Artículos de revistas
New Evidence On The Systematic And Phylogenetic Position Of Parides Burchellanus (lepidoptera: Papilionidae)
Registro en:
Molecular Ecology Resources. , v. 8, n. 3, p. 502 - 511, 2008.
1755098X
10.1111/j.1471-8286.2007.02022.x
2-s2.0-43949114490
Autor
Silva-Brandao K.L.
Azeredo-Espin A.M.L.
Freitas A.V.L.
Institución
Resumen
Parides burchellanus is considered a rare and threatened swallowtail species restricted to central Brazil. It shows considerable morphological similarity to Parides panthonus jaguarae, with which it shares both geographical range and larval host plant. At present, P. burchellanus and P. panthonus are believed to be distinct species, based on minor differences in male genitalia. In this study, the phylogenetic and systematic position of P. burchellanus in relation to three subspecies of P. panthonus (P. p. jaguarae, P. p. lysimachus and P. p. aglaope) was evaluated using molecular evidence: the complete sequence of the mtDNA genes COI and COII and of the nuclear gene EF-1α (c. 3300 bp). In addition, the informativeness of the 'barcode' region next to the 5′ end of COI (c. 650 bp) was evaluated for delimiting these taxa. Individual analysis by neighbour-joining, using Kimura 2-parameter distance model, and by maximum parsimony showed that P. p. jaguarae + P. p. lysimachus + P. p. aglaope + P. burchellanus form a strongly supported monophyletic clade, and all molecular regions consistently recovered P. p. jaguarae and P. burchellanus as sister species. The genetic divergence among the subspecies of P. panthonus and P. burchellanus is equivalent to the divergence among conspecifics of other species of Parides, and smaller than the interspecific divergence among different sister species of this genus. The results support the proposal that P. p. jaguarae and P. burchellanus are likely to be synonymous, and suggest that P. burchellanus can be considered conspecific with P. panthonus. The taxonomic classification of P. burchellanus should be revised on the basis of the molecular data. © 2007 The Authors. 8 3 502 511 Braby, M.F., Trueman, J.W.H., Eastwood, R., When and where did troidine butterflies (Lepidoptera: Papilionidae) evolve? Phylogenetic and biogeographic evidence suggests an origin in remnant Gondwana in the Late Cretaceous (2005) Invertebrate Systematics, 19, pp. 113-143 Brower, A.V.Z., Problems with DNA barcodes for species delimitation: 'Ten species' of Astraptes fulgerator reassessed (Lepidoptera: Hesperiidae) (2006) Systematics and Biodiversity, 4, pp. 127-132 Brower, A.V.Z., Freitas, A.V.L., Lee, M.M., Silva-Brandão, K.L., Whinnett, A., Willmott, K.R., Phylogenetic relationships among the Ithomiini (Lepidoptera: Nymphalidae) inferred from one mitochondrial and two nuclear gene regions (2006) Systematic Entomology, 31, pp. 288-301 Brown, K.S., Mielke, O.H.H., Parides panthonus jaguarae (Foetterle, 1902), Parides burchellanus (Westwood, 1872) (1998) Livro Vermelho Das Espécies Ameaçadas de Extinção Da Fauna de Minas Gerais, pp. 512-517. , In: (ed. Lins, L.V.), pp. Fundação Biodiversitas, Belo Horizonte, Brazil Casagrande, M.M., Mielke, O.H.H., Brown, K.S., Borboletas (Lepidoptera) ameaçadas de extinção em Minas Gerais, Brasil (1998) Revista Brasileira de Zoologia, 15, pp. 241-259 Dayrat, B., Towards integrative taxonomy (2005) Biological Journal of the Linnean Society, 85, pp. 407-415 