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The geographic mosaic in parallel: Matching patterns of newt tetrodotoxin levels and snake resistance in multiple predator–prey pairs, , , , , , , , , and . Journal of Animal Ecology, 89 (7): 1645-1657 (2020)Where Does All the Poison Go? Investigating Toxicokinetics of Newt (Taricha) Tetrodotoxin (TTX) in Garter Snakes (Thamnophis), , , and . Journal of Chemical Ecology, (Jun 6, 2024)Tetrodotoxin levels in lab-reared Rough-Skinned Newts (Taricha granulosa) after 3 years and comparison to wild-caught juveniles, , , and . Toxicon, (2022)Conspicuous coloration of toxin-resistant predators implicates additional trophic interactions in a predator–prey arms race, , , , , and . Molecular Ecology, 32 (16): 4482-4496 (2023)Phenotypic outcomes of predator–prey coevolution are predicted by landscape variation in climate and community composition, , , , , , , and . Functional Ecology, 37 (8): 2170-2180 (2023)The geographic mosaic of arms race coevolution is closely matched to prey population structure, , , , and . Evolution Letters, 4 (4): 317-332 (2020)Female newts (Taricha granulosa) produce tetrodotoxin laden eggs after long term captivity, , , , and . Toxicon, 60 (6): 1057-1062 (2012)