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Research Article

When looks can be deceiving: a new cryptic land planarian species of Choeradoplana Graff, 1896 (Platyhelminthes: Geoplanidae) from Argentina

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References

  • Álvarez-Presas, M., Amaral, S. V., Carbayo, F., Leal-Zanchet, A. M., & Riutort, M. (2015). Focus on the details: Morphological evidence supports new cryptic land flatworm (Platyhelminthes) species revealed with molecules. Organisms Diversity & Evolution, 15, 379–403. https://doi.org/10.1007/s13127-014-0197-z
  • Alvarez-Presas, M., Carbayo, F., Rozas, J., & Riutort, M. (2011). Land planarians (Platyhelminthes) as a model organism for fine-scale phylogeographic studies: Understanding patterns of biodiversity in the Brazilian Atlantic Forest hotspot. Journal of Evolutionary Biology, 24, 887–896. https://doi.org/10.1111/j.1420-9101.2010.02220.x
  • Amaral, S. V., Ribeiro, G. G., Valiati, V. H., & Leal-Zanchet, A. M. (2018). Body doubles: An integrative taxonomic approach reveals new sibling species of land planarians. Invertebrate Systematics, 32, 533–550. https://doi.org/10.1071/IS17046
  • Araujo, A. P. G., Carbayo, F., Riutort, M., & Álvarez-Presas, M. (2020). Five new pseudocryptic land planarian species of Cratera (Platyhelminthes: Tricladida) unveiled through integrative taxonomy. PeerJ. 8, e9726. https://doi.org/10.7717/peerj.9726
  • Carbayo, F., & Froehlich, E. M. (2012). Three new Brazilian species of the land planarian Choeradoplana (Platyhelminthes: Tricladida: Geoplaninae), and an emendation of the genus. Journal of Natural History, 46, 1153–1177. https://doi.org/10.1080/00222933.2012.657699
  • Carbayo, F., & Leal-Zanchet, E. M. (2003). Two new genera of geoplaninid land planarians (Platyhelminthes: Tricladida: Terricola) of Brazil in the light of cephalic specialisations. Invertebrate Systematics, 17, 449–468. https://doi.org/10.1071/IT01035
  • Carbayo, F., Silva, M. S., Riutort, M., & Álvarez-Presas, M. (2018). Rolling into the deep of the land planarian genus Choeradoplana (Tricladida, Continenticola, Geoplanidae) taxonomy. Organisms Diversity & Evolution, 18, 187–210. https://doi.org/10.1007/s13127-017-0352-4
  • Carbayo, F., Álvarez-Presas, M., Jones, H. D., & Riutort, M. (2016). The true identity of Obama (Platyhelminthes: Geoplanidae) flatworm spreading across Europe. Zoological Journal of the Linnean Society, 177, 5–28. https://doi.org/10.1111/zoj.12358
  • Carbayo, F., Álvarez-Presas, M., Olivares, C. T., Marques, F. P. L., Froehlich, E. M., & Riutort, M. (2013). Molecular phylogeny of Geoplaninae (Platyhelminthes) challenges current classification: Proposal of taxonomic actions. Zoologica Scripta, 42, 508–528. https://doi.org/10.1111/zsc.12019
  • Chernomor, O., Von Haeseler, A., & Minh, B. Q. (2016). Terrace aware data structure for phylogenomic inference from supermatrices. Systematic Biology, 65, 997–1008. https://doi.org/10.1093/sysbio/syw037
  • du Bois-Reymond Marcus, E. (1951). On South American Geoplanids. Boletins Da Faculdade de Philosophia, Sciencias e Letras, Universidade de São Paulo. Zoologia, 16, 217–255. https://doi.org/10.11606/issn.2526-4877.bsffclzoologia.1951.125222
  • Felsenstein, J. (1981). Evolutionary trees from DNA sequences: A maximum likelihood approach. Journal of Molecular Evolution, 17, 368–376. https://doi.org/10.1007/BF01734359
  • Froehlich, C. G. (1954). Sôbre morfologia e taxonomia das Geoplanidae. Boletim Da Faculdade de Filosofia, Ciências e Letras, Universidade de São Paulo. Zoologia, 19, 195–279. https://doi.org/10.11606/issn.2526-3382.bffclzoologia.1954.120092
  • Graff, L. v. (1894). Landplanarien. Viaggio del dott. Alfredo Borelli nella Republica Argentina e Paraguay, V. Bolletino dei Musei di Zoologia e di Anatomia Comparata della Università di Torino. 9, 1–4.
