Page 13 - Delicado_Machordom_2015
P. 13

D. Delicado et al.  Evolutionary patterns of Pseudamnicola

             populations arrived recently from Northwest Africa. Molecular  Gernhard, T. (2008). The conditioned reconstructed process. Jour-
             Phylogenetics and Evolution, 33, 523–532.         nal of Theoretical Biology, 253, 769–778.
            Collins, R. A. & Cruickshank, R. H. (2013). The seven  Ghamizi, M., Vala, J. C. & Bouka, H. (1997). Le genre Pseudamni-
             deadly sins of DNA barcoding. Molecular Ecology Resources, 13,  cola au Maroc avec description de Pseudamnicola pallaryi n. sp.
             969–975.                                          (Gastropoda: Hydrobiidae). Haliotis, 26,33–49.
            Coyne, J. A. & Orr, H. A. (2004). Speciation. Sunderland, MA:  Glaubrecht, M. (2011). Towards solving Darwin’s “mystery”: spe-
             Sinauer Associates.                               ciation and radiation in lacustrine and riverine freshwater gastro-
            Criscione, F. & Ponder, W. F. (2013). A phylogenetic analysis  pods. American Malacological Bulletin, 29, 187–216.
             of  rissooidean  and  cingulopsoidean  families  (Gastropoda:  Gl€ oer, P., Bouzid, S. & Boeters, H. D. (2010). Revision of the
             Caenogastropoda). Molecular Phylogenetics and Evolution, 66,  genera Pseudamnicola Paulucci 1878 and Mercuria Boeters 1971
             1075–1082.                                        from Algeria with particular emphasis on museum collections
            Delicado, D. & Ramos, M. A. (2012). Morphological and molecu-  (Gastropoda: Prosobranchia: Hydrobiidae). Archiv f€ ur Mollus-
             lar evidence for cryptic species of springsnails [genus Pseudamni-  kenkunde: International Journal of Malacology, 139,1–22.
             cola (Corrosella) (Mollusca, Caenogastropoda, Hydrobiidae)].  Goes, S., Giardini, D., Jenny, S., Hollenstein, C., Kahle, H.-G. &
             ZooKeys, 190,55–79.                               Geiger, A. (2004). A recent tectonic reorganization in the south-
            Delicado, D., Machordom, A. & Ramos, M. A. (2012). Underesti-  central Mediterranean. Earth and Planetary Science Letters, 226,
             mated diversity of hydrobiid snails. The case of Pseudamnicola  335–345.
             (Corrosella) (Mollusca: Caenogastropoda: Hydrobiidae). Journal of  Guindon, S. & Gascuel, O. (2003). A simple, fast, and accurate
             Natural History, 46,25–89.                        algorithm to estimate large phylogenies by maximum likelihood.
            Delicado, D., Machordom, A. & Ramos, M. A. (2013). Living on  Systematic Biology, 52, 696–704.
             the mountains: patterns and causes of diversification in the  Haase, M. (2008). The radiation of hydrobiid gastropods in New
             springsnail subgenus Pseudamnicola (Corrosella) (Mollusca: Caeno-  Zealand: a revision including the description of new species
             gastropoda: Hydrobiidae). Molecular Phylogenetics and Evolution,  based on morphology and mtDNA sequence information. Sys-
             68, 387–397.                                      tematics and Biodiversity, 6,99–159.
            Delicado, D., Machordom, A. & Ramos, M. A. (2014). Vicariant  Haase, M., Naser, M. D. & Wilke, T. (2010). Ecrobia grimmi in
             versus dispersal processes in the settlement of Pseudamnicola  brackish Lake Sawa, Iraq: indirect evidence for long-distance
             (Caenogastropoda, Hydrobiidae) in the Mediterranean Balearic  dispersal of hydrobiid gastropods (Caenogastropoda: Rissooidea)
             Islands. Zoological Journal of the Linnean Society, 171,38–71.  by birds. Journal of Molluscan Studies, 76, 101–105.
            Drummond, A. J., Ho, S. Y. W., Phillips, M. J. & Rambaut, A.  Hall, T. (1999). BioEdit: a user-friendly biological sequence align-
