Tonia S. Schwartz, Ph.D.
Affiliations: | 2012 | Ecology, Evolution, and Organismal Biology | Iowa State University, Ames, IA, United States |
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"Tonia Schwartz"Parents
Sign in to add mentorAnne M. Bronikowski | grad student | 2012 | Iowa State | |
(The evolution of stress response and complex life history traits in natural populations of garter snakes.) |
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Publications
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Beatty A, Rubin AM, Wada H, et al. (2022) Postnatal expression of is the norm in amniote vertebrates. Proceedings. Biological Sciences. 289: 20212278 |
Gangloff EJ, Manes MB, Schwartz TS, et al. (2021) Multiple paternity in garter snakes with evolutionarily divergent life-histories. The Journal of Heredity |
Hoekstra LA, Schwartz TS, Sparkman AM, et al. (2020) The untapped potential of reptile biodiversity for understanding how and why animals age. Functional Ecology. 34: 38-54 |
Beatty AE, Schwartz TS. (2020) Gene expression of the IGF hormones and IGF binding proteins across time and tissues in a model reptile. Physiological Genomics |
Ivy-Israel NMD, Moore CE, Schwartz TS, et al. (2020) Characterization of two MHC II genes (DOB, DRB) in white-tailed deer (Odocoileus virginianus). Bmc Genetics. 21: 83 |
Gangloff EJ, Schwartz TS, Klabacka R, et al. (2020) Mitochondria as central characters in a complex narrative: Linking genomics, energetics, and pace-of-life in natural populations of garter snakes. Experimental Gerontology. 110967 |
Waits DS, Simpson DY, Sparkman AM, et al. (2019) The Utility of Reptile Blood Transcriptomes in Molecular Ecology. Molecular Ecology Resources |
Telemeco RS, Simpson DY, Tylan C, et al. (2019) Contrasting responses of lizards to divergent ecological stressors across biological levels of organization. Integrative and Comparative Biology |
Passow CN, Bronikowski AM, Blackmon H, et al. (2019) Contrasting patterns of rapid molecular evolution within the p53 network across mammal and sauropsid lineages. Genome Biology and Evolution |
Hoekstra LA, Schwartz TS, Sparkman AM, et al. (2019) The untapped potential of reptile biodiversity for understanding how and why animals age Functional Ecology. 34: 38-54 |