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Showing publications 276 to 300 on page 12 of 15. « Previous | First | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | 13 | 14 | 15 Last | Next »
Sub-publications- Schnabel, K.E., Ahyong, S.T., & Maas, E.L. 2011. Galatheoidea are not monophyletic – molecular and morphological phylogeny of the squat lobsters (Decapoda: Anomura) with recognition of a new superfamily. Molecular Phylogenetics and Evolution 58: 157-168
- Schubart, C.D., Cuesta, J.A., Diesel, R. & Felder, D.L. 2000. Molecular phylogeny, taxonomy, and evolution of nonmarine lineages within the American grapsoid crabs (Crustacea: Brachyura). Molecular Phylogenetics and Evolution 15(2): 179-190
- Schultz, M.B., Smith, S.A., Horwitz, P., Richardson, A.M.M., Crandall, K.A. & Austin, C.M. 2009. Evolution underground: a molecular phylogenetic investigation of Australian burrowing freshwater crayfish (Decapoda: Parastacidae) with particular focus on Engaeus Erichson. Molecular Phylogenetics and Evolution 50: 580–598
- Schweizer, M., Wright, T.F., Peñalba, J.V., Schirtzinger, E. & Joseph, L. 2015. Molecular phylogenetics suggests a New Guinean origin and frequent episodes of founder-event speciation in the nectarivorous lories and lorikeets (Aves: Psittaciformes). Molecular Phylogenetics and Evolution 90: 34-48
- Schwentner, M., Clavier, S., Fritsch, M., Olesen, J., Padhye, S., Timms, B.V. & Richter, S. 2013. Cyclestheria hislopi (Crustacea: Branchiopoda): A group of morphologically cryptic species with origins in the Cretaceous. Molecular Phylogenetics and Evolution 66: 800–810
- Schwentner M., Timms, B.V., Bastrop, R. & Richter, S. 2009. Phylogeny of Spinicaudata (Branchiopoda, Crustacea) based on three molecular markers--an Australian origin for Limnadopsis. Molecular Phylogenetics and Evolution 53: 716-725
- Sharma, P.P., Zardus, J.D., Boyle, E.E., González, V.L., Jennings, R.M., McIntyre, E., Wheeler, Ward C., Etter, R.J. & Giribet, G. 2013. Into the deep: A phylogenetic approach to the bivalve subclass Protobranchia. Molecular Phylogenetics and Evolution 69(1): 188-204
- Shelley, J.J., Swearer, S.E., Adams, M., Dempster, T., Le Feuvre, M.C., Hammer, M.P. & Unmack, P.J. 2018. Cryptic biodiversity in the freshwater fishes of the Kimberley endemism hotspot, northwestern Australia. Molecular Phylogenetics and Evolution 127: 843-858
- Shipham, A., Schmidt, D.J., Joseph, L. & Hughes, J.M. 2015. Phylogenetic analysis of the Australian rosella parrots (Platycercus) reveals discordance among molecules and plumage. Molecular Phylogenetics and Evolution 91: 150-159
- Shoo, L.P., Rose, R., Doughty, P., Austin, J.J. & Melville, J. 2008. Diversification patterns of pebble-mimic dragons are consistent with historical disruption of important habitat corridors in arid Australia. Molecular Phylogenetics and Evolution 48: 528-542
- Shull, H.C., Pérez-Losada, M., Blair, D., Sewell, K., Sinclair, E.A., Lawler, S., Ponniah, M. & Crandall, K.A. 2005. Phylogeny and biogeography of the freshwater crayfish Euastacus (Decapoda: Parastacidae) based on nuclear and mitochondrial DNA. Molecular Phylogenetics and Evolution 37: 249-263
- Skinner, A., Donnellan, S.C., Hutchinson, M.N. & Hutchinson, R.G. 2005. A phylogenetic analysis of Pseudonaja (Hydrophiinae, Elapidae, Serpentes) based on mitochondrial DNA sequences. Molecular Phylogenetics and Evolution 37: 558-571
- Skinner, A., Hutchinson, M.N. & Lee, M.S.Y. 2013. Phylogeny and divergence times of Australian Sphenomorphus group skinks (Scincidae, Squamata). Molecular Phylogenetics and Evolution 69(3): 906-918
- Šlechtová, V., Bohlen, J. & Tan, H.H. 2007. Families of Cobitoidea (Teleostei; Cypriniformes) as revealed from nuclear genetic data and the position of the mysterious genera Barbucca, Psilorhynchus, Serpenticobitis and Vaillantella. Molecular Phylogenetics and Evolution 44: 1358–1365
- Smith, L.L., Fessler, J.L., Alfaro, M.E., Streelman, J.T. & Westneat, M.W. 2008. Phylogenetic relationships and the evolution of regulatory gene sequences in the parrotfishes. Molecular Phylogenetics and Evolution 49: 136-152
- Smith, W.L. & Busby, M.S. 2014. Phylogeny and taxonomy of sculpins, sandfishes, and snailfishes (Perciformes: Cottoidei) with comments on the phylogenetic significance of their early-life-history specializations. Molecular Phylogenetics and Evolution 79: 332-352
- Sota, T., Takami, Y., Ikeda, H., Liang, H., Karagyan, G., Scholtz, C., & Hori, M. 2022. Global dispersal and diversification in ground beetles of the subfamily Carabinae. Molecular Phylogenetics and Evolution 167: 1-12
- Sota, T., Takami, Y., Monteith, G.B. & Moore, B.P. 2005. Phylogeny and character evolution of endemic Australian carabid beetles of the genus Pamborus based on mitochondrial and nuclear gene sequences. Molecular Phylogenetics and Evolution 36: 391-404
- Souza, D.de S., Marinoni, L., Monné., M.L. & Gómez-Zurita, J. 2020. Molecular phylogenetic assessment of the tribal classification of Lamiinae (Coleoptera: Cerambycidae). Molecular Phylogenetics and Evolution 145: 1-16
- Sparks, J.S. & Smith, W.L. 2004. Phylogeny and biogeography of the Malagasy and Australasian rainbowfishes (Teleostei: Melanotaenioidei): Gondwanan vicariance and evolution in freshwater. Molecular Phylogenetics and Evolution 33: 719–734
- Stenderup, J.T., Olesen, J. & Glenner, H. 2006. Molecular phylogeny of the Branchiopoda (Crustacea) - Multiple approaches suggest a 'diplostracan' ancestry of the Notostraca. Molecular Phylogenetics and Evolution 41: 182-194
- Straube, N, Iglésias, S.P., Sellos, D.Y., Kriwet, J. & Schliewen, U.K. 2010. Molecular phylogeny and node time estimation of bioluminescent Lantern Sharks (Elasmobranchii: Etmopteridae). Molecular Phylogenetics and Evolution 56(3): 905-917
- Strong, E.E., Puillandre, N., Beu, A.G., Castelin, M. & Bouchet, P. 2019. Frogs and tuns and tritons – A molecular phylogeny and revised family classification of the predatory gastropod superfamily Tonnoidea (Caenogastropoda). Molecular Phylogenetics and Evolution 130: 18–34
- Sullivan, J.P., Lundberg, J.G. & Hardman, M. 2006. A phylogenetic analysis of the major groups of catfishes (Teleostei: Siluriformes) using rag1 and rag2 nuclear gene sequences. Molecular Phylogenetics and Evolution 41(3): 636–662
- Summers, M.M., Messing C.G. & Rouse G.W. 2014. Phylogeny of Comatulidae (Echinodermata: Crinoidea: Comatulida). Molecular Phylogenetics and Evolution 80: 319-339
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