首页> 外文期刊>Journal of Molecular Evolution >The Mitochondrial Genome of a Deep-Sea Bamboo Coral (Cnidaria, Anthozoa, Octocorallia, Isididae): Genome Structure and Putative Origins of Replication Are Not Conserved Among Octocorals
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The Mitochondrial Genome of a Deep-Sea Bamboo Coral (Cnidaria, Anthozoa, Octocorallia, Isididae): Genome Structure and Putative Origins of Replication Are Not Conserved Among Octocorals

机译:深海竹珊瑚的线粒体基因组(小花,疟原虫,Octocorallia,Isididae):基因组结构和假定的复制起源在守八趾鱼之间并不保守。

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Octocoral mitochondrial (mt) DNA is subject to an exceptionally low rate of substitution, and it has been suggested that mt genome content and structure are conserved across the subclass, an observation that has been supported for most octocorallian families by phylogenetic analyses using PCR products spanning gene boundaries. However, failure to recover amplification products spanning the nad4L–msh1 gene junction in species from the family Isididae (bamboo corals) prompted us to sequence the complete mt genome of a deep-sea bamboo coral (undescribed species). Compared to the “typical” octocoral mt genome, which has 12 genes transcribed on one strand and 5 genes on the opposite (cox2, atp8, atp6, cox3, trnM), in the bamboo coral genome a contiguous string of 5 genes (msh1, rnl, nad2, nad5, nad4) has undergone an inversion, likely in a single event. Analyses of strand-specific compositional asymmetry suggest that (i) the light-strand origin of replication was also inverted and is adjacent to nad4, and (ii) the orientation of the heavy-strand origin of replication (OriH) has reversed relative to that of previously known octocoral mt genomes. Comparative analyses suggest that intramitochondrial recombination and errors in replication at OriH may be responsible for changes in gene order in octocorals and hexacorals, respectively. Using primers flanking the regions at either end of the inverted set of five genes, we examined closely related taxa and determined that the novel gene order is restricted to the deep-sea subfamily Keratoisidinae; however, we found no evidence for strand-specific mutational biases that may influence phylogenetic analyses that include this subfamily of bamboo corals.
机译:八叶线粒体(mt)DNA的置换率极低,并且已表明该亚类的mt基因组含量和结构均得到保守,这一观察结果已得到大多数octocorallian家族的支持,这一现象已通过使用PCR产物的系统发育分析得到了证实。基因边界。但是,未能从Isididae(竹珊瑚)科物种中恢复跨越nad4L–msh1基因连接的扩增产物,促使我们对深海竹珊瑚(未描述物种)的完整mt基因组进行测序。与“典型的”八瓣叶mt基因组相比,竹珊瑚基因组中有12个基因在一条链上转录,而在相反的一端有5个基因(cox2,atp8,atp6,cox3,trnM),而这是一个由5个基因(msh1, rnl,nad2,nad5,nad4)可能在单个事件中发生了反转。对链特异性组成不对称性的分析表明,(i)轻链复制起点也被反转并与nad4相邻,并且(ii)重链复制起点(OriH)的方向相对于先前已知的八齿mt基因组。对比分析表明,线粒体内重组和OriH复制的错误可能分别导致八齿和六齿的基因顺序变化。使用在五个基因倒置集的任一端的侧翼区域的引物,我们检查了紧密相关的分类单元,并确定了该新基因顺序仅限于深海亚科圆锥角膜科。但是,我们没有发现证据表明特定链的突变偏见可能会影响包括竹珊瑚亚科在内的系统发育分析。

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