Todd A. Castoe, PhD

Affiliations: 
Biology University of Texas at Arlington, Arlington, TX, United States 
Area:
Herpetology
Website:
http://www.snakegenomics.org/SnakeGenomics/Home.html
Google:
"Todd A Castoe"

Parents

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Paul T. Chippindale grad student 2001-2002 University of Texas at Arlington
Christopher L. Parkinson grad student 2002-2007 University of Central Florida
 (Modeling and partitioning the nucleotide evolutionary process for phylogenetic and comparative genomic inference.)
David D. Pollock post-doc 2007-2012 University of Texas at Arlington
BETA: Related publications

Publications

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Nachman MW, Beckman EJ, Bowie RC, et al. (2023) Specimen collection is essential for modern science. Plos Biology. 21: e3002318
Farleigh K, Ascanio A, Farleigh ME, et al. (2023) Signals of differential introgression in the genome of natural hybrids of Caribbean anoles. Molecular Ecology. 32: 6000-6017
Smith CF, Nikolakis ZL, Perry BW, et al. (2023) The best of both worlds? Rattlesnake hybrid zones generate complex combinations of divergent venom phenotypes that retain high toxicity. Biochimie
Nikolakis ZL, Adams RH, Wade KJ, et al. (2022) Prospects for genomic surveillance for selection in schistosome parasites. Frontiers in Epidemiology. 2: 932021
Nikolakis ZL, Schield DR, Westfall AK, et al. (2022) Evidence that genomic incompatibilities and other multilocus processes impact hybrid fitness in a rattlesnake hybrid zone. Evolution; International Journal of Organic Evolution
Lund AJ, Wade KJ, Nikolakis ZL, et al. (2022) Integrating genomic and epidemiologic data to accelerate progress toward schistosomiasis elimination. Elife. 11
Schield DR, Perry BW, Card DC, et al. (2022) The rattlesnake W chromosome: A GC-rich retroelement refugium with retained gene function across ancient evolutionary strata. Genome Biology and Evolution
Schield DR, Perry BW, Adams RH, et al. (2022) The roles of balancing selection and recombination in the evolution of rattlesnake venom. Nature Ecology & Evolution
Gopalan SS, Perry BW, Schield DR, et al. (2022) Origins, genomic structure and copy number variation of snake venom myotoxins. Toxicon : Official Journal of the International Society On Toxinology. 216: 92-106
Perry BW, Gopalan SS, Pasquesi GIM, et al. (2022) Snake venom gene expression is coordinated by novel regulatory architecture and the integration of multiple co-opted vertebrate pathways. Genome Research
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