Prefacio
Davis, P. y D. H. Kenyon, Of Pandas and People: The Central Question of Biological Origins (2.ª ed.), Foundation for Thought and Ethics, Richardson, TX, 1993.
Introducción
BBC Poll on Evolution, Ipsos MORI, 2006. http://www.ipsos-mori.com/ content/bbc-survey-on-the-origins-of-life.ashx.
Berkman, M. B., J. S. Pacheco y E. Plutzer, «Evolution and creationism in America’s schools: A national portrait», Public Library of Science Biology, 6:e124, 2008.
Harris Poll #52, 6 de julio de 2005, http://www.harrisinteractive.com/harris_poll/index.asp?PID=581.
Miller, J. D., E. C. Scott y S. Okamoto, «Public acceptance of evolution», Science 313 (2006), pp. 765-766.
Shermer, M., Why Darwin Matters: The Case Against Intelligent Design. Times Books, Nueva York, 2006.
Capítulo 1: ¿Qué es la evolución?
Darwin, C., The Autobiography of Charles Darwin, N. Barlow, ed., W. W. Norton, Nueva York, 1993 (hay trad, cast.: Autobiografía, Laetoli, Navarra, 2009).
Hazen, R. M., Gen*e*sis: The Scientific Quest for Life’s Origin, Joseph Henry Press, Washington, DC, 2005.
Paley, W., Natural Theology; or, Evidences of the Existence and Attributes of the Deity, Collected from the Appearances of Nature, Parker, Filadelfia, 1802.
Capítulo 2: Escrito en las rocas
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Chaline, J., B. Laurin, P. Brunet-Lecomte y L. Viriot, «Morphological trends and rates of evolution in arvicolids (Arvicolidae, Rodentia): Towards a punctuated equilibria/disequilibria model», Quaternary International, 19 (1993), pp. 27-39.
Chen, J. Y., D. Y. Huang y C. W. Li, «An early Cambrian craniate-like chordate», Nature, 402 (1999), pp. 518-522.
Daeschler, E. B., N. H. Shubin y F. A. Jenkins, «A Devonian tetrapod-like fish and the evolution of the tetrapod body plan», Nature, 440 (2006), pp. 757-763.
Dial, K. P., «Wing-assisted incline running and the evolution of flight», Science, 299 (2003) pp. 402-404.
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Hedman, M., The Age of Everything: How Science Explores the Past, University of Chicago Press, Chicago, 2007.
Hopson, J. A., «The mammal like reptiles: A study of transitional fossils», American Biology Teacher, 49 (1987), pp. 16-26.
Ji, Q., M. A. Norell, K. Q. Gao, S. A. Ji y D. Ren, «The distribution of integumentary structures in a feathered dinosaur», Nature, 410 (2001), pp. 1084-1088.
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Li, Y., L.-Z. Chen et al., «Lower Cambrian vertebrates from South China», Nature, 402 (1999), pp. 42-46.
Malmgren, B. A. y J. P. Kennett, «Phyletic gradualism in a late Cenozoic planktonic foraminiferal lineage; Dsdp site 284, southwest Pacific», Paleobiology, 7 (1981), pp. 230-240.
Norell, M. A., J. M. Clark, L. M. Chiappe y D. Dashzeveg, «A nesting dinosaur», Nature, 378 (1995), pp. 774-776.
Organ, C. L., M. H. Schewitzer, W. Zheng, Lm. M. Freimark, L. C. Cantley y J. M. Asara, «Molecular phylogenetics of Mastodon and Tyrannosaurus rex», Science, 320 (2008), p. 499.
Peyer, K., «A reconsideration of Compsognathus from the upper Tithonian of Canjers, Southern France», Journal of Vertebrate Paleontology, 26, pp. 879-896.
Prum, R. O. y A. H. Brush, «The evolutionary origin and diversification of feathers», Quarterly Review of Biology, 77 (2002), pp. 261-295.
Sheldon, P., «Parallel gradualistic evolution of Ordovician trilobites», Nature, 330 (1987), pp. 561-563.
Shipman, P., Taking Wing: Archaeopteryx and the Evolution of Bird Flight, Weidenfeld & Nicolson, Londres, 1998.
Shu, D. G., H. L. Luo, S. C. Morris, X. L. Zhang, S. X. Hu, L. Chen, J. Han, M. Zhu, Y. Li y L. Z. Chen, «Lower Cambrian vertebrates from South China», Nature, 402 (1999), pp. 42-46.
