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Degenerative regression of the digestive tract in the colonial ascidian Botryllus schlossen (Pallas)

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Summary

Degenerative changes in the digestive tract of zooids of Botryllus schlosseri were studied by light and electron microscopy. Three main processes occurred in the tissues: contraction, involution and phagocytosis. The contraction of epidermis and peribranchial epithelium in which cytoplasmic microfilaments probably participate, seemed to have a special role in compressing the underlying organs. During contraction most of the body cavities collapsed, the branchial walls disintegrated and the fragments were rapidly taken up by large phagocytes. The gut epithelium retained its apparent continuity longer, though isolated phagocytes infiltrated it to eliminate single cells. Cell degeneration came about chiefly either through swelling and lysis of cells or through loss of water and condensation of cytoplasm and nucleus.

The fate of all regressed tissues was to be engulfed and digested by wandering phagocytes. However, it was also observed that numerous cells of different epithelia could act as fixed phagocytes by engulfing cell debris and entire cells into heterophagic vacuoles.

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References

  • Beaulaton J, Lockshin RA (1982) The relation of programmed cell death to development and reproduction: comparative studies and an attempt at classification. Int Rev Cytol 79:215–235

    Google Scholar 

  • Berrill NJ (1947) The developmental cycle of Botrylloides. Q J Micr Sci 88:393–407

    Google Scholar 

  • Berrill NJ (1951) Regeneration and budding in tunicates. Biol Rev 26:456–475

    Google Scholar 

  • Bloodgood RA (1974) Resorption of organelles containing microtubules. Cytobios 9:143–161

    Google Scholar 

  • Burighel P (1970) Sviluppo edifferenziamento del tubo digerente nel blastozooide dell'ascidia coloniale Botryllus schlosseri (Pallas). Boll Zool 37:177–192

    Google Scholar 

  • Burighel P, Milanesi C (1973) Fine structure of the gastric epithelium of the ascidian Botryllus schlosseri. Vacuolated and zymogenic cells. Z Zellforsch 145:541–555

    Google Scholar 

  • Burighel P, Milanesi C (1975) Fine structure of the gastric epithelium of the ascidian Botryllus schlosseri. Mucous, endocrine and plicated cells. Cell Tissue Res 158:481–496

    Google Scholar 

  • Burighel P, Milanesi C (1977) Fine structure of the intestinal epithelium of the colonial ascidian Botryllus schlosseri. Cell Tissue Res 182:357–369

    Google Scholar 

  • Burighel P, Milanesi C (1980) Cell involution in the ascidian pyloric gland. Ultramicroscopy 5:397–398 (Abstract)

    Google Scholar 

  • Burighel P, Brunetti R, Zaniolo G (1976) Hibernation of the colonial ascidian Botrylloides leachi (Savigny): histological observations. Boll Zool 43:293–301

    Google Scholar 

  • Burighel P, Milanesi C, Sabbadin A (1983) Blood cell ultrastructure of the ascidian Botryllus schlosseri. II. Pigment cells. Acta Zool (Stockh.) 64:15–23

    Google Scholar 

  • Cloney RA (1966) Cytoplasmic filaments and cell movements: epidermal cells during ascidian metamorphosis. J Ultrastruct Res 14:300–328

    Google Scholar 

  • Cloney RA (1972) Cytoplasmic filaments and morphogenesis: effects of CytochalasinB on contractile epidermal cells. Z Zellforsch 132:167–192

    Google Scholar 

  • Crowell S (1953) The regressionreplacement cycle of hydrants of Obelia and Campanularia. Physiol Zool 26:319–327

    Google Scholar 

  • De Santo RS, Dudley PL (1969) Ultramicroscopic filaments in the ascidian Botryllus schlosseri (Pallas) and their possible role in ampullar contractions. J Ultrastruct Res 28:259–274

    Google Scholar 

  • Ermak TH (1981) A comparison of cell proliferation patterns in the digestive tract of ascidians. J Exp Zool 217:325–339

    Google Scholar 

  • Geuze JJ (1970) Light and electronmicroscopic observations on auto and heterophagy in the exocrine pancreas of the hibernating frog (Rana esculenta). J Ultrastruct Res 32:391–404

    Google Scholar 

  • Geuze JJ (1971) Light and electronmicroscopic observations on the gastric mucosa of the frog (Rana esculenta). II Structural alterations during hibernation. Z Zellforsch 117:103–117

    Google Scholar 

  • Gordon DP (1977) The aging process in Bryozoans. In: Woollacott RM, Zimmer RL (eds) Biology of bryozoans. Acad Press, New York London, pp 335–376

    Google Scholar 

  • Hourdry J, Dauça M (1977) Changes in the intestinal epithelium during anuran metamorphosis. Int Rev Cytol (Suppl) 5:337–385

    Google Scholar 

  • Kerr JFR, Wyllie AH, Currie AR (1972) Apoptosis: a basic biological phenomenon with wideranging implications in tissue kinetics. Br J Cancer 26:239–257

    CAS  PubMed  Google Scholar 

  • Lash JW, Cloney RA, Minor RR (1973) The effect of CytochalasinB upon tail resorption and metamorphosis in ten species of ascidians. Biol Bull 145:360–372

    Google Scholar 

  • Milanesi C, Burighel P (1978) Blood cell ultrastructure of the ascidian Botryllus schlosseri. I. Hemoblast, granulocytes, macrophage, morula cell and nephrocyte. Acta Zool (Stockh) 59:135–147

    Google Scholar 

  • Mukai H (1974) A histological study on the degeneration of zooids in a compound ascidian, Botryllus primigenus. Zool Magaz 83:18–23

    Google Scholar 

  • Sabbadin A (1955) Osservazioni sullo sviluppo, l'accrescimento e la riproduzione die Botryllus schlosseri (Pallas), in condizioni di laboratorio. Boll Zool 22:243–263

    Google Scholar 

  • Sabbadin A (1960) Ulteriori notizie sull'allevamento e sulla biologia dei botrilli in condizioni di laboratorio. Arch Ocean Limn 12:97–107

    Google Scholar 

  • Saunders JW (1966) Death in embryonic systems. Science 154:604–612

    PubMed  Google Scholar 

  • Schiaffino S, Burighel P, Nunzi MG (1974) Involution of the caudal musculature during metamorphosis in the ascidian, Botryllus schlosseri. Cell Tissue Res 153:293–305

    Google Scholar 

  • Torrence SA, Cloney RA (1981) Rhythmic contractions of the ampullar epidermis during metamorphosis of the ascidian Molgula occidentalis. Cell Tissue Res 216:293–312

    Google Scholar 

  • Wyllie AH (1981) Cell death: a new classification separating apoptosis from necrosis. In: Bowen ID, Lockshin RA (eds) Cell death in biology and pathology. Chapman & Hall, London New York, pp 9–34

    Google Scholar 

  • Youson JH, Horbert WR (1982) Transformation of the intestinal epithelium of the larval anadromous lamprey Petromyzon marinus L. during metamorphosis. J Morphol 171:89–117

    Google Scholar 

  • Zaniolo G, Burighel P (1976) Morphological observations on the zooid regression of the colonial ascidian, Botryllus schlosseri. Boll Zool 43:417 (Abstract)

    Google Scholar 

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Burighel, P., Schiavinato, A. Degenerative regression of the digestive tract in the colonial ascidian Botryllus schlossen (Pallas). Cell Tissue Res. 235, 309–318 (1984). https://doi.org/10.1007/BF00217855

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