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Cytokinins and auxins control the expression of a gene in Nicotiana plumbaginifolia cells by feedback regulation.

机译:细胞分裂素和植物生长素通过反馈调节来控制烟草中的基因表达。

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摘要

Both cytokinin (N6-benzyladenine [BA]) and auxin (2,4-dichlorophenoxyacetic acid [2,4-D]) stimulate the accumulation of an mRNA, represented by the cDNA pLS216, in Nicotiana plumbaginifolia suspension culture cells. The kinetics of RNA accumulation were different for the two hormones; however, the response to both was transient, and the magnitude of the response was dose dependent. Runoff transcription experiments demonstrated that the transient appearance of the RNA could be accounted for by feedback regulation of transcription and not by the induction of an RNA degradation system. The feedback mechanism appeared to desensitize the cells to further exposure of the hormone. In particular, cells became refractory to the subsequent addition of 2,4-D after the initial RNA accumulation response subsided. A very different response was observed when the second hormone was added to cells that had been desensitized to the first hormone. Under such conditions, BA produced a heightened response in cells desensitized to 2,4-D and vice versa. These findings support a model in which cytokinin further enhances the auxin response or prevents its feedback inhibition. The hormone-induced RNA accumulation was blocked by the protein kinase inhibitor staurosporin. On the other hand, the protein phosphatase inhibitor okadaic acid stimulated expression, and, in particular, okadaic acid was able to stimulate RNA accumulation in cells desensitized to auxin. This suggests that hormone activation involves phosphorylation of critical proteins on the hormone signaling pathway, whereas feedback inhibition may involve dephosphorylation of these proteins. The sequence of pLS216 is similar to genes in other plants that are stimulated by multiple agonists such as auxins, elicitors, and heavy metals, and to the gene encoding the stringent starvation protein in Escherichia coli. It is proposed that this gene family in various plants be called multiple stimulus response (msr) genes.
机译:细胞分裂素(N6-苄基腺嘌呤[BA])和生长素(2,4-二氯苯氧基乙酸[2,4-D])均在烟草李子悬浮培养细胞中刺激以cDNA pLS216表示的mRNA的积累。两种激素的RNA积累动力学不同。但是,对两者的反应都是短暂的,并且反应的幅度与剂量有关。径流转录实验表明,RNA的瞬时出现可以通过转录的反馈调节而不是通过诱导RNA降解系统来解决。反馈机制似乎使细胞对激素进一步暴露脱敏。特别是,最初的RNA积累反应减弱后,细胞对随后添加的2,4-D变得难治。当将第二种激素添加到对第一种激素脱敏的细胞中时,观察到非常不同的反应。在这种条件下,BA在对2,4-D脱敏的细胞中产生增强的反应,反之亦然。这些发现支持了其中细胞分裂素进一步增强植物生长素应答或防止其反馈抑制的模型。激素诱导的RNA积累被蛋白激酶抑制剂星形孢菌素阻断。另一方面,蛋白质磷酸酶抑制剂冈田酸刺激表达,特别是冈田酸能够刺激对生长素脱敏的细胞中的RNA蓄积。这表明激素激活涉及激素信号传导途径中关键蛋白的磷酸化,而反馈抑制可能涉及这些蛋白的去磷酸化。 pLS216的序列类似于其他植物中被多种激动剂(如植物生长素,引发剂和重金属)刺激的基因,以及编码大肠杆菌中严格饥饿蛋白的基因。有人提出在各种植物中将该基因家族称为多重刺激反应(msr)基因。

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