  • Graff, L. v. (1896). Über das System und die geographische Verbreitung der Landplanarien. Verhandlungen der Deutschen Zoologischen Gesellschaft, 6, 61–75.
  • Graff, L. v. (1897). Neue Landplanarien. Viaggio del Dott. A. Borelli nel Chaco Boliviano e nella Republica Argentina, IX. Bolletino dei Musei di Zoologia e di Anatomia Comparata della Università di Torino. 12, 1–3.
  • Graff, L. v. (1899). Monographie der Turbellarien: II. Tricladida Terricola (Landplanarien). Verlag von Wilhelm Engelmann.
  • Guindon, S., Dufayard, J. F., Lefort, V., Anisimova, M., Hordijk, W., & Gascuel, O. (2010). New algorithms and methods to estimate maximum-likelihood phylogenies: Assessing the performance of PhyML 3.0. Systematic Biology, 59, 307–321. https://doi.org/10.1093/sysbio/syq010
  • Hoang, D. T., Chernomor, O., Von Haeseler, A., Minh, B. Q., & Vinh, L. S. (2017). UFBoot2: Improving the ultrafast bootstrap approximation. Molecular Biology and Evolution, 35, 518–522. https://doi.org/10.1093/molbev/msx281
  • Iturralde, G. G., & Leal-Zanchet, A. (2019). Why be original? Two new species of Choeradoplana resembling the type species of the genus in their external aspects (Platyhelminthes, Continenticola). ZooKeys, 813, 1–19. https://doi.org/10.3897/zookeys.813.29565
  • Kalyaanamoorthy, S., Minh, B. Q., Wong, T. K., Von Haeseler, A., & Jermiin, L. S. (2017). ModelFinder: Fast model selection for accurate phylogenetic estimates. Nature Methods, 14, 587–589. https://doi.org/10.1038/nmeth.4285
  • Kapli, P., Lutteropp, S., Zhang, J., Kobert, K., Pavlidis, P., Stamatakis, A., & Flouri, T. (2017). Multi-rate Poisson tree processes for single-locus species delimitation under maximum likelihood and Markov chain Monte Carlo. Bioinformatics, 33, 1630–1638. https://doi.org/10.1093/bioinformatics/btx025
  • Katoh, K., Rozewicki, J., & Yamada, K. D. (2019). MAFFT online service: Multiple sequence alignment, interactive sequence choice and visualization. Briefings in Bioinformatics, 20, 1160–1166. https://doi.org/10.1093/bib/bbx108
  • Kumar, S., Stecher, G., Li, M., Knyaz, C., & Tamura, K. (2018). MEGA X: Molecular evolutionary genetics analysis across computing platforms. Molecular Biology and Evolution, 35, 1547–1549. https://doi.org/10.1093/molbev/msy096
  • Kuraku, S., Zmasek, C. M., Nishimura, O., & Katoh, K. (2013). aLeaves facilitates on-demand exploration of metazoan gene family trees on MAFFT sequence alignment server with enhanced interactivity. Nucleic Acids Research, 41, W22–28. https://doi.org/10.1093/nar/gkt389
  • Lago-Barcia, D., Silva, M. S., & Carbayo, F. (2021). Revision and description of six species of Choeradoplana (Platyhelminthes, Tricladida), with an emendation to the genus. ZooKeys, 1016, 1–48. https://doi.org/10.3897/zookeys.1016.59617
  • Lanfear, R., Frandsen, P. B., Wright, A. M., Senfeld, T., & Calcott, B. (2017). PartitionFinder 2: New methods for selecting partitioned models of evolution for molecular and morphological phylogenetic analyses. Molecular Biology and Evolution, 34, 772–773. https://doi.org/10.1093/molbev/msw260
  • Lanfear, R., Calcott, B., Ho, S. Y., & Guindon, S. (2012). PartitionFinder: Combined selection of partitioning schemes and substitution models for phylogenetic analyses. Molecular Biology and Evolution, 29, 1695–1701. https://doi.org/10.1093/molbev/mss020
  • Lázaro, E. M., Sluys, R., Pala, M., Stocchino, G. A., Baguñà, J., & Riutort, M. (2009). Molecular barcoding and phylogeography of sexual and asexual freshwater planarians of the genus Dugesia in the Western Mediterranean (Platyhelminthes, Tricladida, Dugesiidae). Molecular Phylogenetics and Evolution, 52, 835–845. https://doi.org/10.1016/j.ympev.2009.04.022
