Host-Pathogen Interactions
Open Access
- 1 July 1981
- journal article
- research article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 68 (1) , 221-228
- https://doi.org/10.1104/pp.68.1.221
Abstract
The ability of β-glucosylase I, a soybean cell wall β-glucosyl hydrolase, to degrade elicitors of phytoalexin accumulation was studied. Extensive β-glucosylase I treatment of the glucan elicitor isolated from the mycelial walls of Phytophthora megasperma var. sojae results in hydrolysis of 77% of the glucosidic bonds of the elicitor and destruction of 94% of its activity. Soybean cell walls contain some additional factor, probably one or more additional enzymes, which can assist β-glucosylase I in hydrolyzing the glucan elicitor. This was demonstrated by the more rapid hydrolysis of the glucan elicitor by a mixture of soybean cell wall enzymes (containing β-glucosylase I). In a single treatment, the mixture of cell wall enzymes hydrolyzed 91% of the glucosidic bonds and destroyed 85% of the activity of the elicitor. The enzymes from soybean cell walls will also hydrolyze elicitor-active oligoglucosides prepared from the mycelial walls of Phytophthora megasperma var. sojae. The active oligoglucosides are more susceptible than the glucan elicitor to hydrolysis by these enzymes. The mixture of cell wall enzymes or β-glucosylase I, by itself, hydrolyzes more than 96% of the glucosidic bonds and destroys more than 99% of the activity of the oligoglucoside elicitor. Two possible advantages for the existence of these enzymes in the walls of soybean cells are discussed.This publication has 14 references indexed in Scilit:
- Host-Pathogen InteractionsPlant Physiology, 1981
- Determination of the Pore Size of Cell Walls of Living Plant CellsScience, 1979
- Structure of Plant Cell WallsPlant Physiology, 1978
- Agglutination of Plant Protoplasts by Fungal Cell Wall GlucansScience, 1978
- Toxicity of phytoalexins.1978
- Tetanus toxin interactions with thyroid plasma membranes. Implications for structure and function of tetanus toxin receptors and potential pathophysiological significance.Journal of Biological Chemistry, 1977
- Interaction of diphtheria toxin with mammalian cell membranes.Journal of Biological Chemistry, 1976
- Host-Pathogen InteractionsPlant Physiology, 1976
- Membrane ReceptorsAnnual Review of Biochemistry, 1974
- The Involvement of Glycosidases in the Cell Wall Metabolism of Suspension-cultured Acer pseudoplatanus CellsPlant Physiology, 1970