Mayr, E. The species concept: Semantics versus semantics. Evolution 3, 371–372 (1949).
Google Scholar
Hortal, J. et al. Seven shortfalls that beset large-scale knowledge of biodiversity. Annu. Rev. Ecol. Evol. Syst. 46, 523–549 (2015).
Google Scholar
Mace, G. M. The role of taxonomy in species conservation. Philos. Trans. R. Soc. Lond. B Biol. Sci. 359, 711–719 (2004).
Google Scholar
Gustafson, K. D., Kensinger, B. J., Bolek, M. G. & Luttbeg, B. Distinct snail (Physa) morphotypes from different habitats converge in shell shape and size under common garden conditions. Evol. Ecol. Res. 16, 77–89 (2014).
Aksenova, O. V. et al. Species richness, molecular taxonomy and biogeography of the radicine pond snails (Gastropoda: Lymnaeidae) in the Old World. Sci. Rep. 8, 1–7 (2018).
Google Scholar
Liu, H. P. & Hershler, R. A new species and range extensions for three other species of pebblesnails (Lithoglyphidae, Fluminicola) from the upper Klamath basin, California-Oregon. ZooKeys 812, 47–67 (2019).
Google Scholar
Alda, P. et al. Systematics and geographical distribution of Galba species, a group of cryptic and worldwide freshwater snails. Mol. Phylogenet. Evol. 157, 107035 (2021).
Google Scholar
Taylor, D. W. Introduction to Physidae (Gastropoda: Hygrophila); biogeography, classification, morphology. Rev. Biol. Trop. 51(Supplement 1), 1–287 (2003).
Google Scholar
Wethington, A. R. & Lydeard, C. A molecular phylogeny of Physidae (Gastropoda: Basommatophora) based on mitochondrial DNA sequences. J. Molluscan Stud. 73, 241–257 (2007).
Google Scholar
Ng, T. H. et al. Molluscs for sale: assessment of freshwater gastropods and bivalves in the ornamental pet trade. PLoS ONE 11, e0161130 (2016).
Google Scholar
Saito, T., Prozorova, L., Hirano, T., Fukuda, H. & Chiba, S. Endangered freshwater limpets in Japan are actually alien invasive species. Conserv. Genet. 19, 947–958 (2018).
Google Scholar
Lydeard, C., Campbell, D. & Golz, M. Physa acuta Draparnaud, 1805 should be treated as a native of North America, not Europe. Malacologia 59, 347–350 (2016).
Google Scholar
Albrecht, C., Kroll, O., Terrazas, E. M. & Wilke, T. Invasion of ancient Lake Titicaca by the globally invasive Physa acuta (Gastropoda: Pulmonata: Hygrophila). Biol. Invasions 11, 1821–1826 (2009).
Google Scholar
Ng, T. H., Tan, S. K. & Yeo, D. C. Clarifying the identity of the long-established, globally-invasive Physa acuta Draparnaud, 1805 (Gastropoda: Physidae) in Singapore. BioInvasions Rec. 4, 189–194 (2015).
Google Scholar
Collado, G. A. Unraveling cryptic invasion of a freshwater snail in Chile based on molecular and morphological data. Biodivers. Conserv. 26, 567–578 (2017).
Google Scholar
Johnson, P. D. et al. Conservation status of freshwater gastropods of Canada and the United States. Fisheries 38, 247–282 (2013).
Google Scholar
Strong, E. E. & Whelan, N. V. Assessing the diversity of western North American Juga (Semisulcospiridae, Gastropoda). Mol. Phylogenet. Evol. 136, 87–103 (2019).
Google Scholar
Hebert, P. D., Ratnasingham, S. & De Waard, J. R. Barcoding animal life: cytochrome c oxidase subunit 1 divergences among closely related species. Proc. R. Soc. Lond. B 270(supplement 1), S96-99 (2003).
Google Scholar
Stöger, I. & Schrödl, M. Mitogenomics does not resolve deep molluscan relationships (yet?). Mol. Phylogenet. Evol. 69, 376–392 (2013).
Google Scholar
Cunha, T. J. & Giribet, G. A congruent topology for deep gastropod relationships. Proc. R. Soc. B 286, 20182776 (2019).
