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Список литературы

  1. Andres, G., (1949). Untersuchungen an Chimären von Triton und Bombinator. Genetica 24, 387–534.

  2. Burke, A. C. (1991a). Proximal Elements in the Vertebrate Limb: Evolutionary and Developmental Origin of the Pectoral Girdle. New York:Plenum Press.

  3. Burke, A. C. (1991b). The development and evolution of the turtle body plan: inferring intrinsic aspects of the evolutionary process from experimental embryology. Am. Zool. 31, 616-627.

  4. Cebra-Thomas, J.A., Betters, E., Yin, M., Plafkin, C., McDow, K., Gilbert, S.F., 2007. Evidence that a late-emerging population of trunk neural crest cells forms the plastron bones in the turtle Trachemys scripta. Evolut. Develop. 9, 267–277.

  5. Chai, Y., Jiang, X., Ito, Y., Bringas Jr., P., Han, J., Rowitch, D.H., Soriano, P., McMahon, A.P., Sucov, H.M., 2000. Fate of the mammalian cranial neural crest during tooth and mandibular morphogenesis. Development 127, 1671–1679.

  6. Chevallier A, Kieny M, Mauger A, Sengel P. 1977. Developmental fate of somitic mesoderm in the chick embryo. In: Ede D, Hinchliffe JR, Balls M, editors. Vertebrate limb and somite morphogenesis. Cambridge: Cambridge University Press. p 421–432.

  7. Cohn, M. J., Izpisua Belmonte, J. C., Abud, H., Heath, J. K., and Tickle, C. (1995). Fibroblast growth factors induce additional limb development from the flank of chick embryos. Cell 80, 739–746.

  8. Couly, G. F., Coltey, P. M. & LeDouarin, N. M. The triple origin of skull in higher vertebrates: a study in quail–-chick chimeras. Development 114, 1–-15 (1993).

  9. Crossley, P. H., Minowada, G., MacArthur, C. A. and Martin,G. R. (1996). Roles for FGF8 in the induction, initiation, and maintenance of chick limb development. Cell 84, 127-136

  10. Donoghe, Ph. C. G., Graham, A. and Kelsh, R. N. (2008). The origin and evolution of the neural crest. BioEssays 30, 530-541.

  11. Duboule, D. (1992). The vertebrate limb: a model system to study the Hox/HOM gene network during development and evolution. BioEssays 14, 375–384.

  12. Ehehalt, F., Wang, B., Christ, B., Patel, K. and Huang, R. (2004). Intrinsic cartilage-forming potential of dermomyotomal cells requires ectodermal signals for the development of the scapula blade. Anat. Embryol. (Berl) 208, 431-437.

  13. Fomenou MD, Scaal M, Stockdale FE, Christ B, Huang R (2005) Cells of all somitic compartments are determined with respect to segmental identity. Dev Dyn 233:1386–1393

  14. Gilbert, S.F., Loredo, G.A., Brukman, A., Burke, A.C., 2001. Morphogenesis of the turtle shell: the development of a novel structure in tetrapod evolution. Evol. Dev. 3, 47–58.

  15. Gross, J. B., Hanken, J. (2008). Review of fate – mapping studies of osteogenic cranial neural crest in vertebrates. Dev. Biol. 317, 389-400.

  16. Hall BK. 1986. The role of movement and tissue interactions in the development and growth of bone and secondary cartilage in the clavicle of the embryonic chick. J Embryol Exp Morphol 93:133–152.

  17. Hamburger, V. and Hamilton, H. L. (1951). A series of normal stages in the development of the chick embryo. J. Morph. 88, 49-92.

  18. Harrison, R. G. (1918). Experiments on the development of the fore limb of Amblystoma, a self-differentiating equipotential system. J. Exp. Zool. 25, 413–461.

  19. Hofmann, C., Drossopoulou, G.F., McMahon, A., Balling, R., Tickle, C., 1998. Inhibitory action of BMPs on Pax1 expression and on shoulder girdle formation during limb development. Dev. Dyn. 213, 199– 206.

  20. Huang L-H, Fukai N, Selby PB, Olsen, BR, Mundlos S. 1997. Mouse clavicular development: Analysis of wild-type and cleidocranial dysplasia mutant mice. Dev Dynam 210:33–40.

