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1988 | 39 | 5-6 |

Tytuł artykułu

Evolution and selective advantage of circadian rhythms

Autorzy

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

Słowa kluczowe

Wydawca

-

Rocznik

Tom

39

Numer

5-6

Opis fizyczny

p.345-356,fig.,ref.

Twórcy

autor
  • Institut fur Biologie 1, D7400 Tubingen, Germany

Bibliografia

  • 1. Aschoff, J., Saint Paul, U. v., Wever, R. (1971) Die Lebensdauer von Fliegen unter dem Einfluss von Zeitverschiebungen. Naturwiss. 50. 574.
  • 2. Bargiello, T.A., Saez, L., Baylies, M.K., Gasic, G., Young, M.W., Spray, D.C. (1987) The Drosophila clock gene per affects intercellular junctional communication. Nature 328. 686-091.
  • 3. Bünning, E. (1932) Uber die Erblichkeit der Tagesperiodizität bei den Phoseolus-Blättern. Jb. wiss. Botanik 77. 283-320.
  • 4. Bünning, E. (1936) Die endogene Tagerhythmik als Grundlage der photoperiodischen Reaktion. Bsr. Dtsch. Bot. Ges. 54. 590-607.
  • 5. Bünning, E. (1906) Evolution der circardian Rhythmik und ihrer Nutzung zur Tageslängenmessung, Naturwiss 73. 70-77.
  • 6. Bünning, E., Moser, I. (1969) Interference of moon light with, the photdperiodic measurement of time by plants, and their adaptive reaffirm. Proc. Nat. Acad. Science (USA) 62. 1018-1022.
  • 7. Darwin, C.R., Darwin, F. (1880). The power oi movement in plants. J, Murray, London.
  • 8. Dowse, H.B., Hall, J.C., Ringo, J.M. (1987) Circadian and ultfadian rhythms in period mutants of Drosophila melanggaster. Beh. Genetics 17. 19-35.
  • 9. Enright, J.T. (1982) Sleep movements of leaves: In defense of Darwin's interpretation. Oecologia 54. 253-259.
  • 10. Engeimann, Förster, Smietanko (unpublished).
  • 11. Engelmann, W., Maclk, J. (1978) Different oscillators control the circadian rhythm of eclosion and activity in Drosophila. J. comp. Physiol. 127. 229-237.
  • 12. Förster, Engelmann (unpublished)
  • 13. Grell, K. G, (1985) Der Formwechsel des plasmodialen Rhizopoden Thalassomyxa australis. Protistol. 21. 215-233.
  • 14. Grell, K. (1987) Der Formwechsel von Thalassomyxa australis (Promycetozoidae). Institut für den wissenschaftlichen Film, Göttingen, Film number C1631.
  • 15. Halaris, A. (1987) Neuropsychiatric disorders and disturbances in the dreardian system oi man. Elsfevief.
  • 16. Helfrich, C., Engelmann, W. (111987) Evidences for cirdadian rhythmicity in the per⁰ mutant of Drosophila melanogaster. Z. Naturforsohg: (in press).
  • 17. Hillman, W.S. (1956) Injury of tomato plants by continuous light and unfavorable photoperiodic cycles. Amer. J. Bot. 48. 89-96.
  • 18. Karve, A.D., Deshmukh, A.K., Bhalerao, A.C., Deshmukh, V.A. (1984| Photomorpho-genetic regulation of reproductive development In groundnut and the significance of nyctinastic leaf movements. New Phytol. 96. 535-543.
  • 19. Kippert, F. (1987) Endocy t ob i otic coordination, intracellular calcium signalling and. - the origin of endogenous rhythms. Endocytobiology III, Ann. N.Y. Acad. Science 503. 476-495.
  • 20. Konopka, R.J. (1979) Genetic dissection of the Drosophila circardian system. Fed.. Prac. 38. 2602-2605.
  • 21. Lloyd, D., Edwards, S.W., Fry, J.C. (1982) Temperature-compensated oscillations ins respiration and cellular protein content in synchronous cultures of Acanthamoeba. castellani. Proc. Nat. Acad. Science (USA) 79. 3785-3788.
  • 22. Loros, J.J., Feldman, J.F. (1986) Loss of temperature compensation of circadian period length in the frq-9 mutant of Neurospora crassa. J. Biol. Rhythms 1. 187-198.
  • 23. Mayer, W. (1986) Besonderheiten der circadianen Rhythmik bei Pflanzen verschiedener geografischer Breiten. Planta 58. 199-219.
  • 24. McClure, F.A. (1966) The Bamboos, Harvard Univ. Press.
  • 25. Mitsui, A., Kumazawa, S., Takahashi, A., Ikemoto, H., Cao, S., Arai, T. (1936) Strategy by which nitrogen-fixing unicellular cyanobacteria grow photoautotrophically Nat. 323. 72О-722.
  • 26. Mitsui, A, Takahashi, A., Arai, T. (1987) Growth synchrony and cellular parameters of the unicellular nitrogen-fixing marine cyanobacterium, Synechococcus sp. strain Miami BG 043511 under continuous illumination. Physiologia Plant. 69. 1-8.
  • 27. Nanjundiah, V. (1987) personal communication.
  • 28. Neumann, D. (1981) Tidal and lunar rhythms. In: Handbook of Behavioural Neurobiology 4. 351-380. Springer, Berlin-Heidelberg- New York.
  • 29. Neumann, D. (1933) Die zeitliche Programmierung von Tieren auf periodische Umweltbedingungen. Rhein. Westf. Akad. Wiss. Vortr. N324, pg. 31-68, Westd. Verlag.
  • 30. Pittendrigh, C.S., Minis, D.H. (1972) Circadian systems: Longevity as a function of circadian resonance- in Drosophila melanogastef. Proc, Nat. Acad. Science (USA)69. 1537-1539.
  • 31. Richter, P.H., Ross, J. (1981) Concentration oscillations and efficiency: glycolysis. Science 211. 715-717.
  • 32. Rosbash, D., Hall, J.C. (1985) Biological clock in Ąrosophila: finding the molecules that make them tick. Cell 43. 3-4.
  • 33. Schweiger, H-G. (1985) Auf der Suche nach dem molekularen Mechanismus der circadianen Uhr. Mannheimer Forum 84/85. 115-172. Boehringer, Mannheim.
  • 34. Silyn-Roberts, H., Engelmann, W., (1906) Thalassomyxa australis a model organism for the evolution of circadian rhythms? Endocyt. C. Res. 3. 239-242.
  • 35. Silyn-Roberts, H., Engplmann, W., Grell, K.G. (1986) Thalassomyxa australis rhythmicity. I. Temperature dependence. J. interdisc. Cycle Res. 17. 1811-187.
  • 36. Smietanko (unpublishied)
  • 37. Went, F.W. (1959) The periodic aspect of photoperiodism and thermoperiodicity.. ln:Photoperiodism and related phenomena in plants and animals. Ed. R.B. Withrow,, pg. 551-564. American Ass. Adv, Science Washington D.C.
  • 38. Winfree, A.T. (1970) An integrated view of the resetting of circadian clock. J. Theor. Biol. 28. 327-374.
  • 39. Winfree, A.T. (1930) The Geometry ot Biological Time. pg. 383-394, Springer, New York-Heidelberg-Berlin.
  • 40. Winfree, A.T. (1986) The Timing oi Biological Clocks, pg. 160-165, Sc. Am. Books Inc., New York.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-adadb5f9-3890-44f4-8189-148fc74e357c
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