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Structural dynamics of cereal mitochondrial genomes as revealed by complete nucleotide sequencing of the wheat mitochondrial genome

机译:小麦线粒体基因组的完整核苷酸测序揭示了谷物线粒体基因组的结构动力学

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The application of a new gene-based strategy for sequencing the wheat mitochondrial genome shows its structure to be a 452 528 bp circular molecule, and provides nucleotide-level evidence of intra-molecular recombination. Single, reciprocal and double recombinant products, and the nucleotide sequences of the repeats that mediate their formation have been identified. The genome has 55 genes with exons, including 35 protein-coding, 3 rRNA and 17 tRNA genes. Nucleotide sequences of seven wheat genes have been determined here for the first time. Nine genes have an exon-intron structure. Gene amplification responsible for the production of multicopy mitochondrial genes, in general, is species-specific, suggesting the recent origin of these genes. About 16, 17, 15, 3.0 and 0.2% of wheat mitochondrial DNA (mtDNA) may be of genic (including introns), open reading frame, repetitive sequence, chloroplast and retro-element origin, respectively. The gene order of the wheat mitochondrial gene map shows little synteny to the rice and maize maps, indicative that thorough gene shuffling occurred during speciation. Almost all unique mtDNA sequences of wheat, as compared with rice and maize mtDNAs, are redundant DNA. Features of the gene-based strategy are discussed, and a mechanistic model of mitochondrial gene amplification is proposed.
机译:一种新的基于基因的小麦线粒体基因组测序策略的应用表明其结构为452 528 bp环状分子,并提供了分子内重组的核苷酸水平证据。已经鉴定了单,双向和双重组产物,以及介导其形成的重复序列的核苷酸序列。该基因组有55个外显子基因,包括35个蛋白质编码,3个rRNA和17个tRNA基因。此处首次确定了七个小麦基因的核苷酸序列。九个基因具有外显子-内含子结构。通常,负责产生多拷贝线粒体基因的基因扩增是物种特异性的,表明这些基因的最新起源。小麦线粒体DNA(mtDNA)的约16%,17%,15%,3.0%和0.2%可能是基因(包括内含子),开放阅读框,重复序列,叶绿体和逆转录元素起源。小麦线粒体基因图谱的基因顺序与水稻和玉米图谱几乎没有一致性,表明在物种形成过程中发生了彻底的基因改组。与水稻和玉米的mtDNA相比,小麦的几乎所有独特的mtDNA序列都是多余的DNA。讨论了基于基因的策略的特点,并提出了线粒体基因扩增的机理​​模型。

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