  21. Huang, R., Christ, B., Patel, K., 2006. Regulation of scapula development. Anat Embryol 211, 65-71.

  22. Huang, R., Zhi, Q., Patel, K., Wilting, J., Christ, B., 2000. Dual origin and segmental organisation of the avian scapula. Development 127, 3789– 3794.

  23. Jacob, M., Christ, B., Jacob, H. J. (1975). Uber die regionale Determination des paraxialen Mesoderms junger Huhnerembryonen. Verh Anat Ges 69, 263-269.

  24. Jeffery WR, Strickler AG, Yamamoto Y. 2004. Migratory neural crest-like cells form body pigment in a urochordate embryo. Nature 431:696–699.

  25. Jiang, X., Iseki, S., Maxson, R. E., Sucov, H. M. & Morriss-Kay, G. M. Tissue origins and interactions in the mammalian skull vault. Dev. Biol. 241, 106–-116 (2002).

  26. Kawakami et al., 2001 Kawakami, Y., Capdevila, J., Buscher, D., Itoh, T., Rodriguez Esteban, C., Izpisua Belmonte, J.C., 2001. Wnt signals control FGF-dependent limb initiation and AER induction in the chick embryo. Cell. 104, 891–900.

  27. Kieny, M., Mauger, A. and Sengel, P. (1972). Early regionalization of the somite mesoderm as studied by the development of the axial skeleton of the chick embryo. Dev. Biol. 28, 142-161.

  28. Kuijper S, Beverdam A, Kroon C, Brouwer A, Candille S, Barsh G, Meijlink F (2005) Genetics of shoulder girdle formation: roles of Tbx15 and aristaless-like genes. Development 132:1601–1610

  29. Le Douarin, N. M. (1969). Particularités du noyaux interphasique chez la caille japonaise (Coturnix coturnix japonica). Utilisation de ces particularités comme ‘marquage biologique’ dans les recherches sur les interactions tissulaires et les migrations cellulaires au cours de l’ontogenese. Bull. Biol. Fr. Belg. 103, 435-452.

  30. Le Douarin, N.M., Kalcheim, C., 1999. The Neural Crest, 2nd ed. Cambridge Univ. Press, Cambridge. 445 pp.

  31. Maden, M. (1983). The effect of vitamin A on limb regeneration in Rana temporaria. Dev. Biol. 98, 409–416.

  32. Matsuoka, T., et al. 2005. Neural crest origins of the neck and shoulder. Nature 436: 347–355.

  33. McGonnell IM, Graham A. 2002. Trunk neural crest has skeletogenic potential. Curr Biol 12:767–771.

  34. McGonnell IM (2001) The evolution of the pectoral girdle. J Anat 199, 189–194.

  35. Moeller, C., Swindell, E.C., Kispert, A., Eichele, G., 2003. Carboxypeptidase Z (CPZ) modulates Wnt signaling and regulates the development of skeletal elements in the chicken. Development 130, 5103– 5111.

  36. Morriss-Kay, G.M., 2001. Derivation of the mammalian skull vault. J. Anat. 199, 143–151.

  37. Noden, D.M., 1982. Patterns and organization of craniofacial skeletogenic and myogenic mesenchyme: a perspective. In: Sarnat, B.G. (Ed.), Progress in Clinical and Biological Research: Factors and Mechanisms Influencing Bone Growth. Alan R. Liss, Inc., New York, pp. 167–203.

  38. Noden, D.M., 1984. The use of chimeras in analyses of craniofacial development. In: Le Douarin, N.M., McLaren, A. (Eds.), Chimeras in Developmental Biology. Academic Press, London, pp. 241–280.

  39. O'Gorman, S., 2005. Second branchial arch lineages of the middle ear of wild-type and Hoxa2 mutant mice. Dev. Dyn. 234, 124–131.

  40. Oliver, G., De Robertis, E. M., Wolpert, L., and Tickle, C. (1990). Expression of a homeobox gene in the chick wing bud following application of retinoic acid and grafts of polarizing region tissue. EMBO J. 9, 3093–3099.

