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Electrical Membrane Properties of Leaves Roots and Single Root Cap Cells of Susceptible Avena sativa

机译:易感燕麦的叶片根和单根帽细胞的电膜特性

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摘要

The effect of the purified host-selective toxin victorin C, a cyclized penta peptide, was compared to that of CCCP and vanadate on membrane functions of susceptible leaves, roots, and single root cap cells of Avena sativa with conventional electrophysiology. The plasmalemma depolarized irreversibly by about 80 millivolts and to below the diffusion potential within 1 hour. Concentrations as low as 12.5 picomolar were effective in the susceptible but not the resistant cultivar. Electrical membrane potential difference changes were independent of pH and could not be prevented by fusicoccin or Ca2+. Membranes began to depolarize after a lag phase that never was shorter than 6.5 minutes, even with concentrations as high as 1.25 micromolar. Membrane depolarization was accompanied by a distinct decrease in specific membrane resistance from 4.5 to 1.0 ohm times square meter on average. These changes were followed by K+ and Cl efflux and extracellular alkalinization. ATP level and O2 uptake did not decrease within 2 hours. It is concluded that the victorin-induced deleterious membrane alterations are not caused by direct interaction with the plasmalemma H+-ATPase, K+ channels, lipid structure, nor energy metabolism, but they seem to be triggered by a cascade of events leading to an unspecific increase in membrane permeability.
机译:将纯化的宿主选择性毒素维克托林C(一种环化的五肽)与CCCP和钒酸盐的作用进行了比较,具有常规电生理学特性,该膜对Avena sativa易感叶片,根和单根帽细胞的膜功能。等离子体障碍在1小时内不可逆地去极化约80毫伏,并降至扩散电位以下。低至12.5皮摩尔的浓度对易感品种有效,但对抗性品种无效。膜电势差的变化与pH无关,并且不能被fusicoccin或Ca 2 + 阻止。即使在浓度高达1.25微摩尔的情况下,滞后阶段也不会短于6.5分钟,膜开始去极化。膜去极化伴随着比膜电阻从平均4.5到1.0欧姆次/平方米的明显降低。这些变化之后是K + 和Cl -外排以及细胞外碱化。 ATP水平和O2吸收在2小时内没有降低。结论是维克托林诱导的有害膜改变不是与血浆膜H + -ATPase,K + 通道,脂质结构或能量代谢的直接相互作用引起的,但它们似乎是由一系列事件触发的,这些事件导致膜通透性非特异性增加。

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