Artículo

Este artículo es de Acceso Abierto y puede ser descargado en su versión final desde nuestro repositorio
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

Recent studies have shown the value of complementing standard taxonomy with genetic analyses to reveal cryptic diversity and to aid in the understanding of patterns of evolution. We surveyed variation in the COI mitochondrial gene in members of the three genera of centropagid copepods from the inland waters in Argentina. In general, we found a close association between molecular and morphological systematics in this group. Similar to findings for marine calanoids, genetic distances within Boeckella species were modest (< 4%), while distances among morphospecies were much larger (> 11%). Parabroteas is currently monotypic, although we detected cryptic genetic diversity, with two lineages showing 5.5% divergence. In contrast, Karukinka was not a valid genus, apparently representing an interesting and atavistic offshoot of B. poppei, a result reinforcing the value of considering both morphological and molecular evidence. Moreover, we used combined genetic and morphological information, analysed with maximum likelihood methods, to evaluate the common assumption that evolution tends to proceed via the loss of structures in crustaceans. Although analysis of other taxa and character types is required to evaluate fully the reduction hypothesis, our results suggest that structures may be gained readily as well as lost. © 2007 The Linnean Society of London.

Registro:

Documento: Artículo
Título:Molecular systematics and patterns of morphological evolution in the Centropagidae (Copepoda: Calanoida) of Argentina
Autor:Adamowicz, S.J.; Menu-Marque, S.; Hebert, P.D.N.; Purvis, A.
Filiación:Division of Biology, Imperial College London, Silwood Park Campus, Ascot, SL5 7PY, United Kingdom
Departamento de Biodiversidad Y Biología Experimental, Facultad de Ciencias Exactas Y Naturales, Pabellón II, C1428 EHA, Buenos Aires, Argentina
Biodiversity Institute of Ontario, Department of Integrative Biology, University of Guelph, Guelph, Ont. N1G 2W1, Canada
Department of Biology, University of Waterloo, 200 University Avenue West, Waterloo, Ont. N2L 3G1, Canada
Palabras clave:Atavism; Bayesian analysis; Character evolution; Crustacea; Limb evolution; Mitochondrial DNA; Oligomerization; Phylogeny; South America; Zooplankton; crustacean; genetic analysis; genetic variation; mitochondrial DNA; molecular analysis; morphology; phylogeny; taxonomy; Argentina; South America; Boeckella; Boeckella poppei; Calanoida; Centropagidae; Copepoda; Crustacea; Parabroteas
Año:2007
Volumen:90
Número:2
Página de inicio:279
Página de fin:292
DOI: http://dx.doi.org/10.1111/j.1095-8312.2007.00723.x
Título revista:Biological Journal of the Linnean Society
Título revista abreviado:Biol. J. Linn. Soc.
ISSN:00244066
CODEN:BJLSB
PDF:https://bibliotecadigital.exactas.uba.ar/download/paper/paper_00244066_v90_n2_p279_Adamowicz.pdf
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00244066_v90_n2_p279_Adamowicz

Referencias:

