Ray P M
Department of Biological Sciences, Stanford University, Stanford, California 94305.
Plant Physiol. 1985 Jul;78(3):466-72. doi: 10.1104/pp.78.3.466.
Fusicoccin (FC), like indoleacetic acid (IAA), causes Golgi-localized beta-1,4-glucan synthase (GS) activity to increase when applied to pea third internode segments whose GS activity has declined after isolation from the plant. This suggests that GS activity is modulated by H(+) extrusion; in agreement, vanadate and nigericin inhibit the GS response. The GS response is not due to acidification of the cell wall. Treatment of tissue with heavy water, which in effect raises intracellular pH, mimics the IAA/FC GS response. However, various treatments that tend to raise cytoplasmic pH directly, other than IAA- or FC-induced H(+) extrusion, failed to increase GS activity, suggesting that cytoplasmic pH is not the link between H(+) extrusion and increased GS activity. Although FC stimulates H(+) extrusion more strongly than IAA does, FC enhances GS activity at most only as much as, and often somewhat less than, IAA does. This and other observations indicate that GS enhancement is probably not due to membrane hyperpolarization, stimulated sugar uptake, or changes in ATP level, but leave open the possibility that GS is controlled by H(+) transport-driven changes in intracellular concentrations of ions other than H(+).
壳梭孢菌素(FC)与吲哚乙酸(IAA)一样,当施加于从植株分离后其β-1,4-葡聚糖合酶(GS)活性已经下降的豌豆第三茎节切段时,会使定位于高尔基体的β-1,4-葡聚糖合酶(GS)活性增加。这表明GS活性受H⁺外排调节;与此一致的是,钒酸盐和尼日利亚菌素会抑制GS反应。GS反应并非由于细胞壁酸化所致。用重水处理组织,实际上会提高细胞内pH,这模拟了IAA/FC的GS反应。然而,除了IAA或FC诱导的H⁺外排之外,各种倾向于直接提高细胞质pH的处理均未能增加GS活性,这表明细胞质pH并非H⁺外排与GS活性增加之间的联系。尽管FC比IAA更强烈地刺激H⁺外排,但FC增强GS活性的程度最多仅与IAA相当,且往往略低于IAA。这一现象以及其他观察结果表明,GS增强可能并非由于膜超极化、刺激的糖摄取或ATP水平的变化,但仍存在一种可能性,即GS受H⁺转运驱动的除H⁺之外的其他离子细胞内浓度变化的控制。