Cytologie, Institut für Pflanzenbiologie der Universität, Zollikerstrasse 107, CH-8007, Zürich, Switzerland.
Planta. 1984 Oct;162(4):345-52. doi: 10.1007/BF00396747.
The carboxylic ionophore, monensin, rapidly induced cell-wall acidification and a decrease in cytosolic pH when added to maize coleoptiles at low external pH and Na(+) concentration. Elongation growth at rates equivalent to those obtained with indole-3-acetic acid was induced for about 1 h. Stimulation of the outwardly directed proton pump apparently occurred, since under the same conditions monensin induced membrane hyperpolarization of maize root rhizodermis cells. When the external pH was high (>8) and Na(+) present, monensin treatment caused only minimal changes in membrane potential and cytosolic pH. Although the ionophore transported protons out of the cell, resulting in cell-wall acidification, no elongation growth occurred. However, under identical conditions, indole-3-acetic acid dit induce growth. The data indicates that stimulation of the outwardly directed electrogenic proton pump rather than the subsequent acidification of the cell wall is vital for the induction of elongation growth.
当低外部 pH 值和 Na(+)浓度下,羧酸离子载体莫能菌素被添加到玉米胚芽鞘中时,它会迅速诱导细胞壁酸化和细胞溶质 pH 值下降。在大约 1 小时内,以与吲哚-3-乙酸相同的速率诱导伸长生长。显然,外向质子泵被刺激,因为在相同条件下,莫能菌素诱导玉米根根皮层细胞的膜超极化。当外部 pH 值较高(>8)且存在 Na(+)时,莫能菌素处理仅导致膜电位和细胞溶质 pH 值发生最小变化。尽管离子载体将质子运出细胞,导致细胞壁酸化,但不会发生伸长生长。然而,在相同条件下,吲哚-3-乙酸会诱导生长。这些数据表明,外向的电致质子泵的刺激而不是细胞壁的随后酸化对于诱导伸长生长至关重要。