Excoffier, L., Laval, G., Schneider, S., Arlequin ver. 3.0: An integrated software package for population genetics data analysis (2005) Evolutionary Bioinformatics Online, 1, pp. 47-50 Excoffier, L., Smouse, P.E., Quattro, J.M., Analysis of molecular variance inferred from metric distances among DNA haplotypes: Application to human mitochondrial DNA restriction data (1992) Genetics, 131, pp. 479-491 Felsenstein, J., Confidence-limits on phylogenies - An approach using the bootstrap (1985) Evolution, 39, pp. 783-791 Foetterle, J.G., Descripção de lepidópteros novos do Brazil (1902) Revista Do Museu Paulista, 5, pp. 618-652. , pls 615-618 Fordyce, J.A., Nice, C.C., Contemporary patterns in a historical context: Phylogeographic history of the pipevine swallowtail, Battus philenor (Papilionidae) (2003) Evolution, 57, pp. 1089-1099 Freeland, J.R., (2006) Molecular Ecology, p. 388. , p. John Wiley & Sons, West Sussex, UK Hajibabaei, M., Janzen, D.H., Burns, J.M., Hallwachs, W., Hebert, P.D.N., DNA barcodes distinguish species of tropical Lepidoptera (2006) Proceedings of the National Academy of Sciences, USA, 103, pp. 968-971 Hall, T.A., (1999) BioEdit: A User-friendly Biological Sequence Alignment Editor and Analysis Program for Windows 95/98/NT, pp. 95-98. , Nucleic Acids Symposium Series. 41 Hebert, P.D.N., Cywinska, A., Ball, S.L., Dewaard, J.R., Biological identifications through DNA barcodes. (2003) Proceedings of the Royal Society of London. Series B, Biological Sciences, 270, pp. 313-321 Hebert, P.D.N., Penton, E.H., Burns, J.M., Janzen, D.H., Hallwachs, W., Ten species in one: DNA barcoding reveals cryptic species in the Neotropical skipper butterfly Astraptes fulgerator (2004) Proceedings of the National Academy of Sciences, USA, 101, pp. 14812-14817 Hebert, P.D.N., Ratnasingham, S., Dewaard, J.R., Barcoding animal life: Cytochrome c oxidase subunit 1 divergences among closely related species. (2003) Proceedings of the Royal Society of London. Series B, Biological Sciences, 270, pp. S96-S99 Hebert, P.D.N., Stoeckle, M.Y., Zemlak, T.S., Francis, C.M., Identification of birds through DNA barcodes (2004) PLoS Biology, 2, pp. 1657-1663 Janzen, D.H., Hajibabaei, M., Burns, J.M., Hallwachs, W., Remigio, E., Hebert, P.D.N., Wedding biodiversity inventory of a large and complex Lepidoptera fauna with DNA barcoding (2005) Philosophical Transactions of Royal Society of London. Series B, Biological Sciences., , doi: Kimura, M., A simple method for estimating evolutionary rates of base substitutions through comparative studies of nucleotide sequences (1980) Journal of Molecular Evolution, 16, pp. 111-120 Kumar, S., Tamura, K., Nei, M., (2004) MEGA3: Integrated Software for Molecular Evolutionary Genetics Analysis and Sequence Alignment, pp. 150-163. , Briefings in Bioinformatics MacHado, A.B.M., Martins, C.S., Drummond, G.M., (2005) Lista Da Fauna Brasileira Ameaçada de Extinção: Incluindo As Espécies Quase Ameaçadas e Deficientes Em Dados, p. 160. , p. Fundação Biodiversitas, Belo Horizonte, Brazil Mallet, J., A species definition for the modern synthesis (1995) Trends in Ecology & Evolution, 10, pp. 294-299 Mallet, J., Hybrid speciation (2007) Nature, 446, pp. 279-283 Mallet, J., Willmott, K., Taxonomy: Renaissance or Tower of Babel? (2003) Trends in Ecology and Evolution, 18, pp. 57-59 Mielke, O.H.H., Mielke, C.G.C., Casagrande, M.M., Parides