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Expression of Photosynthetic Genes is Distinctly Different between Chloroplasts and Amyloplasts in the Liquid-Cultured Cells of Sycamore (Acer pseudoplatanus L.)

机译:美国梧桐(Acer pseudoplatanus L.)液体培养细胞中叶绿体和淀粉质体之间光合基因的表达明显不同

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References(38) Cited-By(3) A nonphotosynthetic, white-wild cell line of sycamore (Acer pseudoplatanus L.) contains amyloplasts as the only kind of plastic!, whereas a photosynthetically competent green variant cell line contains only chloroplasts. Transcripts of both nuclear and plastid genes for photosynthetic components in the white cells were not detectable in contrast to those in the green cells. To investigate the limiting step (s) behind these diminished levels of transcripts, we have performed in vivo pulse-chase labeling of RNAin both cell types. These studies indicated that the rates of incorporation of [3H]uridine and nucleotide pool sizes were indistinguishable between the two cell lines. Transcripts of certain nuclear (rbcS, cab, psbO) and plastid (rbcL) genes in the white cell were not detectable. Weinfer from these data that transcriptional regulation entails an important role in controlling photosynthetic RNAlevels. Related analyses exploiting plastid run-on transcription have provided supporting evidence that the transcription of the amyloplast genomein the white cell is greatly suppressed in contrast to that of the chloroplast genomein the green cell. The results support a model of selective suppression of photosynthesis genes in nonphotosynthetic higher plant cells, and indicate that gene expression in such a system is primarily controlled at the transcriptional level.
机译:参考文献(38)被引用的(3)美国梧桐的一种非光合作用,白野生细胞系(Acer pseudoplatanus L.)含有淀粉体作为唯一的塑料!而光合作用的绿色变体细胞系仅含有叶绿体。与绿色细胞相比,白细胞中光合作用的核基因和质体基因的转录本都无法检测到。为了研究这些转录物水平降低背后的限制性步骤,我们在两种细胞类型中都进行了RNA的体内脉冲追踪标记。这些研究表明,[3H]尿苷的掺入速率和核苷酸库大小在两种细胞系之间是无法区分的。无法检测到白细胞中某些核基因(rbcS,cab,psbO)和质体(rbcL)的转录本。从这些数据中我们可以推断,转录调控在控制光合作用RNA水平方面起着重要作用。利用质体连续转录进行的相关分析提供了支持性证据,与绿色细胞中叶绿体基因组的转录相比,白细胞中淀粉状体基因组的转录被大大抑制了。结果支持了非光合作用的高等植物细胞中光合作用基因的选择性抑制模型,并表明这种系统中的基因表达主要受转录水平的控制。

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