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Formation of membrane-bounded secretory granules in the midgut epithelium of a termite, Cubitermes severus, and a possible intercellular route of discharge

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Summary

Mature columnar cells of the midgut of Cubitermes contain a prominent secretion product observed at light- and electron-microscopic levels. At the ultrastructural level the product is resolved as an electron dense material contained in vesicles up to 1 μm diameter that accumulate in the apical cytoplasm. The vesicles are composite, apparently formed by coalescence of at least two types of precursor vesicle both of which originate from the Golgi apparatus. Discharge of the product takes place by exocytosis into intercellular space at or in the vicinity of the apical septate junction complex. Augmentation of apical surface area by microvilli is less prominent in Cubitermes than in other termites for which data are available. This and other evidence suggests that absorptive functions are reduced in the midgut of this insect.

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References

  • Andries JC (1972) Génèse intraépithéliale des microvillosités de l'épithélium mésentérique de la larve d'Aeschna cyanea. J Microsc 15:181–204

    Google Scholar 

  • Andries J-C (1976) Variations ultrastructurales au sein des cellules épithéliales mésentériques d'Aeschna cyanea (Insecte, Odonate) en fonction de la prise de nourriture. Cytobiologie 13:451–468

    Google Scholar 

  • Becker B (1977) Licht und elektronenmikroskopische Untersuchungen zur Bildung peritrophischer Membranen bei der Imago von Calliphora erythrocephala Meig. (Insecta, Diptera). Zoomorphologie 87:247–262

    Google Scholar 

  • Berridge MJ (1970) A structural analysis of intestinal absorption. Symp R Ent Soc. Lond. 5:135–151

    Google Scholar 

  • Bertram DS, Bird RG (1961) Studies on the mosquito-borne viruses in their vectors.1. The normal fine structure of the midgut epithelium of the adult female Aedes aegypti (L.) and the functional significane of its modification following a blood meal. Trans Roy Soc Trop Med Hyg 55:404–423

    Google Scholar 

  • Bignell DE, Oskarsson H, Anderson JM (1980a) Distribution and abundance of bacteria in the gut of a soil-feeding termite Procubitermes aburiensis (Termitidae, Termitinae). J Gen Microbiol 117:393–403

    Google Scholar 

  • Bignell DE, Oskarsson H, Anderson JM (1980b) Colonization of the epithelial face of the peritrophic membrane and the ectoperitrophic space by actinomycetes in a soil-feeding termite. J Invertebr Pathol 36:426–428

    Google Scholar 

  • Brunings EA, de Priester W (1971) Effect of mode of fixation on formation of extrusions in the midgut epithelium of Calliphora. Cytobiologie 4:487–491

    Google Scholar 

  • Dadd RH (1970) Digestion in insects. In: Florkin M, Scheer BT (eds) Chemical zoology. Vol 5. Academic Press, New York, pp 117–145

    Google Scholar 

  • Day MF, Powning RF (1949) A study of the processes of digestion in certain insects. Aust J Scient Res (B) 2:175–215

    Google Scholar 

  • Hecker H (1977) Structure and function of midgut epithelial cells in culicidae mosquitoes (Insecta, Diptera). Cell Tissue Res 184:321–341

    Google Scholar 

  • Hecker H, Brun R, Reinhardt C, Burri PH (1974) Morphometric analysis of the midgut of female Aedes aegypti L. (Insecta, Diptera) under various physiological conditions. Cell Tissue Res 152:31–49

    Google Scholar 

  • Heinrich D, Ziebe E (1973) Zur Feinstruktur der Mitteldarmzellen von Locusta migratoria in verschiedenen Phasen der Verdauung. Cytobiologie 7:315–326

    Google Scholar 

  • Houk EJ (1977) Midgut ultrastructure of Culex tarsalis (Diptera, Culicidae) before and after a bloodmeal. Tissue and Cell 9: 103–118

    Google Scholar 

  • Humbert W (1979) The midgut of Tomocerus minor Lubbock (Insecta, Collembola): ultrastructure, cytochemistry, ageing and renewal during a moulting cycle. Cell Tissue Res 196:39–57

    Google Scholar 

  • Khan MR, Ford JB (1962) Studies on digestive enzyme production and its relationship to the cytology of the midgut epithelium in Dysdercus fasciatus Sign. (Hemiptera, Pyrrhocoridae). J Insect Physiol 8:597–608

    Google Scholar 

  • Lehane MJ (1976) Digestive enzyme secretion in Stomoxys calcitrans (Diptera, Muscidae). Cell Tissue Res 170:275–287

    Google Scholar 

  • Noirot-Timothée C, Noirot C (1966) Attache de microtubules sur la membrane cellulaire dans la tube digestif des termites. J Microsc 5:715–724

    Google Scholar 

  • Noirot C, Noirot-Timothée C (1969) The digestive system. In: Krishna K, Weesner M (eds) Biology of termites. Vol 1, Academic Press, New York, pp 49–88

    Google Scholar 

  • Noirot C, Noirot-Timothée C (1972) Structure fine de la bordure en brosse de l'intestin moyen chez les insectes. J Micros 13:85–96

    Google Scholar 

  • Noirot-Timothée C, Noirot C (1980) Septate and scalariform junctions in arthropods. Int Rev Cytol 63:97–140

    Google Scholar 

  • Oschman JL, Wall BJ (1972) Calcium binding to intestinal membranes. J Cell Biol 55:58–73

    Google Scholar 

  • Palade G (1975) Intracellular aspects of the process of protein synthesis. Science 189:347–348

    CAS  PubMed  Google Scholar 

  • Peters W, Heitmann S, d'Haese J (1979) Formation and fine structure of peritrophic membranes in the earwig, Forficula auricularia (Dermaptera: Forficulidae). Entomol Gen 5:241–254

    Google Scholar 

  • Priester de W (1971) Ultrastructure of the midgut epithelial cells in the fly Calliphora erythrocephala. J Ultrastruct Res 36:783–805

    Google Scholar 

  • Richards AG, Richards PA (1977) The peritrophic membranes of insects. Ann Rev Entomol 22:219–240

    Google Scholar 

  • Rudin W, Hecker H (1979) Functional morphology of the midgut of Aedes aegypti L. (Insecta, Diptera) during blood digestion. Cell Tissue Res 200:193–203

    Google Scholar 

  • Smith DS (dy1968) Insect cells, their structure and function. Oliver and Boyd, Edinburgh, 372 p

  • Smith DS, Compher K, Janners M, Lipton C, Wittle LW (1969) Cellular organization and ferritin uptake in the mid-gut epithelium of a moth, Ephestia kühniella. J Morphol 127:41–72

    Google Scholar 

  • Toner PG, Carr KE (1971) Cell structure. Churchill Livingstone, London, 256 p

    Google Scholar 

  • Treherne JE (1967) Gut absorption. Ann Rev Entomol 12:43–58

    Google Scholar 

  • Wigglesworth VB (1965) The principles of insect physiology. Methuen, London, pp 741

    Google Scholar 

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Bignell, D.E., Oskarsson, H. & Anderson, J.M. Formation of membrane-bounded secretory granules in the midgut epithelium of a termite, Cubitermes severus, and a possible intercellular route of discharge. Cell Tissue Res. 222, 187–200 (1982). https://doi.org/10.1007/BF00218299

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