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支持生长素作用的酸生长理论的证据。

Evidence against the acid-growth theory of auxin action.

机构信息

Biologisches Institut II der Universität, Schänzlestrasse 1, D-7800, Freiburg, Federal Republic of Germany.

出版信息

Planta. 1985 Apr;163(4):483-93. doi: 10.1007/BF00392705.

Abstract

Four experimental predictions of the 'acid-growth theory' of auxin (indole-3-acetic acid, IAA) action in inducing cell elongation were reinvestigated using abraded segments of maize (Zea mays L.) coleoptiles. i) Quantitative comparison of segment elongation and medium-acidification kinetics measured in the same sample of tissue reveals that these IAA-induced processes are neither correlated in time nor responding coordinately to cations present in the medium. ii) Exogenous protons are not able to substitute for IAA in causing segment elongation at the predicted pH of 4.5-5.0. Instead, external buffers induce significant segment elongation only below pH 4.5, reaching a maximal response at pH 1.75-2.5. Acid and IAA coact additively, and therefore independently, in the whole range of feasible pH values. iii) Neutral or alkaline buffers (pH 6-10) are unable to abolish the IAA-mediated growth response and have no effect on its lag-phase. iv) Fusicoccin, at a concentration producing the same H(+) excretion as high concentrations of IAA, is ineffective in inducing segment elongation. Moreover, sucrose and other sugars can quantiatively substritute for IAA in inducing H(+) excretion but are likewise ineffective in inducing elongation. It is concluded that these results are incompatible with the acid-growth theory of auxin action.

摘要

使用玉米(Zea mays L.)胚芽鞘磨损的片段,重新研究了生长素(吲哚-3-乙酸,IAA)作用的“酸生长理论”的四个实验预测。i)在同一组织样本中测量的片段伸长和介质酸化动力学的定量比较表明,这些 IAA 诱导的过程在时间上既没有相关性,也没有协调响应介质中存在的阳离子。ii)外源性质子不能在预测的 pH 值 4.5-5.0 下替代 IAA 引起片段伸长。相反,外部缓冲剂仅在 pH 4.5 以下诱导显著的片段伸长,在 pH 1.75-2.5 时达到最大响应。酸和 IAA 以整个可行 pH 值范围内的加和方式共同作用,因此是独立的。iii)中性或碱性缓冲剂(pH 6-10)不能消除 IAA 介导的生长反应,也对其滞后期没有影响。iv)夫西地酸在产生与高浓度 IAA 相同 H+排泄的浓度下无效,不能诱导片段伸长。此外,蔗糖和其他糖可以定量替代 IAA 诱导 H+排泄,但同样不能诱导伸长。因此得出结论,这些结果与生长素作用的酸生长理论不兼容。

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