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Zur Glykogenspeicherung wÄhrend der Oogenese und ihrer vorzeitigen Auslösung durch Blockierung der RNS-Versorgung (Untersuchungen anMusca domestica L.)

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Literatur

  • Barber, A. A., W. W. Harris, andG. M. Padilla: Studies on native glycogen isolated from synchronizedTetrahymena pyriformis (HSM). J. Cell Biol.27, 281–292 (1965).

    Google Scholar 

  • Bielańska-Osuchowska, Z.: Histochemical studies on insect telotrophic ovaries. Zool. Polon.10, 131–163 (1959/60).

    Google Scholar 

  • —: Cytochemical investigations of the embryonic development of the coelenterateCordylophora lacustris All. I. Oogenesis and vitellogenesis. Folia morph. (Warszawa)12, (20), 11–18 (1961).

    Google Scholar 

  • Bier, K.: über Phasen gesteigerter Protein- und Kohlehydrateinlagerung und die Fettverteilung im Hymenopterenovar. Zool. Anz., Suppl.18, 422–429 (1955).

    Google Scholar 

  • —: Autoradiographische Untersuchungen über die Leistungen des Follikelepithels und der NÄhrzellen bei der Dotterbildung und Eiwei\synthese im Fliegenovar. Wilhelm Roux' Arch. Entwickl.-Mech. Org.154, 552–575 (1963a).

    Google Scholar 

  • —: Synthese, interzellulÄrer Transport und Abbau von RibonukleinsÄure im Ovar der StubenfliegeMusca domestica. J. Cell Biol.16, 436–440 (1963b).

    Google Scholar 

  • —: über den Transport zelleigener Makromoleküle durch die Kernmembran. I. RNS-Synthese und RNS-Transport unter Sauerstoffmangel und bei herabgesetzter Temperatur. Chromosoma (Berl.)16, 58–69 (1965).

    Google Scholar 

  • Bonhag, Ph. F.: The origin and distribution of periodic acid-Schiff-positive substances in the oocyte of the earwig,Anisolabis maritima (Géné). J. Morph.99, 433–464 (1956).

    Google Scholar 

  • —: Ovarian structure and vitellogenesis in insects. Ann. Rev. Ent.3, 137–160 (1958).

    Google Scholar 

  • Brachet, J.: Recherches sur les interactions biochimiques entre le noyau et le cytoplasme chez les organismes micellulaires. Biochim. biophys. Acta (Amst.)18, 247–268 (1955).

    Google Scholar 

  • —: The biochemistry of development. New York: Pergamon Press 1960.

    Google Scholar 

  • Brown, E. H., andR. C. King: Studies on the events resulting in the formation of an egg chamber inDrosophila melanogaster. Growth28, 41–81 (1964).

    Google Scholar 

  • Butterworth, F. M., D. Bodenstein, andR. C. King: Adipose tissue ofDrosophila melanogaster. I. An experimental study of larval fat body. J. exp. Zool.158, 141–154 (1965).

    Google Scholar 

  • Chefurka, W.: Oxidative metabolism of carbohydrates in insects. I. Glycolysis in the houseflyMusca domestica L. Enzymologica17, 73–89 (1954).

    Google Scholar 

  • —: Glucose metabolism in insects. IV. Int. Congr. Biochem., vol. XII, Biochemistry of insects, p. 115–137 (1959).

    Google Scholar 

  • —: Some comparative aspects of the metabolism of carbohydrates in insects. Ann. Rev. Ent.10, 345–382 (1965).

    Google Scholar 

  • Cossel, L.: Die menschliche Leber im Elektronenmikroskop. Untersuchungen an Leberpunktaten. Jena: Gustav Fischer 1964.

    Google Scholar 

  • Cowden, R. R.: A cytochemical study of gonophore and oocyte development inPennaria tiarella. Acta Embryol. Morph. exp. (Palermo)7, 167–179 (1964).

    Google Scholar 

  • Davey, K. G.: Reproduction in the insects. Edinburgh and London: Oliver & Boyd 1965.

    Google Scholar 

  • Eakin, R. M.: Actinomycin D inhibition of cell differentiation in the amphibian sucker. Z. Zellforsch.63, 81–96 (1964).

    Google Scholar 

  • Engels, W.: Der zeitliche Ablauf von Protein- und Kohlenhydratsynthesen in der Oogenese beiApis mellifica L. Zool. Anz., Suppl.29, 243–251 (1966).

