Department of Biological Sciences, Stanford University, 94305, Stanford, CA, USA.
Planta. 1981 May;152(1):74-8. doi: 10.1007/BF00384988.
(31)P-Nuclear-magnetic-resonance spectra of maize (Zea mays L.) root tips, that had been induced to extrude large amounts of H(+) in response to fusicoccin (FC) in the presence of potassium salts, indicate that the cytoplasmic pH does not become higher than that of controls. In fact, the cytoplasmic pH may become slightly (approx. 0.1 pH unit) lower in cells extruding H(+). Estimations of the buffer capacity of the cells show that without active intracellular pH regulation, H(+) extrusion caused by FC would cause the intracellular pH to rise by at least 0.6 pH unit h(-1). Our results indicate that intracellular pH is tightly regulated even during extreme rates of acid extrusion, and that a rise in cytoplasmic pH is not the signal linking H(+) extrusion with enhanced organic-acid synthesis or other intracellular responses to H(+) pumping.
(31)用 31P-核磁共振对玉米根尖进行分析,这些根尖在钾盐存在的情况下,对外源施加的 fusicoccin(FC)产生了大量的 H+外排反应,这表明细胞质 pH 并没有像对照一样升高。事实上,在 H+外排的细胞中,细胞质 pH 可能会略微(约 0.1 pH 单位)降低。对细胞缓冲能力的估计表明,如果没有细胞内的 pH 主动调节,FC 引起的 H+外排会导致细胞内 pH 至少以 0.6 pH 单位/h 的速度升高。我们的结果表明,即使在极端的 H+外排速率下,细胞内 pH 也受到严格的调节,细胞质 pH 的升高并不是将 H+外排与增强的有机酸酸合成或其他细胞内对 H+泵的反应联系起来的信号。