Shu, D. G., S. C. Morris, J. Han, Z. F. Zhang, K. Yasui, P. Janvier, L. Chen, X. L. Zhang, J. N. Liu, Y. Li y H. Q. Liu, «Head and backbone of the Early Cambrian vertebrate Haikouichthys», Nature, 421 (2003), pp. 526-529.
Shubin, N. H., E. B. Daeschler y F. A. Jenkins, «The pectoral fin of Tiktaalik roseae and the origin of the tetrapod limb», Nature, 440 (2006), pp. 764-771.
Sutera, R., «The origin of whales and the power of independent evidence», Reports of the National Center for Science Education, 20 (2001), pp. 33-41.
Thewissen, J. G. M., L. N. Cooper, M. T. Clementz, S. Bajpail y B. N. Tiwari, «Whales originated from aquatic artiodactyls in the Eocene epoch of India», Nature, 450 (2007), pp. 1190-1194.
Wells, J. W., «Coral growth and geochronometry», Nature, 187 (1963), pp. 948-950.
Wilson, E. O., F. M. Carpenter y W. L. Brown, «First Mesozoic ants», Science, 157 (1967), pp. 1038-1040.
Xu, X. y M. A. Norell, «A new troodontid dinosaur from China with avian-like sleeping posture», Nature, 431 (2004), pp. 838-841.
Xu, X., X.-L. Wang y X.-C. Wu, «A dromaeosaurid dinosaur with a filamentous integument from the Yixian Formation of China», Nature, 401 (1999), pp. 262-266.
Xu, X., Z. H. Zhou, X.-L. Wang, X. W. Kuang, F. C. Zhang y X. K, Du, «Four-winged dinosaurs from China», Nature, 421 (2003), pp. 335-340.
Capítulo 3: Reliquias: vestigios, embriones y mal diseño
Andrews, R. C., «A remarkable case of external hind limbs in a humpback whale», American Museum Novitates, 9 (1921), pp. 1-6.
Bannert, N. y R. Kurth, «Retroelements and the human genome: New perspectives on an old relation», Proceedings of the National Academy of Sciences of the United States of America, 101 (2004), pp. 14572-14579.
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Bejder, L. y B. K. Hall, «Limbs in whales and limblessness in other vertebrates: Mechanisms of evolutionary and developmental transformation and loss», Evolution and Development, 4 (2002), pp. 445-458.
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Nishikimi, M. y K. Yagi, «Molecular basis for the deficiency in human’s of gulonolactone oxidase, a key enzyme for ascorbic acid biosynthesis», American Journal of Clinical Nutrition, 54 (1991), pp. 1203S-1208S.
Ohta, Y. y M. Nishikimi, «Random nucleotide substitutions in primate nonfunctional gene for L-gulono-γ-lactone oxidase, the missing enzyme in L-ascorbic acid biosynthesis», Biochimica et Biophysica Acta, 1472 (1999), pp. 408-411.
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Sadler, T. W., Langman’s Medical Embryology, Lippincott Williams & Wilkins, Philadelphia, 2003.
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Shubin, N., Your Inner Fish, Pantheon, Nueva York, 2008.
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Capítulo 4: La geografía de la vida
Barber, H. N., H. E. Dadswell y H. D. Ingle, «Transport of driftwood from South America to Tasmania and Macquarie Island», Nature, 184 (1959), pp. 203-204.
Brown, J. H. y M. V. Lomolino, Biogeography, Sinauer Associates, Sunderland, MA, 1998².
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Censky, E. J., K. Hodge y J. Dudley, «Over-water dispersal of lizards due to hurricanes», Nature, 395 (1998), p. 556.
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Woodburne, M. O. y J. A. Case, «Dispersal, vicariance, and the Late Cretaceous to early tertiary land mammal biogeography from South America to Australia», Journal of Mammalian Evolution, 3 (1996), pp. 121-161.
Yoder, A. D. y M. D. Nowak, «Has vicariance or dispersal been the predominant biogeographic force in Madagascar? Only time will tell», Annual Review of Ecology, Evolution, and Systematics, 37 (2006), pp. 405-431.
Capítulo 5: El motor de la evolución
Carroll, S. P., C. Boyd, «Host race radiation in the soapberry bug: Natural history with the history», Evolution, 46 (1992), pp. 1052-1069.
Dawkins, R., Climbing Mount Improbable, Penguin, Londres, 1996 (hay trad, cast.: Escalando el monte improbable, Tusquets, Barcelona, 1998).
