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In vivo conformation and replication intermediates of circular mitochondrial plasmids in Neurospora and Cryphonectria parasitica.

机译:Neurospora 和 Cryphonectria parasitica 中环状线粒质粒的体内构象和复制中间体。

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The in vivo conformation and replication intermediates of fungal circular mitochondrial plasmids and plasmid-like mitochondrial element (plMEs) were analyzed by two-dimensional gel electrophoresis and electron microscopy. Plasmids with circular restriction maps exist predominantly as circular molecules and were found to replicate by rolling circle mechanisms. However, the reverse transcriptase-encoding Mauriceville plasmid of Neurospora crassa was observed to replicate by two possible mechanisms: one that is consistent with a reverse transcriptase-mediated process and a second one might involve rolling circle DNA replication. Like the mtDNA-derived plasmid-like elements of N. crassa (39 and 40), a plasmid-like element of Cryphonectria parasitica (plME-C9), which consists predominantly of a 1.4 kb nucleotide sequence different from mitochondrial DNA, also was found to replicate by a rolling circle mechanism. Although the techniques used in this study were not suited for the establishment of the in vivo conformation and mode of replication of the mtDNAs of Neurospora or Cryphonectria, we surmise that the rolling circle mechanism might be the predominant mode of DNA replication in fungal mitochondria.CAS Registry Numbers 9068-38-6
机译:采用二维凝胶电泳和电子显微镜分析了真菌环状线粒质粒和质粒样线粒元件(plMEs)的体内构象和复制中间体。具有环状限制性图谱的质粒主要以环状分子的形式存在,并被发现通过滚动环机制进行复制。然而,观察到编码 Neurospora crassa 的逆转录酶 Mauriceville 质粒通过两种可能的机制进行复制:一种与逆转录酶介导的过程一致,另一种可能涉及滚动环 DNA 复制。与 N. crassa 的 mtDNA 衍生质粒样元件 ([39] 和 [40]) 一样,Cryphonectria parasitica (plME-C9) 的质粒样元件主要由与线粒体 DNA 不同的 1.4 kb 核苷酸序列组成,也被发现通过滚动环机制进行复制。尽管本研究中使用的技术不适合建立神经孢子虫或Cryphonectria mtDNA的体内构象和复制模式,但我们推测滚动环机制可能是真菌线粒体中DNA复制的主要模式。CAS 号: 9068-38-6

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