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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.

DOI:10.1007/BF00392705
PMID:24249447
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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本文引用的文献

1
[Experiments and hypothesis concerning the primary action of auxin in elongation growth].[关于生长素在伸长生长中主要作用的实验与假说]
Planta. 1971 Mar;100(1):47-75. doi: 10.1007/BF00386886.
2
Physiological evidence for auxin-induced hydrogen-ion secretion and the epidermal paradox.生长素诱导氢离子分泌的生理学证据和表皮悖论。
Planta. 1973 Jun;114(2):185-93. doi: 10.1007/BF00387475.
3
Auxin-induced hydrogen-ion secretion in Avena coleoptiles and its implications.生长素诱导燕麦胚芽鞘的氢离子分泌及其意义。
快速生长素介导的细胞扩张。
Annu Rev Plant Biol. 2020 Apr 29;71:379-402. doi: 10.1146/annurev-arplant-073019-025907. Epub 2020 Mar 4.
4
A quantitative report on the impact of chloride on the kinetic coefficients of auxin-induced growth: a numerical contribution to the "acid growth hypothesis".关于氯离子对生长素诱导生长动力学系数影响的定量报告:对“酸生长假说”的数值贡献。
Springerplus. 2016 Nov 15;5(1):1978. doi: 10.1186/s40064-016-3626-y. eCollection 2016.
5
The Effects of High Steady State Auxin Levels on Root Cell Elongation in Brachypodium.高稳态生长素水平对短柄草属植物根细胞伸长的影响
Plant Cell. 2016 May;28(5):1009-24. doi: 10.1105/tpc.15.01057. Epub 2016 May 5.
6
Effect of K+ and Ca2+ on the indole-3-acetic acid- and fusicoccin-induced growth and membrane potential in maize coleoptile cells.钾离子和钙离子对吲哚乙酸和栓皮酮诱导的玉米胚芽鞘细胞生长和膜电位的影响。
AoB Plants. 2015 Jun 30;7:plv070. doi: 10.1093/aobpla/plv070.
7
Evidence for the acid-growth theory of fusicoccin action.证据支持 fusicoccin 作用的酸生长理论。
Planta. 1985 Apr;163(4):494-9. doi: 10.1007/BF00392706.
8
Incubation of corn coleoptiles with auxin enhances in-vitro fusicoccin binding.玉米幼茎与生长素共同孵育可增强体外结合的展青霉素。
Planta. 1986 Jan;167(1):129-32. doi: 10.1007/BF00446379.
9
The animal ether phospholipid platelet-activating factor stimulates acidification of the incubation medium by cultured soybean cells.动物醚磷脂血小板激活因子刺激培养的大豆细胞使孵育介质酸化。
Plant Cell Rep. 1988 Dec;7(7):575-8. doi: 10.1007/BF00272761.
10
Effect of auxin and abscisic acid on cell wall extensibility in maize coleoptiles.生长素和脱落酸对玉米胚芽鞘细胞壁延伸性的影响。
Planta. 1986 Apr;167(4):527-35. doi: 10.1007/BF00391229.
Planta. 1973 Mar;114(1):63-73. doi: 10.1007/BF00390285.
4
Fusicoccin-induced growth and hydrogen ion excretion of Avena coleoptiles: Relation to auxin responses.福司可林诱导的燕麦胚芽鞘生长和氢离子排泄:与生长素响应的关系。
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5
Auxin-induced hydrogen ion excretion: correlation with growth, and control by external pH and water stress.生长素诱导的氢离子排泄:与生长的相关性,以及对外界 pH 值和水分胁迫的控制。
Planta. 1975 Jan;127(3):233-42. doi: 10.1007/BF00380720.
6
Does indoleacetic acid promote growth via cell wall acidification?吲哚乙酸是否通过细胞壁酸化促进生长?
Planta. 1978 Jan;140(2):137-42. doi: 10.1007/BF00384912.
7
Levels of indole-3-acetic acid in intact and decapitated coleoptiles as determined by a specific and highly sensitive solid-phase enzyme immunoassay.采用特异性和高灵敏度固相酶免疫分析法测定完整和去顶胚芽鞘中吲哚-3-乙酸的水平。
Planta. 1981 Dec;153(6):561-71. doi: 10.1007/BF00385542.
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Responses of Avena coleoptiles to suboptimal fusicoccin: kinetics and comparisons with indoleacetic Acid.燕麦胚芽鞘对次优浓度壳梭孢菌素的反应:动力学及与吲哚乙酸的比较
Plant Physiol. 1981 Sep;68(3):543-7. doi: 10.1104/pp.68.3.543.
10
Effect of salt on auxin-induced acidification and growth by pea internode sections.盐对豌豆节间切段生长素诱导的酸化和生长的影响。
Plant Physiol. 1981 Jul;68(1):59-64. doi: 10.1104/pp.68.1.59.