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水杨酸和苯甲酸在光周期不敏感品系少根紫萍LP6开花中的作用

Role of Salicylic Acid and Benzoic Acid in Flowering of a Photoperiod-Insensitive Strain, Lemna paucicostata LP6.

作者信息

Khurana J P, Cleland C F

机构信息

Smithsonian Environmental Research Center, Rockville, Maryland 20852.

出版信息

Plant Physiol. 1992 Nov;100(3):1541-6. doi: 10.1104/pp.100.3.1541.

Abstract

Lemna paucicostata LP6 does not normally flower when grown on basal Bonner-Devirian medium, but substantial flowering is obtained when 10 mum salicylic acid (SA) or benzoic acid is added to the medium. Benzoic acid is somewhat more effective than SA, and the threshold level of both SA and benzoic acid required for flower initiation is reduced as the pH of the medium is lowered to 4.0. SA- or benzoic acid-induced flowering is enhanced in the simultaneous presence of 6-benzylaminopurine (BAP), although BAP per se does not influence flowering in strain LP6. Continuous presence of SA or benzoic acid in the culture medium is essential to obtain maximal flowering. A short-term treatment of the plants (for first 24 h) with 10 mum SA or benzoic acid, followed by culture in the basal medium containing 1 mum BAP can, however, stimulate profuse flowering. Benzoic acid is more effective than SA, and the effect is more pronounced at pH 4 than at 5.5. Thus, under these conditions, flowering is of an inductive nature. Experiments with [(14)C]SA and [(14)C]benzoic acid have provided evidence that at pH 4 there is relatively more uptake of benzoic acid than SA, thus leading to an increased flowering response. The data obtained from the experiments designed to study the mobility of [(14)C]SA and [(14)C]-benzoic acid from mother to daughter fronds indicate that there is virtually no mobility of SA or benzoic acid between fronds.

摘要

少脉浮萍LP6在基础的邦纳 - 德维里安培养基上生长时通常不开花,但当向培养基中添加10 μmol水杨酸(SA)或苯甲酸时,会大量开花。苯甲酸比SA稍有效,并且随着培养基pH值降至4.0,诱导开花所需的SA和苯甲酸的阈值水平会降低。在同时存在6 - 苄基腺嘌呤(BAP)的情况下,SA或苯甲酸诱导的开花会增强,尽管BAP本身不影响LP6菌株的开花。培养基中持续存在SA或苯甲酸对于获得最大开花量至关重要。然而,用10 μmol SA或苯甲酸对植物进行短期处理(最初24小时),然后在含有1 μmol BAP的基础培养基中培养,可以刺激大量开花。苯甲酸比SA更有效,并且在pH 4时的效果比在5.5时更明显。因此,在这些条件下,开花具有诱导性质。用[¹⁴C]SA和[¹⁴C]苯甲酸进行的实验提供了证据,即在pH 4时,苯甲酸的吸收相对比SA多,从而导致开花反应增加。从旨在研究[¹⁴C]SA和[¹⁴C] - 苯甲酸从母叶到子叶的移动性的实验中获得的数据表明,SA或苯甲酸在叶状体之间几乎没有移动性。

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