Doebley, J. F., B. S. Gaut y B. D. Smith, «The molecular genetics of crop domestication», Cell, 127 (2006), pp. 1309-1321.
Doolittle, W. F. y O. Zhaxbayeva, «Evolution: Reducible complexity—the case for bacterial flagella», Current Biology, 17 (2007), pp. R510-R512.
Endler, J. A., Natural Selection in the Wild, Princeton University Press, Princeton, NJ, 1986.
Franks, S. J., S. Sim y A. E. Weis, «Rapid evolution of flowering time by an annual plant in response to a climate fluctuation», Proceedings of the National Academy of Sciences of the United States of America, 104 (2007), pp. 1278-1282.
Gingerich, P. D., «Rates of evolution: Effects of time and temporal scaling», Science, 222 (1983), pp. 159-161.
Grant, P. R., Ecology and Evolution of Darwin’s Finches, (rev. ed.), Princeton University Press, Princeton, NJ, 1999.
Hall, B. G., «Evolution on a petri dish: The evolved β-galactosidase system as a model for studying acquisitive evolution in the laboratory», Evolutionary Biology, 15 (1982), pp. 85-150.
Hoekstra, H. E., R. J. Hirschmann, R. A. Bundey, P. A. Insel y J. P. Crossland, «A single amino acid mutation contributes to adaptive beach mouse color pattern», Science, 313 (2006), pp. 101-104.
Jiang, Y. y R. F. Doolittle, «The evolution of vertebrate blood coagulation as viewed from a comparison of puffer fish and sea squirt genomes», Proceedings of the National Academy of Sciences of the United States of America, 100 (2003), pp. 7527-7532.
Kaufman D. W., «Adaptive coloration in Peromyscus polionotus: Experimental selection by owls», Journal of Mammalogy, 55 (1974), pp. 271-283.
Lamb, T. D., S. P. Collin y E. N. Pugh, «Evolution of the vertebrate eye: Opsins, photoreceptors, retina and eye cup», Nature Reviews Neuroscience, 8 (2007), pp. 960-975.
Lenski, R. E., «Phenotypic and genomic evolution during a 20,000-generation experiment with the bacterium Escherichia coli», Plant Breeding Reviews, 24 (2004), pp. 225-265.
Miller, K. R., Finding Darwin’s God: A Scientist’s Search for Common Ground Between God and Evolution, Cliff Street Books, Nueva York, 1999.
—, Only a Theory: Evolution and the Battle for America’s Soul, Viking, Nueva York, 2008.
Neu, H. C., «The crisis in antibiotic resistance», Science, 257 (1992), pp. 1064-1073.
Nilsson, D.-E. y S. Pelger, «A pessimistic estimate of the time required for an eye to evolve», Proceedings of the Royal Society of London, Series B, 256 (1994), pp. 53-58.
Pallen, M. J. y N. J. Matzke, «From The Origin of Species to the origin of bacterial flagella», Nature Reviews Microbiology, 4 (2006), pp. 784-790.
Rainey, P. B. y M. Travisano, «Adaptive radiation in a heterogeneous environment», Nature, 394 (1998), pp. 69-72.
Reznick, D. N. y C. K. Ghalambor, «The population ecology of contemporary adaptations: What empirical studies reveal about the conditions that promote adaptive evolution», Genetica, 112 (2001), pp. 183-198.
Salvini-Plawen, L. V. y E. Mayr, «On the evolution of photoreceptors and eyes», Evolutionary Biology, 10 (1977), pp. 207-263.
Steiner, C. C., J. N. Weber y H. E. Hoekstra, «Adaptive variation in beach mice produced by two interacting pigmentation genes», Public Library of Science Biology, 5 (2007), p. e219.
Vila, C., P. Savolainen, J. E. Maldonado, I. R. Amorim, J. E. Rice, R. L. Honeycutt, K. A. Crandall, J. Lundeberg y R. K. Wayne, «Multiple and ancient origins of the domestic dog», Science, 276 (1997), pp. 1687-1689.
Weiner, J., The Beak of the Finch: A Story of Evolution in Our Time, Vintage, Nueva York, 1995 (hay trad, cast.: El pico del pinzón: una historia de la evolución en nuestros días, Galaxia Gutemberg, Barcelona, 2002).
Xu, X. y R. F. Doolittle, «Presence of a vertebrate fibrinogen-like sequence in an echinoderm», Proceedings of the National Academy of Sciences of the United States of America, 87 (1990), pp. 2097-2101.
