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Alternative promoters are used for genes within maize chloroplast polycistronic transcription units.

机译:替代启动子用于玉米叶绿体多顺反子转录单位内的基因。

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摘要

Many chloroplast genes are co-transcribed in polycistronic transcription units that give rise to numerous overlapping RNAs, but the significance of this pattern of transcript accumulation is not understood. An analysis of the transcripts of the adjacent and divergent maize psbE-psbF-psbL-ORF40 and ORF31-petE-ORF42 gene clusters indicates that transcription initiation at alternative promoters contributes to the generation of overlapping RNAs for both clusters. Furthermore, developmentally varying transcript ratios for the ORF31-petE-ORF42 gene cluster are determined at least in part by selective promoter usage. During light-induced plastid maturation, increased levels of primarily monocistronic petE transcripts accumulate from a promoter upstream of the internal petE gene. Dark-predominant and non-light-responsive bi- and tricistronic transcripts result from transcription initiation upstream of ORF31, the proximal gene of the cluster. In addition to the transcriptional overlap within gene clusters, divergent transcription units for the two gene clusters overlap and reciprocal antisense RNAs accumulate. The organization of the transcription units in this region raises the possibility of promoter interdependence or other functional interaction between transcription units.
机译:许多叶绿体基因在多顺反子转录单位中共转录,产生大量重叠的RNA,但这种转录物积累模式的重要性尚不清楚。对相邻和发散的玉米psbE-psbF-psbL-ORF40和ORF31-petE-ORF42基因簇的转录本的分析表明,替代启动子处的转录起始有助于两个簇的重叠RNA的产生。此外,ORF31-petE-ORF42基因簇的发育变化的转录比例至少部分由选择性启动子的使用决定。在光诱导的质体成熟过程中,从内部petE基因上游的启动子积累的单顺反子petE转录物水平增加。暗显性和非光响应性双顺反子和三顺反子转录物是由ORF31(该簇的近端基因)上游的转录起始产生的。除了基因簇中的转录重叠之外,两个基因簇的不同转录单位也重叠,并且反义RNA相互积累。该区域中转录单位的组织提高了启动子相互依赖性或转录单位之间其他功能相互作用的可能性。

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