Institut für Biologie III, RWTH Aachen, W-5100, Aachen.
Planta. 1991 Jan;183(2):164-9. doi: 10.1007/BF00197784.
We have recently reported the isolation and characterization of a glycoprotein (Mr 67 000) from germ-tube walls of Puccinia graminis f. sp. tritici which elicits the cellular hypersensitive lignification response in wheat (G. Kogel et al., 1988, Physiol. Mol. Plant Pathol. 33, 173-185). The present study uses this glycoprotein, referred to as Pgt elicitor, to identify putative elicitor targets in wheat cell membranes. In enzyme-linked immunosorbent assays using anti-Pgt elicitor antibodies, specific binding sites for Pgt elicitor were detected in highly purified plasma-membrane vesicles of wheat (Triticum aestivum L.) primary leaf cells. Binding proved to be independent of the presence or absence in wheat of the Sr5 gene for rust resistance, and also occurred on barley (Hordeum vulgare L.) plasma membrane. The binding sites have an Mr of 30 000 and 33 000, respectively, and binding activity was not lost in the presence of sodium dodecyl sulfate. [(14)C]imido-Pgt elicitor was used to determine the apparent K d value for specific binding, found to be 2.0 μM, and the maximum content of binding sites, found to be 250 pmol per mg of plasma-membrane protein. The relevance of the elicitor binding for the outcome of the interaction of P. graminis and wheat is discussed.
我们最近报道了从小麦叶锈菌( Puccinia graminis f. sp. tritici )的厚垣孢子壁中分离和鉴定出一种糖蛋白(Mr67000),该糖蛋白在小麦中引发细胞过敏木质化反应(G.Kogel 等人,1988 年,Physiol.Mol.Plant Pathol.33,173-185)。本研究使用这种糖蛋白,称为 Pgt 激发子,来鉴定小麦细胞膜中的潜在激发子靶标。在使用抗 Pgt 激发子抗体的酶联免疫吸附测定中,在小麦(TriticumaestivumL.)初生叶片细胞的高度纯化质膜小泡中检测到 Pgt 激发子的特异性结合位点。证明这种结合与小麦中锈病抗性的 Sr5 基因的存在与否无关,也发生在大麦(HordeumvulgareL.)质膜上。结合位点的 Mr 分别为 30000 和 33000,并且在存在十二烷基硫酸钠的情况下,结合活性不会丧失。[(14)C]亚氨代 Pgt 激发子用于确定特异性结合的表观 Kd 值,发现为 2.0μM,以及结合位点的最大含量,发现为每毫克质膜蛋白 250pmol。讨论了激发子结合与小麦叶锈菌和小麦相互作用结果的相关性。