Department of Biology, Utah State University, Logan, Utah 84322-4500.
Plant Physiol. 1987 Jun;84(2):428-32. doi: 10.1104/pp.84.2.428.
Extracellular components released from mycelia of the alpha and beta races of the bean pathogen, Colletotrichum lindemuthianum, inhibited proton uptake in sealed vesicles prepared from bean hypocotyls. Differential sensitivity of ATP-driven proton transport to nitrate, vanadate, N,N'-dicyclohexylcarbodiimide, diethylstilbestrol, and oligomycin suggested the vesicles were enriched for tonoplast. Anion stimulation of proton transport, by enhancement of ATPase activity and dissipation of the membrane potential, was consistent with this conclusion. Although fungal components inhibited the formation of a pH gradient, the membrane potential was unaffected and the ATPase activity slightly stimulated. These data suggest that the fungal components produce an electroneutral proton exchange. Proton transport in Dark Red Kidney bean tonoplast vesicles was inhibited by mycelial preparations from the incompatible alpha race and compatible beta race. Elicitor activity, however, was greater in the alpha race fractions. Elicitor purified from alpha race culture filtrate did not inhibit proton transport in vesicles isolated from Dark Red Kidney bean. Consequently, elicitor activity need not be associated with an ability to impair tonoplast function.
从菜豆病原菌的α和β小种的菌丝体释放的细胞外成分抑制了从小豆下胚轴制备的密封小泡中的质子摄取。对硝酸盐、钒酸盐、N,N'-二环己基碳化二亚胺、己烯雌酚和寡霉素驱动的质子转运的差异敏感性表明囊泡富含液泡。阴离子对质子转运的刺激,通过增强 ATP 酶活性和耗散膜电位,与这一结论一致。尽管真菌成分抑制了 pH 梯度的形成,但膜电位不受影响,ATP 酶活性略有刺激。这些数据表明,真菌成分产生了电中性的质子交换。来自不亲和的α小种和相容的β小种的菌丝体制备物抑制了暗红豆子的液泡囊泡中的质子转运。然而,α小种部分的诱导活性更大。从α小种培养滤液中纯化的诱导剂不能抑制从小豆中分离出的囊泡中的质子转运。因此,诱导活性不一定与损害液泡功能的能力相关。