS-CoV-2 in Brazil
Clinical and Molecular Description of a High-Copy IncQ1 KPC-2 Plasmid Harbored by the International ST15 Klebsiella pneumoniae Clone
Staphylococcus aureus Small Colony Variants (SCVs): News From a Chronic Prosthetic Joint Infection
Parrot Genomes and the Evolution of Heightened Longevity and Cognition
An integrative, multi-omics approach towards the prioritization of Klebsiella pneumoniae drug targets
Genome-wide diversity and differentiation in New World populations of the human malaria parasite Plasmodium vivax
Adaptive processes of<i>Staphylococcus aureus</i>isolates during the progression from acute to chronic bone and joint infections in patients
Insights on the virulence of swine respiratory tract mycoplasmas through genome-scale metabolic modeling
Chromosomal copy number variation reveals differential levels of genomic plasticity in distinct Trypanosoma cruzi strains
Genome of the Avirulent Human-Infective Trypanosome—Trypanosoma rangeli
The Genome of Anopheles darlingi , the main neotropical malaria vector
Comparative genomic analysis of magnetotactic bacteria from the <i> <scp>D</scp> eltaproteobacteria </i> provides new insights into magnetite and greigite magnetosome genes required for magnetotaxis
Endosymbiosis in trypanosomatids: the genomic cooperation between bacterium and host in the synthesis of essential amino acids is heavily influenced by multiple horizontal gene transfers
Biosynthesis of Vitamins and Cofactors in Bacterium-Harbouring Trypanosomatids Depends on the Symbiotic Association as Revealed by Genomic Analyses
Predicting the Proteins of Angomonas deanei, Strigomonas culicis and Their Respective Endosymbionts Reveals New Aspects of the Trypanosomatidae Family