Felle H, Peters W, Palme K
Botanisches Institut I, Justus Liebig-Universität Giessen, Germany.
Biochim Biophys Acta. 1991 May 7;1064(2):199-204. doi: 10.1016/0005-2736(91)90302-o.
The electrical response of Zea mays coleoptiles and suspension cultured cells to several growth-promoting auxins (IAA, IBA, 2,4-D, 2,4,5-T, 1-NAA) and some of their structural analogues (2,3-D, 2-NAA) has been tested. In coleoptile two typical electrical responses to IAA are observed: an immediated rapid depolarization, and a hyperpolarization following 7-10 minutes after the first external addition of IAA. Of the other tested compounds only 1-NAA significantly depolarized the cells, whereas all auxins as well as the analogues evoked delayed hyperpolarizations. In contrast, the suspension cells were not hyperpolarized by any of the tested compounds, but were strongly depolarized by IAA, 1-NAA, and to a lesser extent by 2-NAA. In these cells IAA and 1-NAA induced inwardly directed currents of positive charge which both saturated around 12 mA/m2. The strong pH-dependence together with the half-maximal currents 0.49 microM IAA and 0.76 microM 1-NAA point to a symport of the anions with at least 2H+. The delayed plasma membrane hyperpolarization is a different response, and seems to be initiated by the protonated auxin species. In accordance with the current literature, it is interpreted as consequence of a stimulated proton extrusion. The finding that all tested compounds evoked a hyperpolarization, makes this response unspecific. It is concluded that a stimulation of proton extrusion is a necessary, but not sufficient step to induce elongation growth.
对玉米胚芽鞘和悬浮培养细胞对几种促进生长的生长素(吲哚乙酸、吲哚丁酸、2,4-二氯苯氧乙酸、2,4,5-三氯苯氧乙酸、1-萘乙酸)及其一些结构类似物(2,3-二氯苯氧乙酸、2-萘乙酸)的电反应进行了测试。在胚芽鞘中,观察到对吲哚乙酸的两种典型电反应:立即快速去极化,以及在首次外部添加吲哚乙酸后7-10分钟出现的超极化。在其他测试化合物中,只有1-萘乙酸使细胞明显去极化,而所有生长素及其类似物都引起延迟超极化。相比之下,悬浮细胞未被任何测试化合物超极化,但被吲哚乙酸、1-萘乙酸强烈去极化,2-萘乙酸的去极化程度较小。在这些细胞中,吲哚乙酸和1-萘乙酸诱导内向正电荷电流,两者在约12 mA/m² 处达到饱和。强pH依赖性以及半最大电流时0.49 microM吲哚乙酸和0.76 microM 1-萘乙酸表明阴离子与至少2个H⁺ 协同转运。延迟的质膜超极化是一种不同的反应,似乎是由质子化的生长素物种引发的。根据当前文献,它被解释为质子外排受刺激的结果。所有测试化合物都引起超极化这一发现,使得这种反应不具有特异性。得出的结论是,质子外排的刺激是诱导伸长生长的必要但不充分步骤。