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拟南芥中参与色氨酸生物合成途径的基因发生突变,会影响其在倾斜琼脂表面上的根弯曲。

Mutations in Arabidopsis thaliana genes involved in the tryptophan biosynthesis pathway affect root waving on tilted agar surfaces.

作者信息

Rutherford R, Gallois P, Masson P H

机构信息

Laboratory of Genetics, University of Wisconsin-Madison 53706, USA.

出版信息

Plant J. 1998 Oct;16(2):145-54. doi: 10.1046/j.1365-313x.1998.00279.x.

Abstract

Arabidopsis thaliana roots grow in a wavy pattern upon a slanted surface. A novel mutation in the anthranilate synthase alpha 1 (ASA1) gene, named trp5-2wvc1, and mutations in the tryptophan synthase alpha and beta 1 genes (trp3-1 and trp2-1, respectively) confer a compressed root wave phenotype on tilted agar surfaces. When trp5-2wvc1 seedlings are grown on media supplemented with anthranilate metabolites, their roots wave like wild type. Genetic and pharmacological experiments argue that the compressed root wave phenotypes of trp5-2wvc1, trp2-1 and trp3-1 seedlings are not due to reduced IAA biosynthetic potential, but rather to a deficiency in L-tryptophan (L-Trp), or in a L-Trp derivative. Although the roots of 7-day-old seedlings possess higher concentrations of free L-Trp than the shoot as a whole, trp5-2wvc1 mutants show no detectable alteration in L-Trp levels in either tissue type, suggesting that a very localized shortage of L-Trp, or of a L-Trp-derived compound, is responsible for the observed phenotype.

摘要

拟南芥的根在倾斜表面上呈波浪状生长。邻氨基苯甲酸合酶α1(ASA1)基因中的一种新突变,命名为trp5-2wvc1,以及色氨酸合酶α和β1基因中的突变(分别为trp3-1和trp2-1),在倾斜的琼脂表面上赋予根压缩波表型。当trp5-2wvc1幼苗在补充了邻氨基苯甲酸代谢物的培养基上生长时,它们的根像野生型一样呈波浪状。遗传和药理学实验表明,trp5-2wvc1、trp2-1和trp3-1幼苗的压缩根波表型不是由于IAA生物合成潜力降低,而是由于L-色氨酸(L-Trp)或L-Trp衍生物的缺乏。尽管7日龄幼苗的根中游离L-Trp的浓度高于整个地上部分,但trp5-2wvc1突变体在两种组织类型中的L-Trp水平均未显示出可检测到的变化,这表明L-Trp或L-Trp衍生化合物的非常局部的短缺是观察到的表型的原因。

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