Google Scholar
Varney, R. M. et al. Assessment of mitochondrial genomes for heterobranch gastropod phylogenetics. BMC Ecol. Evol. 21, 6 (2021).
Google Scholar
Remigio, E. A. & Hebert, P. D. Testing the utility of partial COI sequences for phylogenetic estimates of gastropod relationships. Mol. Phylogenet. Evol. 29, 641–647 (2003).
Google Scholar
Collins, R. A. & Cruickshank, R. H. The seven deadly sins of DNA barcoding. Mol. Ecol. Resour. 13, 969–975 (2013).
Google Scholar
Ratnasingham, S. & Hebert, P. D. A DNA-based registry for all animal species: The Barcode Index Number (BIN) system. PLoS ONE 8, e66213 (2013).
Google Scholar
Whelan, N. V. & Strong, E. E. Morphology, molecules and taxonomy: Extreme incongruence in pleurocerids (Gastropoda, Cerithioidea, Pleuroceridae). Zoolog. Scr. 45, 62–87 (2016).
Google Scholar
Razkin, O., Gómez-Moliner, B. J., Vardinoyannis, K., Martínez-Ortí, A. & Madeira, M. J. Species delimitation for cryptic species complexes: Case study of Pyramidula (Gastropoda, Pulmonata). Zool. Scr. 46, 55–72 (2017).
Google Scholar
Liu, H. P., Hershler, R. & Hovingh, P. Molecular evidence enables further resolution of the western North American Pyrgulopsis kolobensis complex (Caenogastropoda: Hydrobiidae). J. Molluscan Stud. 84, 103–107 (2018).
Google Scholar
Ward, R. D. DNA barcode divergence among species and genera of birds and fishes. Mol. Ecol. Resour. 9, 1077–1085 (2009).
Google Scholar
Saadi, A. J., Davison, A. & Wade, C. M. Molecular phylogeny of freshwater snails and limpets (Panpulmonata: Hygrophila). Zool. J. Linn. Soc. 190, 518–531 (2020).
Google Scholar
Frest, T. J. & Johannes, E. J. An annotated checklist of Idaho land and freshwater mollusks. J. Idaho Acad. Sci. 36(2), 1–51 (2000).
Pip, E. & Franck, J. P. Molecular phylogenetics of central Canadian Physidae (Pulmonata: Basommatophora). Can. J. Zool. 86, 10–16 (2008).
Google Scholar
Tariel, J., Plénet, S. & Luquet, É. Transgenerational plasticity of inducible defences: Combined effects of grand-parental, parental and current environments. Ecol. Evol. 10, 2367–2376 (2020).
Google Scholar
Perrin, N. The life history parameters of Physa acuta (Gastropoda, Mollusca) in experimental conditions. Revue Suisse Zoologique 93, 725–736 (1986).
Google Scholar
Taylor, D. W. New species of Physa (Gastropoda: Hygrophila) from the western United States. Malacol. Rev. 21, 43–79 (1988).
U.S. Fish and Wildlife Service. Determination of endangered or threatened status for five aquatic snails in south central Idaho. Fed. Reg. 57, 59242–59257 (1992).
Rogers, D. C. & Wethington, A. R. Physa natricina Taylor 1988, junior synonym of Physa acuta Draparnaud, 1805 (Pulmonata: Physidae). Zootaxa 1662, 45–51 (2007).
Gates, K. K., Kerans, B. L., Keebaugh, J. L., Kalinowski, S. & Vu, N. Taxonomic identity of the endangered Snake River physa, Physa natricina (Pulmonata: Physidae) combining traditional and molecular techniques. Conserv. Genet. 14, 159–169 (2013).
Google Scholar
Moore, A. C., Burch, J. B. & Duda, T. F. Recognition of a highly restricted freshwater snail lineage (Physidae: Physella) in southeastern Oregon: Convergent evolution, historical context, and conservation considerations. Conserv. Genet. 16, 113–123 (2015).
Google Scholar
Dillon, R. T., Robinson, J. D. & Wethington, A. R. Empirical estimates of reproductive isolation among the freshwater pulmonate snails Physa acuta, P. pomilia, and P. hendersoni. Malacologia 49, 283–292 (2007).