    Google Scholar 

  • —, u.W. Drescher: Einbau von H3-D-Glucose wÄhrend der Oogenese beiApis mellifica L. Experientia (Basel)20, 445–447 (1964).

    Google Scholar 

  • Flanders, S. E.: Ovigenic-ovisorptive cycle in the economy of the honey bee. Sci. Monthl.85, 176–177 (1957).

    Google Scholar 

  • Geuskens, M.: Etude autoradiographique et ultrastructurale de l'action d'actinomycine D sur les oocytes d'astérie. Exp. Cell Res.39, 400–412 (1965).

    Google Scholar 

  • Gloor, H.: PhÄnokopie-Versuche mit Äther anDrosophila. Rev. suisse Zool.54, 637–712 (1947).

    Google Scholar 

  • Handel, E. van, andA. O. Lea: Medial neurosecretory cells as regulators of glycogen and triglyceride synthesis. Science149, 298–300 (1965).

    Google Scholar 

  • Ishizaki, H.: Electron microscopic study of changes in the subcellular organization during metamorphosis of the fat-body cell ofPhilosamia cynthia ricini (Lepidoptera). J. Ins. Physiol.11, 845–855 (1965).

    Google Scholar 

  • Jollie, W. P.: Fine structural changes in the junctional zone of the rat placenta with increasing gestational age. J. Ultrastruct. Res.12, 420–438 (1965).

    Google Scholar 

  • Karlson, P.: Kurzes Lehrbuch der Biochemie, 4. Aufl. Stuttgart: Georg Thieme 1964.

    Google Scholar 

  • King, R. C., andS. K. Aggarwal: Oogenesis inHyalophora cecropia. Growth29, 17–83 (1965).

    Google Scholar 

  • —, andR. G. Burnett: Autoradiographic study of uptake of tritiated glycine, thymidine, and uridine by fruit fly ovaries. Science129, 1674–1675 (1959).

    Google Scholar 

  • Korfsmeier, K. H.: Zur Genese des Dottersystems in der Oocyte vonBrachydanio rerio. Autoradiographische Untersuchungen. Z. Zellforsch.71, 283–296 (1966).

    Google Scholar 

  • Larner, J.: Branching enzyme. In:W. J. Whelan andM. P. Cameron (ed.), Control of glycogen metabolism, p. 87–93. London: Churchill 1964.

    Google Scholar 

  • Leloir, L. F.: The biosynthesis of glycogen, starch, and other polysaccharides. In: The Harvey lectures, Series 56 (1961).

  • —, Role of uridine diphosphate glucose in the synthesis of glycogen. In:W. J. Whelan andM. P. Cameron (ed.), Control of glycogen metabolism, p. 68–86. London: Churchill 1964.

    Google Scholar 

  • Locke, M., andJ. V. Coccins: The structure and formation of protein granules in the fat body of an insect. J. Cell Biol.26, 857–884 (1965).

    Google Scholar 

  • LŪsis, O.: The histology and histochemistry of development and resorption in the terminal oocyte of the desert locust,Schistocerca gregaria. Quart. J. micr. Sci.104, 57–68 (1963).

    Google Scholar 

  • Manners, D. J.: In:W. J. Whelan, andM. P. Cameron (ed.), Control of glycogen metabolism, cit. p. 414. London: Churchill 1964.

    Google Scholar 

  • Meyer, G. F.: InterzellulÄre Brücken (Fusome) im Hoden und im Ei-NÄhrzellverband vonDrosophila melanogaster. Z. Zellforsch.54, 238–251 (1961).

    Google Scholar 

  • Müller, W., u.H.-Chr. Spatz: über die Struktur des Actinomycin-Desoxyguauin-Komplexes. Z. Naturforsch.20b, 842–853 (1965).

    Google Scholar 

  • Nair, K. S. S., andJ. C. George: A histological and histochemical study of the larval fat body ofAnthrenus vorax Waterhouse (Dermestidae, Coleoptera). J. Ins. Physiol.10, 509–517 (1964).

    Google Scholar 

  • Odhiambo, T. R.: Metabolic effects of the corpus allatum hormone in the desert locust,Schistocerca gregaria. Nature (Lond.)207, 1314–1315 (1965).

    Google Scholar 

  • Palm, N. B.: Normal and pathological histology of the ovaries inBombus Latr. (Hymenop.). Opusc. Ent., Suppl.7, 1–101 (1948).

