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Plasmodesmata and pit development in secondary xylem elements

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Abstract

Developing pit membranes of secondary xylem elements in Drimys winteri, Fagus sylvatica, Quercus robur, Sorbus aucuparia, Tilia vulgaris and Trochodendron aralioides have been examined by transmission electron microscopy. Absence of plasmodesmata from the membranes of vessel elements and tracheids indicates that their pits develop independently of these structures. On the other hand, plasmodesmata are abundant in pit membranes between fibres, parenchyma cells, and combinations of these cell types in Fagus, Quercus and Tilia. In each case the plasmodesmata pass right through the developing pit membrane. In the case of Sorbus fibres, however, plasmodesmata were absent from the majority of pit membrane profiles seen in sections. Occasionally they were observed in large numbers associated with a swollen region on one side of the pit membrane between fibres and between fibres and parenchyma, radiating from a small area of the middle lamella. In the case of fibre to parenchyma pitting, this swelling was always found on the fibre side of the membrane, while on the other side a small number of plasmodesmata were present completing communication with the parenchyma cytoplasm. These observations are discussed with regard to the role of plasmodesmata in pit formation, and in the differentiation of the various cell types in secondary xylem. The significance their distribution may have for our understanding of xylem evolution is also discussed.

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References

  • Bailey, I.W. (1953) Evolution of the tracheary tissue of land plants. Am. J. Bot. 40, 4–8

    Google Scholar 

  • Barnett, J.R. (1981) Secondary xylem cell development. In: Xylem cell development, p. 307, Barnett, J.R., ed. Castle House, Tunbridge Wells

    Google Scholar 

  • Barnett, J.R., Harris, J.M. (1975) Early stages of bordered pit formation in radiata pine. Wood Sci. Technol. 9, 233–241

    Google Scholar 

  • Burgess, J. (1972) The occurrence of plasmodesmata-like structures in a non-division wall. Protoplasma 74, 449–458

    Google Scholar 

  • Carlquist, S. (1975) Ecological straregies of xylem evolution, p. 259. University of California Press Berkeley

    Google Scholar 

  • Carr, D.J. (1976) Plasmodesmata in growth and development. In: Intercellular communication in plants: studies on plasmodesmata, p. 387, Gunning, B.E.S., Robards, A.W., eds. Springer, Berlin Heidelberg New York

    Google Scholar 

  • Cronshaw, J., Wardrop, A.B. (1964) The organisation of cytoplasm in differentiating xylem. Am. J. Bot. 12, 15–33

    Google Scholar 

  • Czaninski, Y. (1977) Vessel associated cells. IAWA Bull. 3, 51–55

    Google Scholar 

  • Esau, K. (1965) Plant anatomy, p. 767 Wiley, New York London Sydney

    Google Scholar 

  • Fahn, A. (1974) Plant anatomy, p. 611, Pergamon, Oxford

    Google Scholar 

  • Gunning, B.E.S. (1978) Age related and origin related control of the number of plasmodesmata in cell walls of developing Azolla roots. Planta 143, 181–190

    Google Scholar 

  • Juniper, B.E. (1977) Some speculation on the possible roles of the plasmodesmata in the control of differentiation. J. Theor. Biol. 66, 583–592

    Google Scholar 

  • Kerr, T., Bailey, I.W. (1939) The cambium and its derivative tissues. X. Structure, optical properties and chemical composition of the so-called middle lamella. J. Arnold Arbor 15, 327–349

    Google Scholar 

  • Metcalfe, C.R., Chalk, L. (1950) Anatomy of the dicotyledons, vol. 1, p. 729. Clarendon Press, Oxford

    Google Scholar 

  • Money, L.L., Bailey, I.W., Swamy, B.G.L. (1950) The morphology and relationships of the Monimiaceae. J. Arnold Arbor. 31, 372–404

    Google Scholar 

  • Murmanis, L. (1975) Formation of tyloses in felled Quercus rubra L. Wood Sci. Technol. 9, 3–14

    Google Scholar 

  • O'Brien, T.P. (1981) The primary xylem. In: Xylem cell development, p. 307, Barnett, J.R., ed. Castle House

  • Parameswaran, N., Liese, W. (1981) Torus-like structures in inter-fibre pits of Prunus and Pyrus. IAWA Bull., N.S. 2, 89–94

    Google Scholar 

  • Wardrop, A.B. (1965) Cellular differentiation in xylem In: Cellular ultrastructure of woody plants, p. 603, Cote, W.A., ed. Syracuse

  • Yang, K.-C. (1978) The fine structure of pus in yellow birch (Betula allaghaniensis Britton). IAWA Bull. 4, 71–77

    Google Scholar 

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Barnett, J.R. Plasmodesmata and pit development in secondary xylem elements. Planta 155, 251–260 (1982). https://doi.org/10.1007/BF00392724

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  • DOI: https://doi.org/10.1007/BF00392724

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