烟草质体编码的 RNA 聚合酶基因的中断:只有一组不同基因的表达不是基于质体染色体的选择性转录。

K Krause, R M Maier, W Kofer, K Krupinska, R G Herrmann
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引用次数: 109

摘要

高等植物的质体至少有两种不同的 DNA 依赖性 RNA 聚合酶,它们分别在细胞器(PEP)和细胞核(NEP)中编码。研究人员采用质粒运转试验和 Northern 分析方法,分析了缺乏 PEP 基因 rpoA、rpoB 或 rpoC1 的烟草突变质粒的基因表达情况。将转录本与代表整个烟草质体染色体的限制性片段以及选定的质体基因特异性探针杂交,结果表明在 rpo 缺失的质体中,质体 DNA 的所有部分都有转录。与野生型叶绿体在光下优先转录光合作用相关基因的特点相比,突变体质粒表现出不同的转录模式,单个基因之间的杂交强度差异不明显。对两种质粒中选定基因的稳态转录模式和转录率的分析表明,转录率的差异并不一定与转录水平的相应变化同步。突变体质粒中大转录本的积累表明,在缺乏 PEP 的情况下,初级转录本的处理可能会受损。这些数据表明,与普遍的观点相反,在 rpo 缺失的突变体中,NEP 驱动的质体基因表达的大部分调控并非基于不同的启动子使用情况,而是在转录后水平上进行的。
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Disruption of plastid-encoded RNA polymerase genes in tobacco: expression of only a distinct set of genes is not based on selective transcription of the plastid chromosome.

Plastids of higher plants operate with at least two distinct DNA-dependent RNA polymerases, which are encoded in the organelle (PEP) and in the nucleus (NEP), respectively. Plastid run-on assays and Northern analyses were employed to analyse gene expression in tobacco mutant plastids lacking the PEP genes rpoA, rpoB or rpoC1. Hybridisation of run-on transcripts to restriction fragments representing the entire tobacco plastid chromosome, as well as to selected plastid gene-specific probes, shows that all parts of the plastid DNA are transcribed in rpo-deficient plastids. In comparison to wild-type chloroplasts, which are characterized by preferential transcription of photosynthesis-related genes in the light, mutant plastids exhibit a different transcription pattern with less pronounced differences in the hybridisation intensities between the individual genes. The analysis of steady-state transcript patterns and transcription rates of selected genes in both types of plastids demonstrates that differences in transcription rates are not necessarily paralleled by corresponding changes in transcript levels. The accumulation of large transcripts in the mutant plastids indicates that processing of primary transcripts may be impaired in the absence of PEP. These data suggest that, contrary to the prevailing view, much of the regulation of NEP-driven plastid gene expression in the rpo-deficient mutants is not based on differential promoter usage but is exerted at post-transcriptional levels.

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