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Organization of the mitochondrial genome of a deep-sea fish, Gonostoma gracile (Teleostei: Stomiiformes): first example of transfer RNA gene rearrangements in bony fishes

机译:深海鱼类Gonostoma gracile(Teleostei:Stomiiformes)的线粒体基因组的组织:骨鱼类中转移RNA基因重排的第一个例子

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We determined the complete nucleotide sequence of the mitochondrial genome (except for a portion of the putative control region) for a deep-sea fish, Gonostoma gracile. The entire mitochondrial genome was purified by gene amplification using long polymerase chain reaction (long PCR), and the products were subsequently used as templates for PCR with 30 sets of newly designed, fish-universal primers that amplify contiguous, overlapping segments of the entire genome. Direct sequencing of the PCR products showed that the genome contained the same 37 mitochondrial structural genes as found in other vertebrates (two ribosomal RNA, 22 transfer RNA, arid 13 protein-coding genes), with the order of all rRNA and protein-coding genes, and 19 tRNA genes being identical to that in typical vertebrates. The gene order of the three tRNAs (tRNA~(Glu), tRNA~(Thr), and tRNA~(Pro)) relative to cytochrome b, however, differed from that determined in other vertebrates. Two steps of tandem duplication of gene regions, each followed by deletions of genes, can be invoked as mechanisms generating such rearrangements of tRNAs. This is the first example of tRNA gene rearrangements in a bony fish mitochondrial genome.
机译:我们确定了深海鱼类Gonostoma gracile的线粒体基因组的完整核苷酸序列(假定控制区域的一部分除外)。使用长聚合酶链反应(long PCR)通过基因扩增纯化整个线粒体基因组,随后将这些产物用作PCR模板,并使用30组新设计的鱼通用引物扩增整个基因组的连续重叠片段。 PCR产物的直接测序表明,该基因组包含与其他脊椎动物相同的37个线粒体结构基因(两个核糖体RNA,22个转移RNA,13个蛋白质编码基因),其顺序为所有rRNA和蛋白质编码基因和19个tRNA基因与典型脊椎动物相同。相对于细胞色素b,这三种tRNA(tRNA〜(Glu),tRNA〜(Thr)和tRNA〜(Pro))的基因顺序不同于其他脊椎动物。可以调用基因区域串联重复的两个步骤,每个步骤之后是基因的缺失,作为产生此类tRNA重排的机制。这是骨鱼类线粒体基因组中tRNA基因重排的第一个例子。

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