panthonus jaguarae (Foetterle) (Lepidoptera, Papilionidae) redescoberto em Minas Gerais, Brasil: Sua identidade (2004) Revista Brasileira de Zoologia, 21, pp. 9-12 (2003) Anexo à Instrução Normativa N 3, de 27 de Maio de 2003, Do Ministério Do Meio Ambiente., , MMA. Lista das Espécies da Fauna, Brasileira Ameaçadas de Extinção Moritz, C., Cicero, C., DNA Barcoding: Promise and pitfalls (2004) PLoS Biology, 2, pp. 1529-1531 Nazari, V., Sperling, F.A.H., Mitochondrial DNA divergence and phylogeography in western Palaearctic Parnassiinae (Lepidoptera: Papilionidae): How many species are there? (2007) Insect Systematics and Evolution, 38, pp. 121-138 Racheli, T., (2006) The Genus Parides: An Unended Quest, p. 116. , p. Goecke & Evers, Keltern, Germany Roe, A.D., Sperling, F.A.H., Patterns of evolution of mitochondrial cytochrome c oxidase I and II DNA and implication for DNA barcoding (2007) Molecular Phylogenetics and Evolution, 44, pp. 325-345 Roe, A.D., Sperling, F.A.H., (2007) Population Structure and Species Boundary Delimitation of Cryptic Dioryctria Moths Using An Integrative Approach, 16, pp. 3617-3633. , Molecular Ecology Rubinoff, D., Sperling, F.A.H., Evolution of ecological traits and wing morphology in Hemileuca (Saturniidae) based on a two-gene phylogeny (2002) Molecular Phylogenetics and Evolution, 25, pp. 70-86 Saitou, N., Nei, M., The neighbor-joining method - A new method for reconstructing phylogenetic trees (1987) Molecular Biology and Evolution, 4, pp. 406-425 Silva-Brandão, K.L., Freitas, A.V.L., Brower, A.V.Z., Solferini, V.N., Phylogenetic relationships of the New World Troidini swallowtails (Lepidoptera: Papilionidae) based on COI, COII, and EF-1α genes (2005) Molecular Phylogenetics and Evolution, 36, pp. 468-483 Smith, M.A., Woodley, N.E., Janzen, D.H., Hallwachs, W., Hebert, P.D.N., DNA barcodes reveal cryptic host-specificity within the presumed polyphagous members of a genus of parasitoid flies (Diptera: Tachnidae) (2006) Proceedings of the National Academy of Sciences, USA, 103, pp. 3657-3662 Sorensen, M.D., (1999) TreeRot, , Version 2. Boston University, Boston, Masschusetts Sperling, F.A.H., Butterfly molecular systematics: From species definitions to higher-level phylogenies (2003) Ecology and Evolution Taking Flight, pp. 431-458. , In: (eds. Boggs, C.L., Watt, W.B., Erlich, P.R.), pp. University of Chicago Press, Chicago, Illinois Swofford, D.L., (2002) Paup*: Phylogenetic Analysis Using Parsimony (*And Other Methods)., , Sinauer Associates, Sunderland, Masschusetts Tyler, H., Brown, K.S., Wilson, K., (1994) Swallowtail Butterflies of the Americas: A Study in Biological Dynamics, Ecological Diversity, Biosystematics, and Conservation., , Scientific Publishers, Gainesville, Florida Will, K.W., Mishler, B.D., Wheeler, Q.D., The perils of DNA barcoding and the need for integrative taxonomy (2005) Systematic Biology, 54, pp. 844-851 Will, K.W., Rubinoff, D., Myth of the molecule: DNA barcodes for species cannot replace morphology for identification and classification (2004) Cladistics: The International Journal of the Willi Hennig Society, 20, pp. 47-55 Zakharov, E.V., Caterino, M.S., Sperling, F.A.H., Molecular phylogeny, historical biogeography, and divergence time estimates for swallowtail butterflies of the genus Papilio (Lepidoptera: Papilionidae) (2004) Systematic Biology, 53, pp. 193-215