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Light represses transcription of asparagine synthetase genes in photosynthetic and nonphotosynthetic organs of plants.

机译:光抑制植物光合作用和非光合作用器官中天冬酰胺合成酶基因的转录。

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Asparagine synthetase (AS) mRNA in Pisum sativum accumulates preferentially in plants grown in the dark. Nuclear run-on experiments demonstrate that expression of both the AS1 and AS2 genes is negatively regulated by light at the level of transcription. A decrease in the transcriptional rate of the AS1 gene can be detected as early as 20 min after exposure to light. Time course experiments reveal that the levels of AS mRNA fluctuate dramatically during a "normal" light/dark cycle. This is due to a direct effect of light and not to changes associated with circadian rhythm. A novel finding is that the light-repressed expression of the AS1 gene is as dramatic in nonphotosynthetic organs such as roots as it is in leaves. Experiments demonstrate that the small amount of light which passes through the soil is sufficient to repress AS1 expression in roots, indicating that light has a direct effect on AS1 gene expression in roots. The negative regulation of AS gene expression by light was shown to be a general phenomenon in plants which also occurs in nonlegumes such as Nicotiana plumbaginifolia and Nicotiana tabacum. Thus, the AS genes can serve as a model with which to dissect the molecular basis for light-regulated transcriptional repression in plants.
机译:豌豆中的天冬酰胺合成酶(AS)mRNA在黑暗中生长的植物中优先积累。核实验表明,AS1和AS2基因的表达在转录水平上受到光的负调控。可以在曝光后20分钟之内检测到AS1基因转录速率的降低。时程实验表明,AS mRNA的水平在“正常”的明/暗循环中会剧烈波动。这是由于光的直接作用,而不是与昼夜节律有关的变化。一个新发现是,光抑制的AS1基因表达在非光合作用器官(例如根)中与在叶片中一样显着。实验表明,少量穿过土壤的光足以抑制根中AS1的表达,这表明光直接影响根中AS1基因的表达。已经证明,通过光对AS基因表达的负调控是植物中的普遍现象,这种现象也发生在非豆科植物如烟草李子和烟草中。因此,AS基因可以作为解剖植物中光调节转录抑制的分子基础的模型。

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