             (2006). Relaxed phylogenetics and dating with confidence. PLoS  ment editor and analysis program for Windows 95/98/NT.
             Biology, 4, e88.                                  Nucleic Acids Symposium Series, 41,95–98.
            Drummond, A. J., Suchard, M. A., Xie, D. & Rambaut, A. (2012).  Hasegawa, M., Kishino, H. & Yano, T. (1985). Dating of the
             Bayesian phylogenetics with BEAUti and the BEAST 1.7. Molec-  human-ape splitting by a molecular clock of mitochondrial
             ular Biology and Evolution, 29, 1969–1973.        DNA. Journal of Molecular Evolution, 22, 160–174.
            Endler, J. A. (1977). Geographic Variation, Speciation, and Clines.  Havel, J. E., Bruckerhoff, L. A., Funkhouser, M. A. & Gember-
             Princeton, NJ: Princeton University Press.        ling, A. R. (2014). Resistance to desiccation in aquatic invasive
            Falniowski, A., Szarowska, M., Sirbu, I., Hillebrand, A. & Baciu,  snails and implications for their overland dispersal. Hydrobiologia,
             M. (2008). Heleobia dobrogica (Grossu & Negrea, 1989) (Gastro-  741,89–100.
             poda: Rissooidea: Cochliopidae) and the estimated time of its  Heled, J. & Drummond, A. J. (2010). Bayesian Inference of Spe-
             isolation in a continental analogue of hydrothermal vents. Mol-  cies Trees from Multilocus Data. Molecular Biology and Evolution,
             luscan Research, 28, 165–170.                     27, 570–580.
            Farris, J. S., K€ allersj€ o, M., Kluge, A. G. & Bult, C. (1994). Testing  Hershler, R. & Liu, H.-P. (2008). Ancient vicariance and recent
             significance of incongruence. Cladistics, 10, 315–319.  dispersal of springsnails (Hydrobiidae: Pyrgulopsis) in the Death
            Felsenstein, J. (1985). Confidence limits on phylogenies: an  Valley system, California-Nevada. Geological Society of America
             approach using the bootstrap. Evolution, 39, 783–791.  Special Papers, 439,91–101.
            Fitzpatrick, B. M., Fordyce, J. A. & Gavrilets, S. (2009). Pattern,  Hershler, R., Liu, H.-P. & Thompson, F. G. (2003). Phylogenetic
             process and geographic modes of speciation. Journal of Evolution-  relationships of North American nymphophiline gastropods
             ary Biology, 22, 2342–2347.                       based on mitochondrial DNA sequences. Zoologica Scripta, 32,
            Fochetti, R., Sezzi, E., Tierno de Figueroa, J. M., Modica, M. V.  357–366.
             & Oliverio, M. (2009). Molecular systematics and biogeography  Hevia, I. M. (2004). Geolog ıa de Espa~ na: Una Historia de Seiscientos
             of the western Mediterranean stonefly genus Tyrrhenoleuctra (In-  Millones A~ nos. Madrid, Spain: Rueda S.L.
             secta, Plecoptera). Journal of Zoological Systematics and Evolution-  Huelsenbeck, J. P. (2000). MrBayes: Bayesian Inference of Phylogeny.
             ary Research, 47, 328–336.                        Rochester, NY: University of Rochester, Department of Biology.
            Folmer, O., Black, M., Hoeh, W., Lutz, R. & Vrijenhoek, R.  Huelsenbeck, J. P. & Ronquist, F. (2001). MRBAYES: Bayesian
             (1994). DNA primers for amplification of mitochondrial cyto-  inference of phylogenetic trees. Bioinformatics (Oxford, England),
             chrome c oxidase subunit I from diverse metazoan invertebrates.  17, 754–755.
             Molecular Marine Biology and Biotechnology, 3, 294–299.  Hughes, J. M. (2007). Constraints on recovery: using molecular
            Gavrilets, S. & Losos, J. B. (2009). Adaptive radiation: contrasting  methods to study connectivity of aquatic biota in rivers and
             theory with data. Science, 323, 732–737.          streams. Freshwater Biology, 52, 616–631.



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