  • Leal-Zanchet, A. M., & de Souza, S. A. (2003). Redescrição de Choeradoplana iheringi Graff (Platyhelminthes, Tricladida, Terricola). Revista Brasileira de Zoologia, 20, 523–530. https://doi.org/10.1590/S0101-81752003000300026
  • Lemos, V. S., Cauduro, G. P., Valiati, V. H., & Leal-Zanchet, A. M. (2014). Phylogenetic relationships within the flatworm genus Choeradoplana Graff (Platyhelminthes: Tricladida) inferred from molecular data with the description of two new sympatric species from Araucaria moist forests. Invertebrate Systematics, 28, 605–627. https://doi.org/10.1071/IS14003
  • Negrete, L., & Brusa, F. (2012). Choeradoplana crassiphalla sp. nov. (Platyhelminthes: Tricladida: Geoplanidae): A new species of land planarian from the Atlantic Forest of Argentina. Studies on Neotropical Fauna and Environment, 47, 227–237. https://doi.org/10.1080/01650521.2012.735071
  • Negrete, L., Díaz Gira, R., & Brusa, F. (2019). Two new species of land planarians (Platyhelminthes, Tricladida, Geoplanidae) from protected areas in the southern extreme of the Paranaense Rainforest, Argentina. Zoologischer Anzeiger, 279, 38–51. https://doi.org/10.1016/j.jcz.2019.01.002
  • Negrete, L., Amaral, S. V., Ribeiro, G. G., Gonçalves, J. W., Valiati, V. H., Damborenea, C., Brusa, F., & Leal-Zanchet, A. M. (2020). Far away, so close! Integrative taxonomy reveals a new genus and species of land flatworm (Platyhelminthes: Geoplanidae) from southern South America. Zoological Journal of the Linnean Society, 189, 722–744. https://doi.org/10.1093/zoolinnean/zlz131
  • Nguyen, L. T., Schmidt, H. A., Von Haeseler, A., & Minh, B. Q. (2014). IQ-TREE: A fast and effective stochastic algorithm for estimating maximum-likelihood phylogenies. Molecular Biology and Evolution, 32, 268–274. https://doi.org/10.1093/molbev/msu300
  • Posada, D. (2003). Using MODELTEST and PAUP* to select a model of nucleotide substitution. Current Protocols in Bioinformatics, Chapter 6, Unit 6.5. https://doi.org/10.1002/0471250953.bi0605s00
  • Puillandre, N., Brouillet, S., & Achaz, G. (2021). ASAP: Assemble species by automatic partitioning. Molecular Ecology Resources, 21, 609–620. https://doi.org/10.1111/1755-0998.13281
  • Ronquist, F., Teslenko, M., van der Mark, P., Ayres, D. L., Darling, A., Höhna, S., Larget, B., Liu, L., Suchard, M. A., & Huelsenbeck, J. P. (2012). MrBayes 3.2: Efficient Bayesian phylogenetic inference and model selection across a large model space. Systematic Biology, 61, 539–542. https://doi.org/10.1093/sysbio/sys029
  • Schmidt, H. A., Strimmer, K., Vingron, M., & Von Haeseler, A. (2002). TREE-PUZZLE: Maximum likelihood phylogenetic analysis using quartets and parallel computing. Bioinformatics, 18, 502–504. https://doi.org/10.1093/bioinformatics/18.3.502
  • Swofford, D. L. (2003). PAUP^* Phylogenetic Analysis Using Parsimony (^* and Other Methods). Version 4. http://paup. csit. fsu. edu/.
  • Tajima, F., & Nei, M. (1984). Estimation of evolutionary distance between nucleotide sequences. Molecular Biology and Evolution, 1, 269–285. https://doi.org/10.1093/oxfordjournals.molbev.a040317
  • Tavaré, S. (1986). Some probabilistic and statistical problems in the analysis of DNA sequences. In R. M. Miura (Ed.), Some mathematical questions in biology – DNA sequence analysis. Volume 17. Lectures on Mathematics in Life Sciences (pp. 57–86). American Mathematical Society.
  • Trifinopoulos, J., Nguyen, L. T., von Haeseler, A., & Minh, B. Q. (2016). W-IQ-TREE: A fast online phylogenetic tool for maximum likelihood analysis. Nucleic Acids Research, 44, W232–W235. https://doi.org/10.1093/nar/gkw256

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