Rubinstein B
Department of Botany, University of Massachusetts, Amherst, Massachusetts 01003.
Plant Physiol. 1981 Sep;68(3):543-7. doi: 10.1104/pp.68.3.543.
Proton excretion induced by optimal concentrations of indoleacetic acid (IAA) and fusicoccin (FC) differs not only in maximum rate of acidification but also in the lag before onset of H(+) excretion and in sensitivity to cycloheximide. Because these differences might simply be a consequence of the difference in rate of proton excretion, FC and IAA have now been compared using oat coleoptiles (cv. Victory) under conditions where the rates of acidification are more similar, i.e. suboptimal FC versus optimal IAA. As the concentration of FC is reduced, the rate of H(+) excretion decreases, the final equilibrium pH increases, and the lag before detectable acidification increases up to 7-fold. This enhanced lag period is not primarily a consequence of wall buffering, inasmuch as it persists when a low concentration of FC is added to sections which were already excreting H(+) in response to IAA. An extended lag also occurs, upon reduction of FC levels, in the hyperpolarization of the membrane potential, before enhancement of O(2) uptake and before the increased rate of Rb(+) uptake. The presence or absence of a lag is not a distinguishing feature between FC and IAA actions on H(+) excretion and cannot be used to discriminate between their sites of action. In contrast, the insensitivity of FC-induced H(+) excretion to cycloheximide, as compared with the nearly complete inhibition of this auxin effect by cycloheximide, persists even at dilute concentrations of FC. This seems to be a basic difference in H(+) excretion by IAA and FC.
最佳浓度的吲哚乙酸(IAA)和壳梭孢菌素(FC)诱导的质子排泄不仅在最大酸化速率上存在差异,而且在H⁺排泄开始前的延迟时间以及对环己酰亚胺的敏感性方面也有所不同。由于这些差异可能仅仅是质子排泄速率差异的结果,因此现在在酸化速率更为相似的条件下,即次最佳浓度的FC与最佳浓度的IAA,使用燕麦胚芽鞘(品种Victory)对FC和IAA进行了比较。随着FC浓度的降低,H⁺排泄速率下降,最终平衡pH值升高,可检测到酸化之前的延迟时间增加至7倍。这种延长的延迟期并非主要是细胞壁缓冲的结果,因为当向已经因IAA而排泄H⁺的切片中添加低浓度的FC时,延迟现象仍然存在。在FC水平降低时,膜电位的超极化、O₂吸收增强之前以及Rb⁺吸收速率增加之前,也会出现延长的延迟。延迟的存在与否并非FC和IAA对H⁺排泄作用的区别特征,也不能用于区分它们的作用位点。相比之下,与环己酰亚胺对这种生长素效应几乎完全抑制相比,FC诱导的H⁺排泄对环己酰亚胺不敏感,即使在稀释浓度的FC下也是如此。这似乎是IAA和FC在H⁺排泄方面的一个基本差异。