Department of Biology, Kline Biology Tower, Yale University, P.O. Box 6666, New Haven, Connecticut 06511.
Plant Physiol. 1988 Sep;88(1):131-8. doi: 10.1104/pp.88.1.131.
The temporal relations between early responses to indoleacetic acid (IAA), proton secretion, hyperpolarization of the membrane potential, and growth change during the incubation of segments of oat (Avena sativa L.) coleoptiles in a low salt medium. When IAA is added after pretreatment of several hours, proton secretion increases after a latency of 7 minutes and reaches its maximum 10 to 15 minutes later. This timing coincides with both the increase in growth of the segments and the hyperpolarization of the membrane potential of parenchyma cells, consistent with the hypothesis that the change in membrane voltage reflects the activity of an electrogenic proton pump. The extent of IAA-induced hyperpolarization is substantially reduced by elevating KCl, most likely because this increases the passive conductance of the membrane. Neither growth nor proton secretion is affected by high KCl (30 millimolar), indicating that neither process is limited by the magnitude of the membrane potential. These results are consistent with the acid growth hypothesis. Following short incubation times, however, IAA-induced hyperpolarization and growth are detected within 10 minutes, while acidification of the medium is delayed for more than 40 minutes. This result is seemingly in conflict with the acid growth hypothesis, but in freshly cut tissue, the pH of the external medium may not reflect the pH of the epidermal cell walls. The temporal coincidence of auxin-induced growth and hyperpolarization suggests that in freshly isolated segments the hyperpolarization is a more sensitive indication of proton secretion than is acidification of the external aqueous environment.
在低盐介质中培养燕麦(Avena sativa L.)胚芽鞘切段时,吲哚乙酸(IAA)早期反应、质子分泌、膜电位超极化和生长变化之间的时间关系。在预处理数小时后加入 IAA 时,质子分泌在潜伏期 7 分钟后增加,并在 10 至 15 分钟后达到最大值。这一时间与片段生长的增加和薄壁细胞的膜电位超极化相吻合,这与膜电压变化反映生电性质子泵活性的假设一致。通过升高KCl,IAA 诱导的超极化程度大大降低,很可能是因为这增加了膜的被动电导。高KCl(30 毫摩尔)既不影响生长也不影响质子分泌,表明这两个过程都不受膜电位幅度的限制。这些结果与酸生长假说一致。然而,在短的孵育时间后,IAA 诱导的超极化和生长在 10 分钟内被检测到,而介质酸化延迟超过 40 分钟。这一结果似乎与酸生长假说相矛盾,但在新切割的组织中,外部介质的 pH 值可能不能反映表皮细胞壁的 pH 值。生长素诱导的生长和超极化的时间巧合表明,在新分离的片段中,超极化比外部水相环境的酸化更能灵敏地反映质子分泌。