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浮萍中单个rbcS mRNA器官特异性表达的转录后调控。

Post-transcriptional regulation of organ-specific expression of individual rbcS mRNAs in Lemna gibba.

作者信息

Silverthorne J, Tobin E M

机构信息

Department of Biology, University of California, Los Angeles 90024.

出版信息

Plant Cell. 1990 Dec;2(12):1181-90. doi: 10.1105/tpc.2.12.1181.

Abstract

Many studies of nuclear genes encoding chloroplast proteins have focused on the transcriptional regulation of their expression. The genes (rbcS) encoding the small subunit (SSU) of ribulose-1,5-bisphosphate carboxylase/oxygenase, a major stromal protein, comprise one such group. We have examined the role played by post-transcriptional events in determining the relative levels of individual rbcS mRNAs in different organs of the aquatic monocot Lemna gibba. L. gibba is unusual among angiosperms in that its roots are normally exposed to light during growth and contain chloroplasts. We have found that such roots transcribe rbcS genes and contain rbcS mRNA. We have used sequence-specific probes from the 3'-untranslated region of six rbcS genes from L. gibba to analyze the expression of the individual genes in different organs. All six genes were expressed in steady-state mRNA in fronds grown in constant white light. However, only five of these were easily detectable in steady-state mRNA isolated from roots of the same plants, and the relative expression of each gene varied between the roots and the fronds. In steady-state mRNA, SSU1 was found to be highly expressed in both roots and fronds, whereas SSU40B was expressed at low levels in the roots as compared with the fronds, and SSU5B RNA was barely detectable in the roots. The extremely low level of SSU5B RNA in steady-state root mRNA is likely to be a consequence of post-transcriptional events because this gene was transcribed at comparable rates in vitro in nuclei isolated from either roots or fronds. Localization of individual gene transcripts by in situ hybridization showed that SSU1 and SSU5B are expressed in the same cells in the fronds. Thus, the mechanism of differential expression is likely to involve an organ-specific post-transcriptional mechanism.

摘要

许多关于编码叶绿体蛋白的核基因的研究都集中在其表达的转录调控上。编码核酮糖-1,5-二磷酸羧化酶/加氧酶(一种主要的基质蛋白)小亚基(SSU)的基因(rbcS)就属于这样一组基因。我们研究了转录后事件在决定水生单子叶植物浮萍不同器官中各个rbcS mRNA相对水平方面所起的作用。浮萍在被子植物中很不寻常,因为其根在生长过程中通常暴露于光下且含有叶绿体。我们发现这样的根转录rbcS基因并含有rbcS mRNA。我们使用了来自浮萍六个rbcS基因3'-非翻译区的序列特异性探针来分析不同器官中各个基因的表达。所有六个基因在持续白光下生长的叶片中均以稳态mRNA形式表达。然而,从同一植株的根中分离得到的稳态mRNA中,只有五个基因易于检测到,并且每个基因在根和叶中的相对表达有所不同。在稳态mRNA中,发现SSU1在根和叶中均高度表达,而与叶相比,SSU40B在根中的表达水平较低,并且在根中几乎检测不到SSU5B RNA。稳态根mRNA中SSU5B RNA的极低水平可能是转录后事件的结果,因为该基因在从根或叶中分离的细胞核中体外转录速率相当。通过原位杂交对单个基因转录本进行定位表明,SSU1和SSU5B在叶中的相同细胞中表达。因此,差异表达的机制可能涉及器官特异性的转录后机制。

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