Exocellular (glyco)proteins of Lupinus albus plants and suspension-cultured cells
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Bolwell G.P. 1993. Dynamic aspects of the plant extracellular matrix. Int. Rev. Cytol., 146: 261–324.
Bonfante P., Perotto S. 1995. Strategies of arbuscular mycorrhizal fungi when infecting host plants. New Phytol., 130: 3–21.
Bradford M.M. 1976. A rapid and sensitive method for quantitation of microgram quantities of protein utilizing the principles of protein-dye binding. Anal. Biochem., 72: 248–254.
Bradley D.J., Kjellbom P., Lamb C.J. 1992. Elicitor-and wound-induced oxidative cross-linking of a prolinerich plant cell wall protein: a novel, rapid defense response. Cell, 70: 21–30.
Brownlee C., Berger F. 1995. Extracellular matrix and pattern in plant embryos: on the lookout for developmental information. Trends Genet., 11: 344–348.
Costa J., Ricardo C.P.P. 1994. Changes in the composition of ConA-binding glycopeptides from Lupinus albus root membranes induced by nodulation and callus formation. Plant Physiol. Biochem., 32: 295–302.
de Faria S.M., Lewis G.P., Sprent J.I., Sutherland J.M. 1989. Occurrence of nodulation in the Leguminosae. New Phytol., 111: 607–619.
Dixon R.A., Lamb C.J. 1979. Stimulation of de novo synthesis of phenylalanine ammonia-lyase in relation to phytoalexin accumulation in Colletotrichum lindemuthianum elicitor-treated suspension cultures of French bean (Phaseolus vulgaris). Biochim. Biophys. Acta, 586: 453–463.
Driouich A., Levy S., Staehelin L.A., Faye L. 1994. Structural and functional organization of the Golgi apparatus in plant cells. Plant Physiol. Biochem., 32: 731–749.
Fry S.C. 1991. Cell wall-bound proteins. In: Methods in Plant Biochemistry, Vol. 5, ed. by L. Rogers, Academic Press Ltd.: 307–331.
Fukuda H., Ito M., Sugiyama M., Komamine A. 1994. Mechanisms of the proliferation and differentiation of plant cells in cell culture systems. Int. J. Dev. Biol., 38: 287–299.
Gianinazzi-Pearson V., Gianinazzi S. 1989. Cellular and genetical aspects of interactions between hosts and fungal symbionts in mycorrhizae. Genome, 31: 336–341.
Knox J.P. 1993. The role of cell surface glycoproteins in differentiation and morphogenesis. In: Post-translational Modifications in Plants, SEB Seminar Series 53, ed. by N.H. Battey, H.G. Dickinson, A.M. Hetherington, Cambridge University Press: 267–283.
Laemmli U.K. 1970. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature, 227: 680–685.
Millar D.J., Slabas A.R., Sidebottom C., Smith C.G., Allen A.K., Bolwell G.P. 1992. A major stress-inducible Mr-42 000 wall glycoprotein of French bean (Phaseolus vulgaris L.). Planta, 187: 176–184.
Monro J.A., Bailey R.W., Penny D. 1974. Cell wall hydroxyproline-polysaccharide associations in Lupinus hypocotyls. Phytochemistry, 13: 375–382.
Murashige T., Skoog F. 1962. A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol. Plant., 66: 473–497.
Oh B.-J., Frederiksen R.A., Smith R.H. 1994. Glycoprotein changes in vegetative to floral meristems of sorghum detected by biotinylated lectins. Plant Sci., 101: 181–187.
Pennell R.I. 1992. Cell surface arabinogalactan proteins, arabinogalactans and plant development. In: Perspectives in Plant Cell Recognition, SEB Seminar Series 48, ed. by J.A. Callow, J.R. Green, Cambridge University Press: 105–121.
Regalado A.P., Ricardo C.P.P. 1996. Study of the intercellular fluid of healthy Lupinus albus organs. Plant Physiol. 110: 227–232.
van de Rhee M.D., Linthorst H.J.M., Bol J.F. 1994. Pathogen-induced gene expression. In: Stress-Induced Gene Expression in Plants, ed. by A.S. Basra, Harwood Academic Publishers: 249–284.
Wojtaszek P., Bolwell G.P. 1995. Secondary cell-wall-specific glycoprotein(s) from French bean hypocotyls. Plant Physiol., 108: 1001–1012.
Wojtaszek P., Stobiecki M. 1997. Differential secretion and accumulation of isoflavonoids in Lupinus albus in response to fungal elicitor and CuCl2. Plant Physiol. Biochem., 35: 129–135.
Wojtaszek P., Piślewska M., Bolwell G.P., Stobiecki M. 1998. Secretion of stress-related proteins by suspension-cultured Lupinus albus cells. Acta Biochim. Polon., 45: 281–285.
Wojtaszek P., Stobiecki M., Bolwell G.P. 1997. Changes in the composition of exocellular proteins of suspension-cultured Lupinus albus cells in response to fungal elicitors or CuCl2. J. Exp. Biot., 48: 2015–2021.