Yanoviak, S. P., M. Kaspari, R. Dudley y J. G. Poinar, «Parasite-induced fruit mimicry in a tropical canopy ant», American Naturalist, 171 (2008), pp. 536-544.
Zimmer, C., Parasite Rex: Inside the Bizarre World of Nature’s Most Dangerous Creatures, Free Press, Nueva York, 2001.
Capítulo 6: El sexo como motor de la evolución
Andersson, M., Sexual Selection, Princeton University Press, Princeton, NJ, 1994.
Burley, N. T. y R. Symanski, «“A taste for the beautiful”: Latent aesthetic mate preferences for white crests in two species of Australian grassfinches», American Naturalist, 152 (1998), pp. 792-802.
Butler, M. A., S. A. Sawyer y J. B. Losos, «Sexual dimorphism and adaptive radiation in Anolis lizards», Nature, 447 (2007), pp. 202-205.
Butterfield, N. J.,«Bangiomorpha pubescens n. gen., n. sp.: Implications for the evolution of sex, multicellularity and the Mesoproterozoic/Neoproterozoic radiation of eukaryotes», Paleobiology, 3 (2000), pp. 386-404.
Darwin, C., «The Descent of Man y Selection in Relation to Sex», Murray, Londres, 1871 (hay trad, cast.: El origen del hombre, Ediciones Ibéricas, Madrid, 1996).
Dunn, P. O., L. A. Whittingham y T. E. Pitcher, «Mating systems, sperm competition y the evolution of sexual dimorphism in birds», Evolution, 55 (2001), pp. 161-175.
Endler, J. A., «Natural selection on color patterns in Poecilia reticulata», Evolution, 341 (1980), pp. 76-91.
Field, S. A. y M. A. Keller, «Alternative mating tactics and female mimicry as postcopulatory mate-guarding behavior in the parasitic wasp Cotesia rubecula», Animal Behaviour, 46 (1993), pp. 1183-1189.
Futuyma, D. J., Science on Trial: The Case for Evolution, Sinauer Associates, Sunderland, MA, 1995.
Hill, G. E., «Plumage coloration is a sexually selected indicator of male quality», Nature, 350 (1991), pp. 337-339.
Husak, J. F., J. M. Macedonia, S. F. Fox y R. C. Sauceda, «Predation cost of conspicuous male coloration in collared lizards (Crotaphytus collaris) An experimental test using clay-covered model lizards», Ethology, 112 (2006), pp. 572-580.
Johnson, P. E., Darwin on Trial, InterVarsity Press, Downers Grove, IL, 1993² (hay trad. cast.: Juicio a Darwin, Homo Legens, Madrid, 2007).
McFarlan, D., ed., Guinness Book of World Records, Sterling Publishing Co., Nueva York, 1989 (hay trad, cast.: Libro Guinness de los récords 1991, Producciones Jordán, Madrid, 1989).
Madden, J. R., «Bower decorations are good predictors of mating success in the spotted bowerbird», Behavioral Ecology and Sociobiology, 53 (2003), pp. 269-277.
—, «Male spotted bowerbirds preferentially choose, arrange and proffer objects that are good predictors of mating success», Behavioral Ecology and Sociobiology, 53 (2003), pp. 263-268.
Petrie, M., «Improved growth and survival of offspring of peacocks with more elaborate trains», Nature, 371 (1994), pp. 598-599.
Petrie, M., T. Halliday y C. Sanders, «Peahens prefer peacocks with elaborate trains», Animal Behaviour, 41 (1991), pp. 323-331.
Petrie, M. y T. Halliday, «Experimental and natural changes in the peacock’s (Pave cristatus) train can affect mating success», Behavioral Ecology and Sociobiology, 35 (1994), pp. 213-217.
Price, C. S. C., K. A. Dyer y J. A. Coyne, «Sperm competition between Drosophila males involves both displacement and incapacitation», Nature, 400 (1999), pp. 449-452.
Pryke, S. R. y S. Andersson, «Experimental evidence for female choice and energetic costs of male tail elongation in red-collared widowbirds», Biological Journal of the Linnean Society, 86 (2005), pp. 35-43.
Vehrencamp, S. L., J. W. Bradbury y R. M. Gibson, «The energetic cost of display in male sage grouse», Animal Behaviour, 38 (1989), pp. 885-896.
Wallace, A. R., «Note on sexual selection», Natural Science Magazine (1892), p. 749.
