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A comparative electron microscope study of visceral muscle fibers in Cambarus, Drosophila and Lumbricus

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Summary

The arrangement of myofilaments in the striated visceral muscle fibers of two arthropods (crayfish and fruitfly) and in the unstriated visceral fibers of one annelid (earthworm) was studied comparatively. Transverse sections through the A bands of arthropod visceral fibers indicate that each thick myofilament is surrounded by approximately 12 thin filaments. The myofilaments are less organized in the visceral fibers of the earthworm than in muscle fibers of the crayfish and fruitfly. The thick myofilaments of the earthworm are composed of subunits, 20–30 Å in diameter. The presence of two distinct sets of myofilaments in these slowly contracting striated and unstriated visceral muscle fibers suggests that contraction is accomplished via a sliding filament mechanism.

In crayfish visceral fibers the sarcolemma invaginates at irregular intervals to form a long and unbranched tubular system at any level in the sarcomere. Dyads formed by the apposition of T and SR membranes are observed frequently. The distribution of the T and SR systems in the visceral fibers of the fruitfly and the earthworm is markedly reduced and dyads are infrequently observed. The reduced T and SR systems may be related to the slow contraction of these fibers. Transport of specific substances across the sarcolemma could initiate contraction or relaxation in these fibers.

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References

  • Fawcett, D. W., and J. P. Revel: The sarcoplasmic reticulum of a fast-acting fish muscle. J. biophys. biochem. Cytol. 10 (Suppl.), 89–110 (1961).

    Google Scholar 

  • Franzini-Armstrong, C., and K. R. Porter: Sarcolemmal invaginations constituting the T system in fish muscle fibers. J. Cell Biol. 22, 675–696 (1964).

    Google Scholar 

  • Hagopian, M.: The myofilament arrangement in the femoral muscle of the cockroach. Leucophaea maderae Fabricius. J. Cell Biol. 28, 545–562 (1966).

    Google Scholar 

  • Hanson, J., and J. Lowy: Structure and function of the contractile apparatus in the muscles of invertebrate animals. In: The Structure and Function of Muscle (ed. G. H. Bourne), vol. 1, p. 265–335. New York and London: Academic Press 1960.

    Google Scholar 

  • —: The structure of the muscle fibers in the translucent part of the adductor of the oyster Crossostrea angulata. Proc. roy. Soc. B 184, 173–193 (1961).

    Google Scholar 

  • Hasselbach, W.: Relaxing factors and the relaxation of muscle. Progr. biophys. molec. Biol. 14, 167–222 (1964).

    Google Scholar 

  • Huxley, A. F.: Muscle structure and theories of contraction. Progr. Biophys. 7, 255–318 (1957).

    Google Scholar 

  • —: The links between excitation and contraction. Proc. roy. Soc. 160, 486–488 (1964).

    Google Scholar 

  • -Huxley A. F., and L. D. Peachey: Local activation of crab muscle. J. Cell Biol. 23, 107a (1964).

  • Huxley, H. E.: Muscle cells. In: The cell (ed. J. Brachet and A. E. Mirsky), vol. 4, p. 364–481. New York and London: Academic Press 1960.

    Google Scholar 

  • —: The fine structure of striated muscle and its functional significance. The Harvey Lectures, Ser. 60. New York and London: Academic Press 1966.

    Google Scholar 

  • —, and J. Hanson: Preliminary observations on the structure of insect flight muscle. In: Electron microscopy (Proc. Stockholm Conference), p. 202–204. Stockholm: Almquist & Wikcell 1957.

    Google Scholar 

  • —, and J. Hanson: The molecular basis of contraction in cross-striated muscles. In: The Structure and Function of Muscle (ed. G. H. Bourne), vol. 1, p. 183–227. New York and London: Academic Press 1960.

    Google Scholar 

  • Mcrae, E. K.: Observations on the fine structure of pharyngeal muscle in the planarian, Dugesia tigrina. J. Cell Biol. 18, 651–662 (1963).

    Google Scholar 

  • Peachey, L. E.: The sarcoplasmic reticulum and transverse tubules of the frog's sartorius. J. Cell Biol. 25, 209–231 (1965).

    Google Scholar 

  • —, and A. F. Huxley: Structural identification of twitch and slow striated muscle fibers in the frog. J. Cell Biol. 13, 177–180 (1962).

    Google Scholar 

  • —, and K. R. Porter: Intracellular impulse conduction in muscle cells. Science 129, 721–722 (1959).

    Google Scholar 

  • Porter, K. R.: The sarcoplasmic reticulum. Its recent history and present status. J. biophys. biochem. Cytol. 10, 219–226 (1961).

    Google Scholar 

  • Revel, J. P.: The sarcoplasmic reticulum of the bat cricothyroid muscle. J. Cell Biol. 12, 571–588 (1962).

    Google Scholar 

  • Reynolds, E. S.: The use of lead citrate at high pH as an electron-opaque stain in electron microscopy. J. Cell Biol. 17, 208–212 (1963).

    Google Scholar 

  • Rosenbluth, J.: Ultrastructural organization of obliquely striated muscle fibers in Ascaris lumbricoides. J. Cell Biol. 25, 495–515 (1965).

    Google Scholar 

  • Smith, D. S.: The structure of insect fibrillar flight muscle. J. biophys. biochem. Cytol. 10 (Suppl.), 123–158 (1961a).

    Google Scholar 

  • —: The organization of the flight muscle in a dragonfly, Aeshna sp (Odonata). J. biophys. biochem. Cytol. 11, 119–145 (1961b).

    Google Scholar 

  • Smith, D. S.: The organization of flight muscle in an aphid, Megoura viciae (Homoptera). With a discussion on the structure of synchronous and asynchronous striated muscle fibers. J. Cell Biol. 27, 379–393 (1965).

    Google Scholar 

  • —: The organization of flight muscle fibers in the Odonata. J. Cell Biol. 28, 109–126 (1966a).

    Google Scholar 

  • —: The structure of intersegmental muscle fibers in an insect, Periplaneta americana L. J. Cell Biol. 29, 449–159 (1966b).

    Google Scholar 

  • —, B. L. Gupta, and U. Smith: The organization and myofilament array of insect visceral muscles. J. Cell Sci. 1, 49–57 (1966).

    Google Scholar 

  • Voelz, H. G., and M. Dworkin: Fine structure of Mysococous xanthus during morphogenesis. J. Bact. 84, 943–952 (1962).

    Google Scholar 

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This study was supported by a training grant GM-00582-06 from the U.S. Public Health Service.

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Anderson, W.A., Ellis, R.A. A comparative electron microscope study of visceral muscle fibers in Cambarus, Drosophila and Lumbricus . Zeitschrift für Zellforschung 79, 581–591 (1967). https://doi.org/10.1007/BF00336314

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