Google Scholar
De Queiroz, K. Species concepts and species delimitation. Syst. Biol. 56, 879–886 (2007).
Google Scholar
Dyke, A. S., Moore, A. & Robertson, L. Deglaciation of North America. Geological Survey of Canada Open File 1574 (2003).
Wethington, A. R., Wise, J. & Dillon, R. T. Jr. Genetic and morphological characterization of the Physidae of South Carolina (Gastropoda: Pulmonata: Basommatophora), with description of a new species. Nautilus 123, 282–292 (2009).
Ebbs, E. T., Loker, E. S. & Brant, S. V. Phylogeography and genetics of the globally invasive snail Physa acuta Draparnaud 1805, and its potential to serve as an intermediate host to larval digenetic trematodes. BMC Evol. Biol. 18, 1–7 (2018).
Google Scholar
Duggan, I. C. The freshwater aquarium trade as a vector for incidental invertebrate fauna. Biol. Invasions 12, 3757–3770 (2010).
Google Scholar
Van Leeuwen, C. H. et al. How did this snail get here? Several dispersal vectors inferred for an aquatic invasive species. Freshw. Biol. 58, 88–99 (2013).
Google Scholar
Coughlan, N. E., Kelly, T. C., Davenport, J. & Jansen, M. A. Up, up and away: Bird-mediated ectozoochorous dispersal between aquatic environments. Freshw. Biol. 62, 631–648 (2017).
Google Scholar
Bony, Y. K. et al. Ecological conditions for spread of the invasive snail Physa marmorata (Pulmonata: Physidae) in the Ivory Coast. Afr. Zool. 43, 53–60 (2008).
Google Scholar
Pierce, K. L. & Morgan, L. A. Is the track of the Yellowstone hotspot driven by a deep mantle plume?—Review of volcanism, faulting, and uplift in light of new data. J. Volcanol. Geotherm. Res. 188, 1–25 (2009).
Google Scholar
Smith, G. R. et al. Biogeography and timing of evolutionary events among Great Basin fishes. In Great Basin Aquatic Systems History. Smithsonian Contributions to the Earth Sciences Vol. 33 (eds Hershler, R. et al.) 175–234 (Smithsonian Institution Press, 2002).
Oviatt, C. G. Chronology of Lake Bonneville, 30,000 to 10,000 yr BP. Quatern. Sci. Rev. 110, 166–171 (2015).
Google Scholar
Safran, E. B. et al. Plugs or flood-makers? The unstable landslide dams of eastern Oregon. Geomorphology 248, 237–251 (2015).
Google Scholar
Ely, L. L. et al. Owyhee River intracanyon lava flows: Does the river give a dam?. GSA Bull. 124, 1667–1687 (2012).
Google Scholar
Matthews, J. et al. Rapid range expansion of the invasive quagga mussel in relation to zebra mussel presence in the Netherlands and western Europe. Biol. Invasions 16, 23–42 (2014).
Google Scholar
Folmer, O., Black, M., Hoeh, W., Lutz, R. & Vrijenhoek, R. DNA primers for amplification of mitochondrial cytochrome c oxidase subunit I from diverse metazoan invertebrates. Mol. Mar. Biol. Biotechol. 3, 294–299 (1994).
Google Scholar
Geller, J., Meyer, C., Parker, M. & Hawk, H. Redesign of PCR primers for mitochondrial cytochrome c oxidase subunit I for marine invertebrates and application in all-taxa biotic surveys. Mol. Ecol. Resour. 13, 851–861 (2013).
Google Scholar
Uit de Weerd, D. R. & Gittenberger, E. Phylogeny of the land snail family Clausiliidae (Gastropoda: Pulmonata). Mol. Phylogenet. Evol. 67, 201–216 (2013).
Google Scholar
Katoh, K., Rozewicki, J. & Yamada, K. D. MAFFT online service: multiple sequence alignment, interactive sequence choice and visualization. Brief. Bioinform. 20, 1160–1166 (2019).
Google Scholar
Nixon, K. C. & Wheeler, Q. D. An amplification of the phylogenetic species concept. Cladistics 6, 211–223 (1990).
