首页> 美国卫生研究院文献>The EMBO Journal >Light-induced switch in barley psbD-psbC promoter utilization: a novel mechanism regulating chloroplast gene expression.
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Light-induced switch in barley psbD-psbC promoter utilization: a novel mechanism regulating chloroplast gene expression.

机译:大麦psbD-psbC启动子利用中的光诱导开关:调节叶绿体基因表达的新机制。

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摘要

The synthesis of reaction center protein D2 and mRNAs which encode this protein are differentially maintained at high levels in mature barley chloroplasts. To understand the differential maintenance of psbD mRNA abundance, we have studied the transcription and the RNAs produced from the psbD-psbC operon in plastids of light and dark-grown barley seedlings. Ten psbD-psbC RNAs synthesized in dark-grown barley share four different 5'-ends, two of which arise by transcription initiation, and one of which is generated by 5'-processing of longer psbD-psbC transcripts. Illumination of dark-grown barley causes the decline of these ten transcripts, and the accumulation of two different psbD-psbC RNAs. Capping assays, in vitro transcription and RNA processing experiments and treatment of plants with tagetitoxin (a selective inhibitor of chloroplast transcription), indicate that the light-induced transcripts arise by transcription initiation. Run-on transcription and RNA quantitation experiments provide evidence that both light-induced transcription and RNA stability play roles in the accumulation of the light-induced RNAs. These data document a novel mechanism for regulating plastid gene expression involving a light-induced switch in psbD-psbC promoter utilization.
机译:在成熟的大麦叶绿体中,反应中心蛋白D2和编码该蛋白的mRNA的合成被高水平地维持。为了了解psbD mRNA丰度的差异性维持,我们研究了浅色和深色生长大麦幼苗质体中psbD-psbC操纵子的转录和RNA。在深色大麦中合成的十个psbD-psbC RNA具有四个不同的5'-末端,其中两个是通过转录起始产生的,另一个是通过较长psbD-psbC转录本的5'-加工产生的。深色大麦的照明导致这十个转录本的下降,以及两个不同psbD-psbC RNA的积累。上限测定,体外转录和RNA加工实验以及用tagetitoxin(叶绿体转录的选择性抑制剂)处理植物表明,光诱导的转录本通过转录起始而产生。连续转录和RNA定量实验提供了证据,证明光诱导的转录和RNA稳定性均在光诱导的RNA积累中起作用。这些数据记录了一种调控质体基因表达的新机制,该机制涉及psbD-psbC启动子利用中的光诱导开关。

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