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The Complete Mitochondrial DNA Sequence of Scenedesmus obliquus Reflects an Intermediate Stage in the Evolution of the Green Algal Mitochondrial Genome

机译:斜角场景线粒体DNA的完整序列反映了绿色藻线粒体基因组进化的中间阶段。

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摘要

Two distinct mitochondrial genome types have been described among the green algal lineages investigated to date: a reduced–derived, Chlamydomonas-like type and an ancestral, Prototheca-like type. To determine if this unexpected dichotomy is real or is due to insufficient or biased sampling and to define trends in the evolution of the green algal mitochondrial genome, we sequenced and analyzed the mitochondrial DNA (mtDNA) of Scenedesmus obliquus. This genome is 42,919 bp in size and encodes 42 conserved genes (i.e., large and small subunit rRNA genes, 27 tRNA and 13 respiratory protein-coding genes), four additional free-standing open reading frames with no known homologs, and an intronic reading frame with endonuclease/maturase similarity. No 5S rRNA or ribosomal protein-coding genes have been identified in Scenedesmus mtDNA. The standard protein-coding genes feature a deviant genetic code characterized by the use of UAG (normally a stop codon) to specify leucine, and the unprecedented use of UCA (normally a serine codon) as a signal for termination of translation. The mitochondrial genome of Scenedesmus combines features of both green algal mitochondrial genome types: the presence of a more complex set of protein-coding and tRNA genes is shared with the ancestral type, whereas the lack of 5S rRNA and ribosomal protein-coding genes as well as the presence of fragmented and scrambled rRNA genes are shared with the reduced–derived type of mitochondrial genome organization. Furthermore, the gene content and the fragmentation pattern of the rRNA genes suggest that this genome represents an intermediate stage in the evolutionary process of mitochondrial genome streamlining in green algae.[The sequence data described in this paper have been submitted to the GenBank data library under accession no. .]
机译:迄今为止,在研究的绿色藻类谱系中已经描述了两种不同的线粒体基因组类型:还原性衣原体样型和祖先类原虫型。为了确定这种意外的二分法是真实的,还是由于采样不足或有偏见而引起的,并确定绿色藻类线粒体基因组进化的趋势,我们对斜景线虫的线粒体DNA(mtDNA)进行了测序和分析。该基因组大小为42,919 bp,编码42个保守基因(即,大亚基和小亚基rRNA基因,27个tRNA和13个呼吸蛋白编码基因),另外四个没有已知同源物的独立开放阅读框和一个内含子具有内切核酸酶/成熟酶相似性的框架。在Scenedesmus mtDNA中未鉴定出5S rRNA或核糖体蛋白编码基因。标准的蛋白质编码基因具有异常的遗传密码,其特征在于使用UAG(通常是终止密码子)来指定亮氨酸,并且前所未有地使用UCA(通常是丝氨酸密码子)作为终止翻译的信号。 Scenedesmus的线粒体基因组结合了两种绿色藻线粒体基因组类型的特征:祖先类型共享一组更复杂的蛋白质编码和tRNA基因,而缺少5S rRNA和核糖体蛋白质编码基因因为片段化和混乱的rRNA基因的存在与线粒体基因组组织的减少派生类型共享。此外,rRNA基因的基因含量和片段化模式表明该基因组代表了绿藻线粒体基因组流线型进化过程中的一个中间阶段。[本文所述的序列数据已提交至GenBank数据库。登记号。]

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