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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >The complete mitochondrial genome of the Caulerpa lentillifera (Ulvophyceae, Chlorophyta): Sequence, genome content, organization structure and phylogenetic consideration
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The complete mitochondrial genome of the Caulerpa lentillifera (Ulvophyceae, Chlorophyta): Sequence, genome content, organization structure and phylogenetic consideration

机译:Caulerpa Lentillifera(Ulvophyceae,叶绿藻)的完全线粒体基因组:序列,基因组含量,组织结构和系统发育考虑

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The complete mitochondrial genome is greatly important for studies on genetic structure and phylogenetic relationship at various taxonomic levels. To obtain information about the evolutionary trends of mtDNA in the Ulvophyceae and also to gain insights into the phylogenetic relationships between ulvophytes and other chlorophytes, we determined the mtDNA sequence of Caulerpa lentillifera (sea grape) using de novo mitochondrial genome sequencing. The complete genomic DNA of C. lentillifera was circular and 209,034 bp in length, and it was the largest green-algal mitochondrial genome sequenced to date, with a low gene density of 65.2%, which is reminiscent of the "expanded" pattern of evolution exhibited by embryophyte mtDNAs. The C. lentillifera mtDNA consisted of a typical set of 17 protein-coding genes (PCGs), 20 transfer RNA (tRNA) genes, three ribosomal RNA (rRNA) genes, 42 putative open reading frames (ORFs) and 29 introns, which had homologs in green-algal mtDNAs displaying an "ancestral" or a "reduced-derived" pattem of evolution. The overall base composition of its mitochondrial genome was 24.19% for A, 24.94% for T, 25.80% for G, 25.07% for C and 50.87% for GC. The mitochondrial genome of C. lentillifera was characterized by numerous small intergenic regions and introns, which was clearly different from other green algae. With the exception of the NADH dehydrogenase subunit 6 (ND6), ND1, ATP and three tRNA genes (tRNA-His, tRNA-Thr and tRNA-Ala), all other mitochondrial genes were encoded on the heavy strand. All of the PCGs had ATG as their start codon and employed TAA, TGA or TAG as their termination codon. To gain insights into the evolutionary trends of mtDNA in the Ulvophyceae, we inferred the complete mtDNA sequence of C. lentillifera, an ulvophyte belonging to a distinct, early-diverging lineage. Taken together, our data offered useful information for the studies on phylogenetic hypotheses and phylogenetic relationships of C. lentillifera within the Chlorophyta.
机译:完全线粒体基因组对于各种分类水平的遗传结构和系统发育关系的研究非常重要。为了获得有关Ulvophyceae中MTDNA的进化趋势的信息,也能够利用De Novo线粒体基因组测序确定Caulerpa Lentillifers(海葡萄)的MTDNA序列。 C.甘氨酸的完整基因组DNA是圆形和209,034bp的长度,是迄今为止最大的绿藻模型基因组,低基因密度为65.2%,这使得“膨胀”的进化模式激动由胚胎MTDNA展示。 C. Lentillifera MTDNA由典型的17个蛋白质编码基因(PCG),20个转移RNA(TRNA)基因,三个核糖体RNA(RRNA)基因,42个推定的开放阅读框架(ORF)和29个内含者组成,具有绿色藻类MTDNA中的同源物显示出“祖传”或“减少的”演变的“减少”。其线粒体基因组的总基础组成为24.19%,对于G,25.80%的22.94%,对于GC的25.07%,25.07%和50.87%。 C. Lentillifera的线粒体基因组特征在于许多小的基因因子和内含子,其与其他绿藻显然不同。除了NADH脱氢酶亚基6(ND6),ND1,ATP和三个TRNA基因(TRNA-HI,TRNA-THR和TRNA-ALA),所有其他线粒体基因在重型链中编码。所有PCG都作为他们的起始密码子,并使用TAA,TGA或标签作为其终端密码子。为了深入了解溃疡性岩浆中MTDNA的进化趋势,我们推断了C. Lentillifera的完整MTDNA序列,溃疡属于明显的早期分歧的谱系。我们的数据携带,我们的数据为C.叶绿素内C. Lentillifera的系统发育假假想和系统发育关系提供了有用的信息。

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