  • Adamowicz, S.J., Gregory, T.R., Marinone, M.C., Hebert, P.D.N., New insights into the distribution of polyploid Daphnia: The Holarctic revisited and Argentina explored (2002) Molecular Ecology, 11, pp. 1209-1217
  • Adamowicz, S.J., Hebert, P.D.N., Marinone, M.C., Species diversity and endemism in the Daphnia of Argentina: A genetic investigation (2004) Zoological Journal of the Linnean Society, 140, pp. 171-205
  • Adamowicz, S.J., Purvis, A., How many branchiopod crustacean species are there? Quantifying the components of underestimation (2005) Global Ecology and Biogeography, 14, pp. 455-468
  • Adamowicz, S.J., Purvis, A., From more to fewer? Testing an allegedly pervasive trend in the evolution of morphological structure (2006) Evolution, 60, pp. 1402-1416
  • Adamowicz, S.J., Sacherová, V., Test of a widespread hypothesis of evolutionary directionality using a crustacean lineage (Branchiopoda: Chydoridae) (2006) Journal of Evolutionary Biology, 19, pp. 1517-1530
  • Bayly, I.A.E., (1992) The non-marine Centropagidae (Copepoda: Calanoida) of the world, , The Hague, The Netherlands: SPB Academic Publishing
  • Bayly, I.A.E., Fusion of the genera Boeckella and Pseudoboeckella (Copepoda) and revision of their species from South America and sub-Antarctic islands (1992) Revista Chilena de Historia Natural, 65, pp. 17-63
  • Bayly, I.A.E., Burton, H.R., Beaver Lake, Greater Antarctica, and its population of Boeckella poppei (Mrázek) (Copepoda: Calanoida) (1993) Verhandlungen der Internationalen Vereinigung für Theoretische und Angewandte Limnologie, 25, pp. 975-978
  • Bayly, I.A.E., Gibson, J.A.E., Wagner, B., Swadling, K.M., Taxonomy, ecology and zoogeography of two East Antarctic freshwater calanoid copepod species: Boeckella poppei and Gladioferens antarcticus (2003) Antarctic Science, 15, pp. 439-448
  • Boxshall, G.A., Huys, R., The ontogeny and phylogeny of copepod antennules (1998) Philosophical Transactions of the Royal Society of London B, 353, pp. 765-786
  • Braga, E., Zardoya, R., Meyer, A., Yen, J., Mitochondrial and nuclear rRNA based copepod phylogeny with emphasis on the Euchaetidae (Calanoida) (1999) Marine Biology, 133, pp. 79-90
  • Brehm, V., Sobre los copépodos hallados por el profesor Birabén en la Argentina. (Crustacea). 2a. Comunicación (1956) Neotropica, 2, pp. 22-32
  • Brooks, D.R., McLennan, D.A., Macroevolutionary patterns of morphological diversification among parasitic flatworms (Platyhelminthes: Cercomeria) (1993) Evolution, 47, pp. 495-509
  • Bucklin, A., Frost, B.W., Bradford-Grieve, J., Allen, L.D., Copley, N.J., Molecular systematic and phylogenetic assessment of 34 calanoid copepod species of the Calanidae and Clausocalanidae (2003) Marine Biology, 142, pp. 333-343
  • Bucklin, A., Guarnieri, M., Hill, R.S., Bentley, A.M., Kaartvedt, S., Taxonomic and systematic assessment of planktonic copepods using mitochondrial COI sequence variation and competitive, species-specific PCR (1999) Hydrobiologia, 401, pp. 239-254
  • Dogiel, V.A., (1954) Oligomerization of the homologous organs as one of the main paths in animal evolution, , Leningrad: Leningrad University Press [in Russian
  • Ferrari, F.D., Developmental patterns in the numbers of ramal segments of copepod post-maxillipedal legs (1988) Crustaceana, 54, pp. 166-181
  • 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 (1994) Molecular Marine Biology and Biotechnology, 3, pp. 294-299
  • Fryer, G., Evolution and adaptive radiation in the Chydoridae (Crustacea: Cladocera): a study in comparative functional morphology and ecology (1968) Philosophical Transactions of the Royal Society of London B, 254, pp. 221-385
  • http://iubio.bio.indiana.edu, Gilbert D. 1992. Seqapp, Version 1.9a. A multiple sequence editor for Macintosh computers. Distributed by the author at; Goetze, E., Cryptic speciation on the high seas; global phylogenetics of the copepod family Eucalanidae (2003) Proceedings of the Royal Society of London B, 270, pp. 2321-2331
  • Goldman, N., Statistical tests of models of DNA evolution (1993) Journal of Molecular Evolution, 36, pp. 182-198
  • Gómez, A., Serra, M., Carvalho, G.R., Lunt, D.H., Speciation in ancient cryptic species complexes: Evidence from the molecular phylogeny of Brachionus plicatilis (Rotifera) (2002) Evolution, 56, pp. 1431-1444
  • Harding, J.P., The Percy Sladen Trust Expedition to Lake Titicaca in 1937. Crustacea: Copepoda (1955) Transactions of the Linnean Society London, Zoology, 1, pp. 219-247
  • Hebert, P.D.N., Cywinska, A., Ball, S., deWaard, J.R., Biological identifications through DNA barcodes (2003) Proceedings of the Royal Society of London B, 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, 101, pp. 14812-14817
  • 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
  • Hill, R.S., Allen, L.D., Bucklin, A., Multiplexed species-specific PCR protocol to discriminate four N. Atlantic Calanus species, with an mtCOI gene tree for ten Calanus species (2001) Marine Biology, 139, pp. 279-287
  • Huelsenbeck, J.P., Ronquist, F., MRBAYES: Bayesian inference of phylogenetic trees (2001) Bioinformatics, 17, pp. 754-755
