Area of research
Global and Planetary Change · Genetics
Research interest
Research interests include Biology, Ecology, Biological dispersal, Local adaptation, Gene flow, and Natural history.
Island biogeography and competition drive rapid venom complexity evolution across rattlesnakes
The genetic regulatory architecture and epigenomic basis for age-related changes in rattlesnake venom
Spatial variation in genomic signatures of local adaptation during the cane toad invasion of Australia
Selection Across the Three-Dimensional Structure of Venom Proteins from North American Scolopendromorph Centipedes
Sequence Divergence in Venom Genes Within and Between Montane Pitviper (Viperidae: Crotalinae: Cerrophidion) Species is Driven by Mutation–Drift Equilibrium
Venom phenotype conservation suggests integrated specialization in a lizard-eating snake
Venom Gene Sequence Diversity and Expression Jointly Shape Diet Adaptation in Pitvipers
De Novo Genome Assembly Highlights the Role of Lineage-Specific Gene Duplications in the Evolution of Venom in Fea's Viper (<i>Azemiops feae</i>)
Evolutionary allometry and ecological correlates of fang length evolution in vipers
Phylogenetically diverse diets favor more complex venoms in North American pitvipers
The Tiger Rattlesnake genome reveals a complex genotype underlying a simple venom phenotype
ToxCodAn: a new toxin annotator and guide to venom gland transcriptomics
An integrative view of the toxic potential of Conophis lineatus (Dipsadidae: Xenodontinae), a medically relevant rear-fanged snake
Intraspecific sequence and gene expression variation contribute little to venom diversity in sidewinder rattlesnakes (<i>Crotalus cerastes</i>)
Comparative venom-gland transcriptomics and venom proteomics of four Sidewinder Rattlesnake (Crotalus cerastes) lineages reveal little differential expression despite individual variation
Natural History Notes
Herpetological review 2016cited by 2position: middle