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The diageotropica mutation and synthetic auxins differentially affect the expression of auxin-regulated genes in tomato.

机译:diageotropica突变和合成的生长素差异影响番茄中生长素调节基因的表达。

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摘要

The effect of a tomato (Lycopersicon esculentum) mutation, diageotropica (dgt), on the accumulation of mRNA corresponding to tomato homologs of three auxin-regulated genes, LeAux, LeSAUR, and Lepar, was examined. The dgt mutation inhibited the induction of LeAux and LeSAUR mRNA accumulation by naphthalene acetic acid (NAA) but had no effect on NAA-induced Lepar mRNA accumulation. The effect of two synthetic auxins, NAA and 3,7-dichloro-8-quinoline carboxylic acid (quinclorac), on the accumulation of LeAux, LeSAUR, and Lepar mRNA was also examined. Quinclorac induced the expression of each of the auxin-regulated genes, confirming its proposed mode of herbicidal action as an auxin-type herbicide. Concentrations of quinclorac at least 100-fold higher than NAA were required to induce LeAux and LeSAUR mRNA accumulation to similar levels, whereas Lepar mRNA accumulation was induced by similar concentrations of NAA and quinclorac. Collectively, these data suggest the presence of two auxin-dependent signal transduction pathways: one that regulates LeSAUR and LeAux mRNA accumulation and is interrupted by the dgt mutation and a second that regulates Lepar mRNA accumulation and is not defective in dgt tomato hypocotyls. These two auxin-regulated signal transduction pathways can be further discriminated by the action of two synthetic auxins, NAA and quinclorac.
机译:检验了番茄(番茄)(Lycopersicon esculentum)突变diageotropica(dgt)对与生长素调节的三个基因LeAux,LeSAUR和Lepar的番茄同源物相对应的mRNA积累的影响。 dgt突变抑制了萘乙酸(NAA)对LeAux和LeSAUR mRNA积累的诱导,但对NAA诱导的Lepar mRNA积累没有影响。还检查了两种合成植物生长素,NAA和3,7-二氯-8-喹啉羧酸(quinclorac)对LeAux,LeSAUR和Lepar mRNA积累的影响。 Quinclorac诱导了每个生长素调节基因的表达,证实了其作为生长素型除草剂的除草作用模式。要使LeAux和LeSAUR mRNA积累达到相似水平,需要将喹诺拉菌素的浓度至少比NAA高100倍,而通过相似浓度的NAA和喹诺拉利克来诱导Lepar mRNA的积累。总体而言,这些数据表明存在两种生长素依赖性信号转导途径:一种调节LeSAUR和LeAux mRNA的积累,并被dgt突变打断,另一种调节Lepar mRNA的积累,并且在dgt番茄下胚轴中没有缺陷。这两种植物生长素调节的信号转导途径可以通过两种合成植物生长素,NAA和喹克洛拉克的作用进一步区分。

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