    Google Scholar 

  • Ramamurty, P. S.: Zellphysiologische und morphologische Untersuchungen zur Oogenese vonPanorpa communis L. Inaugural-Dissertation, Münster 1964.

  • Raven, C. P.: Oogenesis: The storage of developmental information. Oxford: Pergamon Press 1961.

    Google Scholar 

  • Reich, E., andI. H. Goldberg: Actinomycin and nucleic acid function. In:J. N. Davidson u.W. E. Cohn (ed.), Progress in nucleic acid research and molecular biology, vol. 3, p. 183–234. New York-London: Academic Press1964.

    Google Scholar 

  • Ries, E.: Die Prozesse der Eibildung und des Eiwachstums bei Pediculiden und Mallophagen. Z. Zellforsch.16, 314–388 (1932).

    Google Scholar 

  • Seshachar, B. R., andS. Bagga: A cytochemical study of oogenesis in the dragonflyPantala flavescens (Fabricius). Growth27, 225–246 (1963).

    Google Scholar 

  • Sirlin, J. L., andJ. Jacob: Cell function in the ovary ofDrosophila. II. Behaviour of RNA. Exp. Cell Res.20, 283–293 (1960).

    Google Scholar 

  • Srivastava, M. D. L.: Cytoplasmic inclusions in oogenesis. In: G. H.Bourne and J. F.Danielli (ed.), Int. Rev. Cytol.18, 73–98 (1965).

  • Stenram, U.: Radioautographic RNA and protein labeling and the nucleolar volume in rats following administration of moderate doses of actinomycin D. Exp. Cell Res.36, 242–255 (1964).

    Google Scholar 

  • —: Electron-microscopic study on liver cells of rats treated with actinomycin D. Z. Zellforsch.65, 211–219 (1965).

    Google Scholar 

  • —,J. VannfÄlt, andR. Willén: Cytological, radioautographic and ultrastructural studies on the effect of actinomycin on the liver of renourished rats. Z. Zellforsch.66, 854–866 (1965).

    Google Scholar 

  • Stetten, D., andM. R. Stetten: Glycogen metabolism. Physiol. Rev.40, 505–537 (1960).

    Google Scholar 

  • Telfer, W. H.: The mechanism and control of yolk formation. Ann. Rev. Ent.10, 161–184 (1965).

    Google Scholar 

  • Themann, H.: Elektronenoptische Untersuchungen über das Glykogen im Zellstoffwechsel. Veröff. a.d. morph. Pathol. Bd. 66. Stuttgart: Gustav Fischer 1963.

    Google Scholar 

  • Urich, K.: Mitteldarmdrüsen und Insektenfettkörper als Zentralorgane des Stoffwechsels. Ergebn. Biol.24, 155–190 (1961).

    Google Scholar 

  • Vardanis, A.: Glycogen synthesis in insect fat body. Biochim. biophys. Acta (Amst.)73, 565–573 (1963).

    Google Scholar 

  • Walker, P. A.: The structure of the fat body in normal and starved cockroaches as seen with the electron microscope. J. Ins. Physiol.11, 1625–1631 (1965).

    Google Scholar 

  • Węglarska, B.: Oogenesis in the ooviviparous scale insect,Quadraspidiotus ostreaeformis (Curt.), (Homoptera, Coccidae, Aspidiotini). Part. II. Histochemical investigations. Zool. Polon.12, 41–68 (1962).

    Google Scholar 

  • Yoshida, I.: Glycogen formation in the cytotrophoblast of human plazenta in early pregnancy, as revealed by electron microscopy. Exp. Cell Res.34, 293–304 (1964).

    Google Scholar 

  • ZÄhner, H.: Biologie der Antibiotica. Berlin-Heidelberg-New York: Springer 1965.

    Google Scholar 

  • Zalokar, M.: Etudes de la formation de l'acide ribonucléique et des protéines chez les insectes. Rev. suisse Zool.72, 241–261 (1965).

    Google Scholar 

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Engels, W., Bier, K. Zur Glykogenspeicherung wÄhrend der Oogenese und ihrer vorzeitigen Auslösung durch Blockierung der RNS-Versorgung (Untersuchungen anMusca domestica L.). W. Roux' Archiv f. Entwicklungsmechanik 158, 64–88 (1967). https://doi.org/10.1007/BF00713792

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