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番茄果实组织中生长素的代谢:通过吲哚乙酰天冬氨酸氧化形成吲哚-3-乙酸的高分子量结合物。

Metabolism of Auxin in Tomato Fruit Tissue: Formation of High Molecular Weight Conjugates of Oxindole-3-Acetic Acid via the Oxidation of Indole-3-Acetylaspartic Acid.

机构信息

Institut für Obst-, Gemüse- und Weinbau, Universität Hohenheim, 7000 Stuttgart 70, Germany.

出版信息

Plant Physiol. 1992 Nov;100(3):1396-402. doi: 10.1104/pp.100.3.1396.

Abstract

High performance liquid chromatography of extracts of tomato (Lycopersicon esculentum Mill.) incubated with a relatively low concentration (4 mum) of [1-(14)C]indole-3-acetic acid (IAA) revealed the presence of two major polar metabolites. Hydrolysis of the two metabolites with 7 n NaOH yielded the same compound, which had a retention time similar to that of ring-expanded oxindole-3-acetic acid (OxIAA) on high performance liquid chromatography. The identity of the indolic moiety of these conjugates as OxIAA was further confirmed by gas chromatography-mass spectrometry. Chromatography of the two OxIAA conjugates on a calibrated Bio-Gel P-2 column indicated that their molecular weights are about 1200 and 1000. Aspartic acid and glutamic acid were the major amino acids detected in acid hydrolysates of the two conjugates. Increasing the concentration of IAA in the incubation medium resulted in an increase in the formation of indole-3-acetylaspartic acid (IAAsp) with a concomitant decrease in the formation of the two OxIAA conjugates. Feeding experiments with labeled IAAsp and OxIAA showed that IAAsp and not OxIAA is the precursor of these conjugates. The data obtained indicate that exogenous IAA is converted in tomato pericarp tissue to high molecular weight conjugates, presumably peptides, of OxIAA via the oxidation of IAAsp. The oxidation of IAAsp seems to be a rate-limiting step in the formation of these conjugates from exogenous IAA.

摘要

用相对低浓度(4 微摩尔)的[1-(14)C]吲哚-3-乙酸(IAA)培养番茄(Lycopersicon esculentum Mill.)提取物的高效液相色谱分析显示出两种主要的极性代谢物的存在。用 7 n NaOH 水解这两种代谢物得到了相同的化合物,其保留时间与高效液相色谱中环扩展的吲哚-3-乙酸(OxIAA)相似。这些结合物吲哚部分的身份作为 OxIAA 进一步通过气相色谱-质谱法得到证实。两种 OxIAA 结合物在经过校准的 Bio-Gel P-2 柱上的色谱分析表明,它们的分子量约为 1200 和 1000。在两种结合物的酸水解物中检测到的主要氨基酸是天冬氨酸和谷氨酸。在孵育培养基中增加 IAA 的浓度会导致吲哚-3-乙酰天冬氨酸(IAAsp)的形成增加,同时两种 OxIAA 结合物的形成减少。用标记的 IAAsp 和 OxIAA 进行喂养实验表明,IAAsp 而不是 OxIAA 是这些结合物的前体。所得数据表明,外源 IAA 在番茄果皮组织中被转化为 OxIAA 的高分子量结合物,可能是肽,通过 IAAsp 的氧化。IAAsp 的氧化似乎是从外源 IAA 形成这些结合物的限速步骤。

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