Welch, A. M., R. D. Semlitsch y H. C. Gerhardt, «Call duration as an indicator of genetic quality in male gray tree frogs», Science, 280 (1998), pp. 1928-1930.
Capitulo 7: El origen de las especies
Abbott, R. J. y A. J. Lowe, «Origins, establishment and evolution of new polyploid species: Senecio cambrensis and S. eboracensis in the British Isles», Biological Journal of the Linnean Society, 82 (2004), pp. 467-474.
Adam, P., Saltmarsh Ecology, Cambridge University Press, Cambridge, 1990.
Ainouche, M. L., A. Baumel y A. Salmon,«Spartina anglica C. E. Hubbard: A natural model system for analysing early evolutionary changes that affect allopolyploid genomes», Biological Journal of the Linnean Society, 82 (2004), pp. 475-484.
Ainouche, M. L., A. Baumel, A. Salmon y G. Yannic, «Hybridization, polyploidy and speciation in Spartina (Poaceae)», New Phytologist, 161 (2004), pp. 165-172.
Byrne, K. y R. A. Nichols, «Culex pipiens in London Underground tunnels: Differentiation between surface and subterranean populations», Heredity, 82 (1999), pp. 7-15.
Clayton, N. S., «Mate choice and pair formation in Timor and Australian mainland zebra finches», Animal Behaviour, 39 (1990), pp. 474-480.
Coyne, J. A. y H. A. Orr, «Patterns of speciation in Drosophila», Evolution, 43 (1989), pp. 362-381.
—, «“Patterns of speciation in Drosophila” revisited», Evolution, 51(1997), pp. 295-303.
—, Speciation, Sinauer Associates, Sunderland, MA, 2004.
Coyne, J. A. y T. D. Price, «Little evidence for sympatric speciation in island birds», Evolution, 54 (2000), pp. 2166-2171.
Dodd, D. M. B., «Reproductive isolation as a consequence of adaptive divergence in Drosophila pseudoobscura», Evolution, 43 (1989), pp. 1308-1311.
Gallardo, M. H., C. A. González y I. Cebrián, «Molecular cytogenetics and allotetraploidy in the red vizcacha rat, Tympanoctomys barrerae (Rodentia, Octodontidae)», Genomics, 88 (2006), pp. 214-221.
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Johnson, S. D., «Pollination ecotypes of Satyrium hallackii (Orchidaceae) in South Africa», Botanical Journal of the Linnean Society, 123 (1997), pp. 225-235.
Kent, R. J., L. C. Harrington y D. E. Norris, «Genetic differences between Culex pipiens f. molestus and Culex pipiens pipiens (Diptera: Culicidae) in New York», Journal of Medical Entomology, 44 (2007), pp. 50-59.
Knowlton, N., L. A. Weigt, L. A. Solórzano, D. K. Mills y E. Bermingham, «Divergence in proteins, mitochondrial DNA y reproductive compatibility across the Isthmus of Panama», Science, 260 (1993), pp. 1629-1632.
Losos, J. B. y D. Schluter, «Analysis of an evolutionary species-area relationship», Nature, 408 (2000), pp. 847-850.
Mayr, E., Systematics and the Origin of Species, Columbia University Press, New York, 1942.
—, Animal Species and Evolution, Harvard University Press, Cambridge, MA, 1963.
Pinker, S., The Language Instinct: The New Science of Language and Mind, HarperCollins, New York, 1994 (hay trad, cast.: El instinto del lenguaje, Alianza, Madrid, 2009).
Ramsey, J. M. y D. W. Schemske, «The dynamics of polyploid formation and establishment in flowering plants», Annual Review of Ecology, Evolution, and Systematics, 29 (1998), pp. 467-501.
Savolainen, V., M.-C. Anstett, C. Lexer, I. Hutton, J. J. Clarkson, M. V. Norup, M. P. Powell, D. Springate, N. Salamin y W. J. Baker, «Sympatric speciation in palms on an oceanic island», Nature, 441 (2006), pp. 210-213.
Schliewen, U. K., D. Tautz y S. Pääbo, «Sympatric speciation suggested by monophyly of crater lake cichlids», Nature, 368 (1994), pp. 629-632.
Weir, J. y R. Ingram, «Ray morphology and cytological investigations of Senecio cambrensis Rosser», New Phytologist, 86 (1980), pp. 237-241.
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Capitulo 8: ¿Y nosotros?
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Capítulo 9: A vueltas con la evolución
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