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АРТРОПОДИЗАЦИЯ И ЕЕ ЭКОЛОГИЧЕСКИЕ ПОСЛЕДСТВИЯ

Малахов В.В. Основные этапы эволюции эвкариотных организмов // Палеонтол. журн. 2003. № 6. С. 25–32.

Павлов В.Я. Планы строения пищедобывательных аппаратов водных членистоногих // Питание морских беспозвоночных в естественных условиях. М.: ИОАН, 1986. С. 101–113.

Павлов В.Я. Основные этапы развития пищедобывательной функции членистоногих // Структурно-функциональные исследования морского бентоса. М.: ИОАН, 1988. С. 95–104.

Павлов В.Я. Жизненные формы свободноживущих ракообразных и система членистых (Articulata) // Количественное и качественное распределение бентоса: кормовая база бентосоядных рыб. М.: ВНИРО, 1988. С. 154–170.

Павлов В.Я. Периодическая система членистоногих. М.: ВНИРО, 2000. 185 с.

Пoнoмapeнкo A.Г. Ocнoвныe coбытия в эвoлюции биocфepы // Пpoблeмы дoaнтpoпoгeновoй эвoлюции биocфepы. M.: Hayкa, 1993. С. 15–25.

Сергеев В.Н. Окремненные микрофоссилии // Бактериальная палеонтология. М.: ПИН РАН, 2002. С. 91–97.

СоколовБ.С.Вендскиеполихеты//Соколов Б. С., ИвановскийА.Б.Вендскаясистема.Т. 1. Палеонтология М.: Наука, 1995. С. 198–200.

Татаринов Л.П. Морфологическая эволюция териодонтов и общие вопросы филогенетики. М.: Наука, 1976. 257 с.

Шенборн В. О первичном биотопе животного мира // Журн. общ. биол. 1987. Т. 47. № 1. С. 27–40.

Федонкин М.А. Бесскелетная фауна венда и ее место в эвлюции Metazoa. M.: Наука, 1987. 176 с. (Труды ПИН АН СССР, т. 226).

Aguinaldo A.M.A., Turbeville J.M., Linford L.S., Rivera M.C., Garey J.R., Raff R.A., Lake J.A. Evidence for a clsde of nematodes, arthropods and other moulting animals // Nature. 1997. V. 387. P. 489–493.

Ballard J.W.O., Olsen G.J., Faith D.P., Odgers W.A., Rowell D.M., Atkinson P.W. Evidence from 12S ribosomal RNA sequences that onychophorans are modified arthropods // Science. 1992. V. 258. P. 1345–1348.

Bergström J. Metazoan evolution around the Pre- cambrian–Cambrian transition // A.M. Simonetta, S. Conwey Morris, eds. The Early evolution of Metazoa and the significance of problematic taxa. (Proc. Int. Symp. Univ. Cameriono 27–31 March 1989). Cambridge Univ. Press, 1991. P. 23–34.

Brenchley P. J., Harper D.A.T. Ecosystems, environments and evolution. London, Chapman, Hall Publ. House, 1998. 403 pp.

A.Г. Пoнoмapeнкo

Bousfield E.L. A contribution to natural classificationofLowerandMiddleCambrianarthropods: food-gathering and feeding mechanisms // Amphipacifica. 1995. V. 2. № 1. P. 3–34.

Briggs D.E.G., Fortey R.A. The Early Radia-tion and Relationships of the Major Arthro-pod Groups // Science. 1989. V. 246. P. 241–243.

Budd G.E. Arthropod body-plan evolution in the Cambrian with an example from anomalocaridid muscle // Lethaia. 1998. V. 31. P. 197– 210.

Budd G. E. The morphology and phylogenetic significance of Kerygmachela kierkegaardi Budd (Buen Formation, Lower Cambrian, N. Greenland) // Trans. Roy. Soc. Edinburgh: Earth Sci. 1999 (for 1998). V. 89. P. 249–290.

