Jackson P C, Pfeffer P E, Gerasimowicz W V
United States Department of Agriculture, Agricultural Research Service, Plant Physiology Institute, Beltsville Agricultural Research Center, Beltsville, Maryland 20705.
Plant Physiol. 1986 Aug;81(4):1130-3. doi: 10.1104/pp.81.4.1130.
Previous work has shown that undissociated 2,4-dinitrophenol (DNP) both increases the permeability of roots to ions and alters the membrane lipids of barley roots. Anionic DNP is the main entrant form but has no effect on permeability or on the membrane lipids. The amount of anionic DNP taken up by the roots is sufficient, that were it in free solution in the cytoplasm, the DNP would uncouple oxidative phosphorylation, and thereby inhibit ATP synthesis. The present work was undertaken to assess whether DNP alters ATP levels when it is taken up by barley roots. (31)P nuclear magnetic resonance spectra were used to monitor, in vivo, levels of ATP, cytoplasmic phosphate, vacuolar phosphate, and other phosphate compounds in barley roots in the presence of 10 micromolar DNP at pH 5 and pH 7. The spectra indicate that no change in the level of ATP or the cytoplasmic pH occurred in the roots in the presence of DNP for as long as 20 hours. Thus, the effects of undissociated DNP are effects directly on the root membranes and do not involve inhibition of ATP synthesis. Furthermore, the results explain why anionic DNP has no effect on ion uptake and accumulation.
先前的研究表明,未解离的2,4-二硝基苯酚(DNP)既能增加根对离子的通透性,又能改变大麦根的膜脂。阴离子型DNP是主要的进入形式,但对通透性或膜脂没有影响。根吸收的阴离子型DNP的量足够多,如果它在细胞质中以游离溶液形式存在,DNP会使氧化磷酸化解偶联,从而抑制ATP合成。目前的研究旨在评估DNP被大麦根吸收时是否会改变ATP水平。利用磷-31核磁共振光谱在体内监测pH值为5和pH值为7时,在10微摩尔DNP存在的情况下大麦根中ATP、细胞质磷酸盐、液泡磷酸盐和其他磷酸盐化合物的水平。光谱表明,在长达20小时的时间里,在DNP存在的情况下,根中ATP水平或细胞质pH值没有发生变化。因此,未解离的DNP的作用是直接作用于根膜,并不涉及对ATP合成的抑制。此外,这些结果解释了为什么阴离子型DNP对离子吸收和积累没有影响。