  • Huys, R., Boxshall, G., (1991) Copepod Evolution, , London, UK: The Ray Society
  • Janzen, D.H., Now is the time (2004) Philosophical Transactions of the Royal Society of London B, 359, pp. 731-732
  • 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
  • Knowlton, N., Sibling species in the sea (1993) Annual Review of Ecology and Systematics, 24, pp. 189-216
  • http://www.megasoftware.net, Kumar S, Tamura K, Jakobsen IB, Nei M. 2001. MEGA2: Molecular evolutionary genetics analysis software, Version 2.1.Tempe, Arizona, USA: Arizona State University, program distributed by the authors at; Locascio de Mitrovich, C., Menu-Marque, S., Redescription and distribution of Boeckella gibbosa (Brehm, 1935) (Copepoda, Calanoida, Centropagidae) (1997) Hydrobiologia, 354, pp. 157-163
  • http://mesquiteproject.org, Maddison WP, Maddison DR. 2004a. Mesquite, a modular system for evolutionary analysis, Version 1.05; http://mesquiteproject.org, Maddison WP, Maddison DR. 2004b. Stochchar: a package of mesquite modules for stochastic models of character evolution, Version 1.05; Menu-Marque, S., Karukinka fueguina n. gen., n. sp. (Copepoda, Calanoida, Centropagidae) from Tierra del Fuego (2002) Crustaceana, 75, pp. 1229-1240
  • Menu-Marque, S., Balseiro, E., Boeckella antiqua n. sp. (Copepoda, Calanoida, Centropagidae) from Patagonia (2000) Hydrobiologia, 429, pp. 1-7
  • Menu-Marque, S., Zúñiga, L.R., Boeckella diamantina n. sp. (Calanoida, Centropagidae), from a high Andean lake in Mendoza, Argentina (1994) Hydrobiologia, 292-293, pp. 81-87
  • Monchenko, V.I., von Vaupel Klein, J.C., Oligomerization in Copepoda Cyclopoida as a kind of orthogenetic evolution in the animal kingdom (1999) Crustaceana, 72, pp. 241-264
  • Mooers, A., Schluter, D., Reconstructing ancestor states with maximum likelihood: Support for one- and two-rate models (1999) Systematic Biology, 48, pp. 623-633
  • Oren, A., Prokaryote diversity and taxonomy: Current status and future challenges (2004) Philosophical Transactions of the Royal Society of London B, 359, pp. 623-638
  • Ortells, R., Gómez, A., Serra, M., Coexistence of cryptic rotifer species: Ecological and genetic characterisation of Brachionus plicatilis (2003) Freshwater Biology, 48, pp. 2194-2202
  • Pagel, M., Detecting correlated evolution on phylogenies: A general method for the comparative analysis of discrete characters (1994) Proceedings of the Royal Society of London B, 255, pp. 37-45
  • Pagel, M., The maximum likelihood approach to reconstructing ancestral character state of discrete characters on phylogenies (1999) Systematic Biology, 48, pp. 612-622
  • Pagel, M., Inferring the historical patterns of biological evolution (1999) Nature, 401, pp. 877-884
  • Paggi, J.C., Estudios limnológicos en la Península Potter, Isla 25 de Mayo (Shetland del Sur, Antártida): Morfología y taxonomía de Pseudoboeckella poppei Mrazek 1901 (Crustacea: Copepoda) (1983) Contribuciones Científicas Del Instituto Antártico Argentino, 303, pp. 1-34
  • Posada, D., Crandall, K.A., Modeltest: Testing the model of DNA substitution (1998) Bioinformatics, 14, pp. 817-818
  • Remigio, E.A., Hebert, P.D.N., Savage, A., Phylogenetic relationships and remarkable radiation in Parartemia (Crustacea: Anostraca), the endemic brine shrimp of Australia: evidence from mitochondrial DNA sequences (2001) Biological Journal of the Linnean Society, 74, pp. 59-71
  • Ringuelet, R.A., Los crustáceos copépodos de las aguas continentales en la República Argentina. Sinopsis sistemática (1958) Contribuciones Científicas Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Serie Zoología, 1, pp. 35-126
  • Sacherová, V., Hebert, P.D.N., The evolutionary history of the Chydoridae (Crustacea: Cladocera) (2003) Biological Journal of the Linnean Society, 79, pp. 629-643
  • Saiki, R.K., Gelfand, D.H., Stoffel, S., Primer-directed enzymatic amplification of DNA with a thermostable DNA polymerase (1988) Science, 239, pp. 487-491
  • Saitou, N., Nei, M., The neighbor-joining method: A new method for reconstructing phylogenetic trees (1987) Molecular Biology and Evolution, 4, pp. 406-425
  • Schluter, D., Price, T., Mooers, A., Ludwig, D., Likelihood of ancestor states in adaptive radiation (1997) Evolution, 51, pp. 1699-1711
  • Schwenk, K., Sand, A., Boersma, M., Brehm, M., Mader, E., Offerhaus, D., Spaak, P., Genetic markers, genealogies and biogeographic patterns in the cladocera (1998) Aquatic Ecology, 32, pp. 37-51
  • Smirnov, N.N., Morpho-functional grounds of mode of life of Cladocera. III. Oligomerization in Cladocera (1969) Hydrobiologia, 34, pp. 235-242
  • Smirnov NN. 1971. Chydoridae fauny mira. Fauna SSSR, 1 no. 2. (N.S. 101), Akademiya Nauk SSSR, Leningrad. [English Translation from Israel Program for Scientific Translations by A. Mercado: Chydoridae. Fauna of the USSR. Crustacea, 1 no. 2. Keter Publishing House Jerusalem Ltd, Jerusalem, Israel, 1974]; Weekers, P.H.H., Murugan, G., Vanfleteren, J.R., Belk, D., Dumont, H.J., Phylogenetic analysis of anostracans (Branchiopoda: Anostraca) inferred from nuclear 18S ribosomal DNA (18S rDNA) sequences (2002) Molecular Phylogenetics and Evolution, 25, pp. 535-544