Budd G. E. Ecology of Nontrilobite Arthropods and Lobopods in the Cambrian // The Ecology of the Cambrian Radiation. New York, Columbia Univ. Press, 2001 P. 173–199.

Butterfield N.J. Plankton ecology and the Proterozoic-Phanerozoic transition // Paleobiology, 1997, V. 23. № 2. P. 247–262.

Butterfield N.J. Ecology and Evolution of Cambrian Plankton // The Ecology of the Cambrian Radiation. New York, Columbia Univ. Press, 2001. P. 200–216.

Chen Jun-yuan, Vannier J., Huang Di-Ying. 2001. The origin of crustaceans: new evidence from the Early Cambrian of China // Proc. Roy. Soc. London. B. V. 268. P. 2181–2187.

Сhen Jun-yuan, Zhou Guiqing, Zhu MY, Yeh KY. The Chengjiang biota. A unique Window of the Cambrian explosion. Taichung, Nat. Mus. Nat. Sci. Taiwan, 1996. 222 pp.

Сhen Jun-yuan, Zhou Guiqing. Biology of the Chengjiang fauna // Bull. Nat. Mus. Nat. Sci. 1997. № 10. P. 11–103.

Conway Morris S. A new Cambrian lophophorate from the Burgess Shale of British Columbia // Palaeontology. 1976. V. 19. P. 30–34.

Conway Morris S. The community structure of the Middle Cambrian Phyllopod bed (Burgess Shale) // Palaeontology. 1986. V. 29. P. 423–467.

Delle Cave L., Simonetta A.M. Early Palaeozoic arthropods and problems of arthropod phylogeny: with some notes on taxa of doubtful affinities // The early evolution of Metazoic and the significance of peroblematic taxa. 1991. Cambridge Univ. Press. P. 189–244.

DzikJ.,KrumbiegelG.Theoldest«onychophoran» Xenusion: a link connected phyla // Lethaia. 1989. V. 22. P. 169–181.

Fedonkin M.A. Cold Water Cradle of Animal Life // Paleontological Journ. 1996. V. 30. № 6. P. 669–673.

Fryer G. Reflections on arthropod evolution // Biol. Journ. Linnean Soc. 1996. V. 58. P. 1–55.

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ЭКОСИСТЕМНЫЕ ПЕРЕСТРОЙКИ И ЭВОЛЮЦИЯ БИОСФЕРЫ. Выпуск 6.

МОСКВА ПИН РАН, 2004

Hou Xianguang, Bergström J. The Chengjang fauna – the oldest preserved animal community // The origin and Early Evolution of Metazoa. Paleontological Research. 2003. V. 7. № 1. P.55–70.

Hou Xianguang, Bergström J. Arthropods of the lower Cambrian Chehgjiang fauna, southwest China // Fossils & Strata. 1997. № 45. 116 pp.

Hou Xianguang, Bergström J., Ahlberg P. Anomalocaris and other large animals in the Lower Cambrian Chengjiang fauna of southwest China // GFF. V. 117. 1995. P. 163–183.

Hou Xianguang, Siveter D.J., Williams M. 1996. Appendages of the arthropod Kunmingella from the Early Cambrian of China: Its bearing on the systematic position of the Bradoriida and the fossil record of the Ostracoda // Phil. Trans. R. Soc. London. B. V. 351. P. 1131–1145.

LoganG.A.,HayesJ.M.,HieshiomaG.B.,Summons R.E. Terminal Proterozoic reorganization of biogeochemical cycles // Nature. 1995. V. 376. P. 53–56.

Manton S. M. The evolution of arthropodan locomotory mechanismus. Part. 2. General introduction in the locomotory mechanismus of theArthropoda // Zool. Journ. Linn. Soc. 1952. V. 42. P. 93–117.

McMenamin M.A.S. The Garden of Ediacara // Palaios. 1986. V. 1. P. 178–182.

