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Genetic architecture of a feeding adaptation: garter snake (Thamnophis) resistance to tetrodotoxin bearing prey, , , и . Proceedings of the Royal Society B: Biological Sciences, 277 (1698): 3317--3325 (ноября 2010)Female newts (Taricha granulosa) produce tetrodotoxin laden eggs after long term captivity, , , , и . Toxicon, 60 (6): 1057-1062 (2012)Sex linkage of the skeletal muscle sodium channel gene (SCN4A) explains apparent deviations from Hardy--Weinberg equilibrium of tetrodotoxin-resistance alleles in garter snakes (Thamnophis sirtalis), , , , , и . Heredity, 124 (5): 647--657 (01.05.2020)Evolutionary diversification of TTX-resistant sodium channels in a predator--prey interaction, , , , и . Nature, 434 (7034): 759--763 (апреля 2005)Coevolution with toxic prey produces functional trade-offs in sodium channels of predatory snakes, , , , , , , , и . (февраля 2024)Constraint shapes convergence in tetrodotoxin-resistant sodium channels of snakes, , , и . Proceedings of the National Academy of Sciences, 109 (12): 4556--4561 (марта 2012)Tetrodotoxin levels in lab-reared Rough-Skinned Newts (Taricha granulosa) after 3 years and comparison to wild-caught juveniles, , , и . Toxicon, (2022)Historical Contingency in a Multigene Family Facilitates Adaptive Evolution of Toxin Resistance, , , , , , , , , и 2 other автор(ы). Current Biology, 26 (12): 1616-1621 (2016)Phenotypic outcomes of predator–prey coevolution are predicted by landscape variation in climate and community composition, , , , , , , и . Functional Ecology, 37 (8): 2170-2180 (2023)The geographic mosaic in parallel: Matching patterns of newt tetrodotoxin levels and snake resistance in multiple predator–prey pairs, , , , , , , , , и . Journal of Animal Ecology, 89 (7): 1645-1657 (2020)