  41. Otto et al.,2006 Otto A, Schmidt C, Patel K (2006) Pax3 and Pax7 expression and regulation in the avian embryo. Anat Embryol (Berl) 211:293–310

  42. Pellegrini, M., Pantano, S., Fumi, M.P., Lucchini, F., Forabosco, A., 2001. A genesis of the scapula in Emx2 homozygous mutants. Dev. Biol. 232, 149– 156.

  43. Prahlad, K.V., Skala, G., Jones, D.G., Briles, W.E., 1979. Limbless: a new genetic mutant in the chick. J. Exp. Zool. 209, 427– 434.Prols et al., 2004

  44. Prols, F., Ehehalt, F., Rodriguez-Niedenfuhr, M., He, L., Huang, R., Christ, B., 2004. The role of Emx2 during scapula formation. Dev. Biol. 275, 315– 324.

  45. Rancourt, D.E., Tsuzuki, T., Capecchi, M.R., 1995. Genetic interaction between hoxb-5 and hoxb-6 is revealed by nonallelic noncomplementation. Genes Dev. 9, 108– 122.

  46. Rijli, F. M., and Chambon, P. (1997). Genetic interactions of Hox genes in limb development: Learning from compound mutants. Curr. Opin. Genet. Dev. 7, 481–487.

  47. Ros, M. A., Lopez Martinez, A., Simandl, B. K., Rodriguez, C., Izpisua Belmonte, J. C., Dahn, R., and Fallon, J. F. (1996). The limb field mesoderm determines initial limb bud anteroposterior asymmetry and budding independent of sonic hedgehog or apical ectodermal gene expressions. Development 122, 2319–2330

  48. Rutledge, J. C., Shourbaji, A. G., Hughes, L. A., Polifka, J. E., Cruz, Y. P., Bishop, J. B., and Generoso, W. M. (1994). Limb and lower-body duplications induced by retinoic acid in mice. Proc. Natl. Acad. Sci. USA 91, 5436–5440.

  49. Saunders, J. W. J. The proximo-distal sequence of origin of the parts of the chick wing and the role of the ectoderm. J. Exp. Zool. 108, 363–-403 (1948).

  50. Sharpe, P. T., Miller, J. R., Evans, E. P., Burtenshaw, M. D., and Gaunt, S. J. (1988). Isolation and expression of a new mouse homeobox gene. Development 102, 397–407.

  51. Teillet, M., Watanabe, Y., Jeffs, P., Duprez, D., Lapointe, F., Le Douarin, N.M., 1998. Sonic hedgehog is required for survival of both myogenic and chondrogenic somitic lineages. Development 125, 2019– 2030.

  52. Vickaryous, M. K., Hall, B., K. (2006). Homology of the reptilian coracoid and a reappraisal of the evolution and development of the amniote pectoral apparatus. J Anat 208(3), 263-285.

  53. Wagner, G., 1949. Die Bedeutung der Neuralleiste für die Kopfgestaltung der Amphibienlarven: Untersuchungen an Chimären von Triton und Bombinator. Rev. Suisse Zool. 56, 519–620.

  54. Wallin, J., Wilting. J., Koseki, H., Fritsch, R., Christ, B. and Balling, R. (1994). The role of Pax-1 in axial skeleton development. Development 120, 1109-1121.

  55. Wang B, He L, Ehehalt F, Geetha-Loganathan P, Nimmagadda S, Christ B, Scaal M, Huang R (2005) The formation of the avian scapula blade takes place in the hypaxial domain of the somites and requires somatopleure-derived BMP signals. Dev Biol 287:11–18

  56. Wilm, B., Dahl, E., Peters, H., Balling, R., and Imai, K. (1998). Targeted disruption of Pax1 defines its null phenotype and proves haploinsufficiency. Proc. Natl. Acad. Sci. USA 95, 8692–8697.

  57. Zakany, J., and Duboule, D. (1999). Hox genes in digit development and evolution. Cell Tissue Res. 296, 19–25.

  58. Дзержинский, Ф. Я., (2005). Сравнительная анатомия позвоночных животных: учебник для студентов вузов / 2-е изд., испр., перераб. и доп. – М.: Аспект Пресс, 2005. – 304 с.: Илл., табл.

  59. Ромер, А., Парсонс, Т. (1992). Анатомия позвоночных: В 2-х тт. Пер. с англ.-М.:Мир, 1992ю-358 с., илл.

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