Google Scholar
Galtier, N. Delineating species in the speciation continuum: A proposal. Evol. Appl. 12, 657–663 (2019).
Google Scholar
DeSalle, R., Egan, M. G. & Siddall, M. The unholy trinity: Taxonomy, species delimitation and DNA barcoding. Philos. Trans. R. Soc. B Biol. Sci. 360, 1905–1916 (2005).
Google Scholar
Bouchet, P. et al. Revised classification, nomenclator and typification of gastropod and monoplacophoran families. Malacologia 61, 1–526 (2017).
Google Scholar
Wethington, A. R. & Guralnick, R. Are populations of physids from different hot springs distinctive lineages?. Am. Malacol. Bull. 19, 135–144 (2004).
Huang, Y., Niu, B., Gao, Y., Fu, L. & Li, W. CD-HIT Suite: A web server for clustering and comparing biological sequences. Bioinformatics 26, 680–682 (2010).
Google Scholar
Nguyen, L. T., Schmidt, H. A., Von Haeseler, A. & Minh, B. Q. IQ-TREE: A fast and effective stochastic algorithm for estimating maximum-likelihood phylogenies. Mol. Biol. Evol. 32, 268–274 (2015).
Google Scholar
Puillandre, N., Brouillet, S. & Achaz, G. ASAP: Assemble species by automatic partitioning. Mol. Ecol. Resour. 21, 609–620 (2020).
Google Scholar
Puillandre, N., Lambert, A., Brouillet, S. & Achaz, G. ABGD, Automatic Barcode Gap Discovery for primary species delimitation. Mol. Ecol. 21, 1864–1877 (2012).
Google Scholar
Delicado, D., Arconada, B., Aguado, A. & Ramos, M. A. Multilocus phylogeny, species delimitation and biogeography of Iberian valvatiform springsnails (Caenogastropoda: Hydrobiidae), with the description of a new genus. Zool. J. Linn. Soc. 186, 892–914 (2019).
Google Scholar
Kapli, T. et al. Multi-rate Poisson tree processes for single-locus species delimitation under maximum likelihood and Markov chain Monte Carlo. Bioinformatics 33, 1630–1638 (2016).
Clement, M., Posada, D. C. & Crandall, K. A. TCS: A computer program to estimate gene genealogies. Mol. Ecol. 9, 1657–1659 (2000).
Google Scholar
Hart, M. W. & Sunday, J. Things fall apart: Biological species form unconnected parsimony networks. Biol. Lett. 3, 509–512 (2007).
Google Scholar
Minh, B. Q., Nguyen, M. A. & von Haeseler, A. Ultrafast approximation for phylogenetic bootstrap. Mol. Biol. Evol. 30, 1188–1195 (2013).
Google Scholar
Kumar, S., Stecher, G. & Tamura, K. MEGA7: Molecular evolutionary genetics analysis version 7.0 for bigger datasets. Mol. Biol. Evol. 33, 1870–1874 (2016).
Google Scholar
Meier, R., Zhang, G. & Ali, F. The use of mean instead of smallest interspecific distances exaggerates the size of the “barcoding gap” and leads to misidentification. Syst. Biol. 57, 809–813 (2008).
Google Scholar
Dellicour, S. & Flot, J. F. The hitchhiker’s guide to single-locus species delimitation. Mol. Ecol. Resour. 18, 1234–1246 (2018).
Google Scholar
Avise, J. C. Phylogeography: The History and Formation of Species (Harvard University Press, 2000).
Google Scholar
Dinapoli, A., Tamer, C., Franssen, S., Naduvilezhath, L. & Klussmann-Kolb, A. Utility of H3-gene sequences for phylogenetic reconstruction—a case study of heterobranch Gastropoda. Bonner Zoologische Beiträge 55(3/4), 191–202 (2006).
Ayyagari, V. S. & Sreerama, K. Molecular phylogenetic analysis of Pulmonata (Mollusca: Gastropoda) on the basis of histone-3 gene. Beni-Suef Univ. J. Basic Appl. Sci. 8, 1–8 (2019).
Google Scholar
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