Imperial Chemical Industries Ltd., Jealott's Hill Research Station, Bracknell, Berks, England.
Plant Physiol. 1967 Sep;42(9):1209-14. doi: 10.1104/pp.42.9.1209.
The adsorption of chloro-aromatic acids to monomolecular layers of oat squashes is reported in earlier papers but it was not possible by the technique used, to measure unambiguously the adsorption of unsubstituted and 2,6-dichloro-aromatic acids. This has now been achieved by a modification of the earlier method and involves assessments of competitive adsorption between the unknown acid and a standard acid, using measurements of surface potential.Benzoic and phenoxyacetic acids were not adsorbed but phenylacetic acid was weakly adsorbed. The second ring in naphthalene and naphthoxyacetic acids greatly increased adsorption. Substitution of the 2 and 6 positions in the phenyl and phenoxyacetic acids resulted in low adsorption but 2,6-disubstituted phenoxybutyric and benzoic acids were more highly adsorbed.The adsorption values from earlier work are combined and discussed in relation to the growth-regulating activity of the acids. It is conciuded that there is no direct relation embracing all acids between adsorption and activity, notable exceptions being those substituted by chlorine in the 3-position of the aromatic ring. However, for a number of acids it is suggested that activity is limited not only by their ability to interact at enzyme sites but also by the amount of acid immobilised by adsorption when moving to these sites. It is also concluded that the hydrophilic/lipophilic balance of a growth regulator sometimes used as a guide to its activity, is an unreliable indication of interfacial behaviour.
earlier papers 中报道了单分子层燕麦片对氯代芳香酸的吸附作用,但使用早期技术,无法明确测量未取代和 2,6-二氯芳香酸的吸附作用。现在通过对早期方法的改进实现了这一点,该方法涉及使用表面电势评估未知酸和标准酸之间的竞争吸附作用。苯甲酸和苯氧乙酸未被吸附,但苯乙酸被弱吸附。萘和萘氧乙酸的第二个环大大增加了吸附作用。在苯和苯氧乙酸中取代 2 和 6 位导致吸附作用降低,但 2,6-二取代的苯氧丁酸和苯甲酸的吸附作用更强。早期工作中的吸附值结合起来,并根据酸的生长调节活性进行了讨论。得出的结论是,在吸附和活性之间,没有一种直接关系能够涵盖所有酸,3-位被氯取代的酸是明显的例外。然而,对于许多酸,其活性不仅受到其在酶位相互作用的能力的限制,而且还受到移动到这些位时吸附固定的酸的量的限制。还得出结论,生长调节剂的亲水/亲脂平衡有时被用作其活性的指南,这是界面行为的不可靠指示。