Citas:

---------- APA ----------
Adamowicz, S.J., Menu-Marque, S., Hebert, P.D.N. & Purvis, A. (2007) . Molecular systematics and patterns of morphological evolution in the Centropagidae (Copepoda: Calanoida) of Argentina. Biological Journal of the Linnean Society, 90(2), 279-292.
http://dx.doi.org/10.1111/j.1095-8312.2007.00723.x
---------- CHICAGO ----------
Adamowicz, S.J., Menu-Marque, S., Hebert, P.D.N., Purvis, A. "Molecular systematics and patterns of morphological evolution in the Centropagidae (Copepoda: Calanoida) of Argentina" . Biological Journal of the Linnean Society 90, no. 2 (2007) : 279-292.
http://dx.doi.org/10.1111/j.1095-8312.2007.00723.x
---------- MLA ----------
Adamowicz, S.J., Menu-Marque, S., Hebert, P.D.N., Purvis, A. "Molecular systematics and patterns of morphological evolution in the Centropagidae (Copepoda: Calanoida) of Argentina" . Biological Journal of the Linnean Society, vol. 90, no. 2, 2007, pp. 279-292.
http://dx.doi.org/10.1111/j.1095-8312.2007.00723.x
---------- VANCOUVER ----------
Adamowicz, S.J., Menu-Marque, S., Hebert, P.D.N., Purvis, A. Molecular systematics and patterns of morphological evolution in the Centropagidae (Copepoda: Calanoida) of Argentina. Biol. J. Linn. Soc. 2007;90(2):279-292.
http://dx.doi.org/10.1111/j.1095-8312.2007.00723.x