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Co-regulation of nuclear genes encoding plastid ribosomal proteins by light and plastid signals during seedling development in tobacco and Arabidopsis

机译:烟草和拟南芥幼苗发育过程中光和质体信号共同调控编码质体核糖体蛋白的核基因

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Genes encoding plastid ribosomal proteins are distributed between the nuclear and plastid genomes in higher plants, and coordination of their expression is likely to be required for functional plastid protein synthesis. A custom microarray has been used to examine the patterns of accumulation of transcripts from plastid and nuclear genes encoding plastid ribosomal proteins during seedling development in tobacco and Arabidopsis. The transcripts accumulate coordinately during early seedling development and show similar responses to light and to inhibitors, such as norflurazon and lincomycin, affecting plastid signaling. Computational analysis of the promoters of these genes revealed a shared initiator motif and common cis-elements characteristic of photosynthesis genes, specifically the GT-1 element, and the I-box. Analysis of the RPL27 gene of Arabidopsis thaliana indicated that transcription initiates from an initiator-like region. Deletion analysis of the RPL27 promoter in transgenic plants revealed that the identified shared cis-elements were not all required for wild-type expression patterns, and full developmental, light- and plastid-regulation can be conveyed by a region of the promoter from −235 to +1 relative to the transcription start site.
机译:编码质体核糖体蛋白的基因分布在高等植物的核基因组和质体基因组之间,功能性质体蛋白合成可能需要协调其表达。定制的微阵列已用于检查在烟草和拟南芥幼苗生长过程中质体和编码质体核糖体蛋白的核基因转录本的积累模式。转录物在幼苗早期发育过程中协调积累,并显示出对光和对影响质体信号传导的抑制剂(如诺氟拉松和林可霉素)的相似响应。这些基因的启动子的计算分析表明,光合作用基因具有共同的启动子基序和共同的顺式元素特征,特别是GT-1元素和I-box。对拟南芥RPL27基因的分析表明,转录起始于启动子样区域。对转基因植物中RPL27启动子的缺失分析表明,鉴定出的共享顺式元件并不是野生型表达模式所必需的,并且完整的发育,光和质体调节可通过-235的启动子区域来传递相对于转录起始位点+1。

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