Monte-Nájera, Hou Xianguang. 2000. Disparity, decimation and the Cambrian “explosion”: comparision of early Cambrian and Present faunal communities with emphasis on velvet worms (Onychophora) // Rev. Biol. Trop. V. 48. № 2. P. 333–351.

Müller K.J. Phosphatocopine ostracodes with preserved appendages from the Upper Cambrian of Sweden // Lethaia. 1979. V. 12. P. 1–27.

Müller K.J. Crustacea with preserved soft parts from the Upper Cambrian of Sweden // Lethaia. 1983. V. 16. P. 93–109.

MüllerK.J.,WaloszekD.Arthropodlarvaefromthe Upper Cambrian of Sweden // Trans. Roy. Soc. Edinburgh. Earth Sci. 1986. V. 77. P. 157–179.

Müller K.J., Waloszek D. Morphology, onthogeny and life habit of Agnostus pisiformis from the Upper Cambrian of Sweden // Fossils & Strata. 1987. № 19. P. 1–124.

Müller K.J., Waloszek D. Ein Blick durch das “Orsten” Fenster in die Arthropodenwelt vor 500 Millionen Jahren // Verhandl. Deutsch. Zool. Gesells. 1991. V. 84. S. 281–294.

Sharov A.G. Basic Arthropodan Stock. London, Pergamon Press, 1966. 271 pp.

Seilacher A. Vendobiontia als Alternative zu Vielzellern // 34 Phylogenetisches Symposium in Hamburg. Mitt. Hamburg. zool. Mus. Inst. 1992. B. 89. Ergebnisband 11. S. 9–20.

Seilacher A. 1997. Great Revolution in the History of Life. Journ. Nat. Hist. Mus,, Inst., Chiba. V. 4. № 2. P. 87–91.

Seilacher A. The meaning of the the Cambrian Explosion // Bull. Nat. Mus. Nat. Sci. 1997. № 10. P. 1–9.

Seilacher A., Grazhdankin D, Legouta A. Ediacara biota: The dawn of animal life in the shadow of giant protists // The origin and Early Evolution of Metazoa. Paleontological Research. 2003. V. 7. № 1. P. 43–54.

Valerntine J.W., Collins A.G. The significance of moulting in Ecdysozoan evolution // Evol., Development. 2000. V. 2. № 3. P. 152–156.

Vidal G., Knoll A.H. Radiations and extinctions of plankton in the late Proterozoic and early Cambrian // Nature. 1982. V. 297. № 5861. P. 57–60.

Walossek D. The “Orsten” window – a threedimensionally preserved Upper Cambrian meiofauna and its Contribution to our understanding of the evolution of Arthropoda // The origin and Early Evolution of Metazoa. Paleontological Research. 2003. V.7. № 1. P. 71-88.

Wills M.A. How good is the fossil record of arthropods? An assessment using the stratigraphic congruence of cladograms // Geol. Journ. 2001. V. 36. P. 187–210.

Wray G.A., Levontin J. S., Shapiro L.H. Molecular evidence for deep Pre-Cambrian divergenses among metazoan phyla // Science. 1996. 274. 568–573.

Zherikhin V.V. Phylogenesis and Phylocoenesis // Evolution of the Biosphere. Rec. Queen Victoria Mus. Art. Gallery Launceston. 1997. № 104. P. 57–63

Zhuravlev A.Yu. Biotic Diversity and Structure During the neoproterozoic-Ordovician Tranzition // The Ecology of the Cambrian Radiation. New York, Columbia Univ. Press, 2001. P. 173–199.

Zhuravlev A.Yu., Riding R., eds. The Ecology of the Cambrian Radiation. Columbia Univ. Press, NY. 2001. 525 pp.

Ecological consequence of arthropodisation

A.G. Ponomarenko

“Cambrian explosion” of biological diversity is considered as a result of essential enlarging of part of hydrosphaera for animal colonisation by the arthropod filtration. Arthropodisation is not only a process of early evolution of this taxon but a chain process of changing all hydrosphaera.

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