Department of Biochemistry, University of Cambridge, Building O, Downing Site, Tennis Court Road, Cambridge, CB2 1QW, UK.
Plant Mol Biol. 2012 Jul;79(4-5):347-57. doi: 10.1007/s11103-012-9916-z. Epub 2012 May 5.
Although transcription and transcript processing in the chloroplasts of plants have been extensively characterised, the RNA metabolism of other chloroplast lineages across the eukaryotes remains poorly understood. In this paper, we use RT-PCR to study transcription and transcript processing in the chloroplasts of Amphidinium carterae, a model peridinin-containing dinoflagellate. These organisms have a highly unusual chloroplast genome, with genes located on multiple small 'minicircle' elements, and a number of idiosyncratic features of RNA metabolism including transcription via a rolling circle mechanism, and 3' terminal polyuridylylation of transcripts. We demonstrate that transcription occurs in A. carterae via a rolling circle mechanism, as previously shown in the dinoflagellate Heterocapsa, and present evidence for the production of both polycistronic and monocistronic transcripts from A. carterae minicircles, including several regions containing ORFs previously not known to be expressed. We demonstrate the presence of both polyuridylylated and non-polyuridylylated transcripts in A. carterae, and show that polycistronic transcripts can be terminally polyuridylylated. We present a model for RNA metabolism in dinoflagellate chloroplasts where long polycistronic precursors are processed to form mature transcripts. Terminal polyuridylylation may mark transcripts with the correct 3' end.
尽管植物叶绿体中的转录和转录后处理已经得到了广泛的研究,但真核生物中其他叶绿体谱系的 RNA 代谢仍知之甚少。在本文中,我们使用 RT-PCR 研究了甲藻 Amphidinium carterae 叶绿体中的转录和转录后处理。这些生物的叶绿体基因组非常不寻常,基因位于多个小型“迷你环”元件上,并且具有一些独特的 RNA 代谢特征,包括通过滚环机制进行转录,以及转录本 3'末端多聚尿苷酸化。我们证明了转录在 Amphidinium carterae 中通过滚环机制进行,如先前在甲藻 Heterocapsa 中所示,并提供了从 Amphidinium carterae 迷你环产生多顺反子和单顺反子转录本的证据,包括几个包含以前未知表达的 ORF 的区域。我们证明了 Amphidinium carterae 中存在多聚尿苷酸化和非多聚尿苷酸化的转录本,并表明多顺反子转录本可以在末端多聚尿苷酸化。我们提出了一个甲藻叶绿体 RNA 代谢模型,其中长的多顺反子前体被加工形成成熟的转录本。末端多聚尿苷酸化可能会标记具有正确 3' 末端的转录本。