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Unique mitogenomic features in the scleractinian family pocilloporidae (scleractinia: astrocoeniina).

机译:scleractinian family pocilloporidae(scleractinia:astrocoeniina)的独特线粒体特征。

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摘要

The complete DNA sequences of three mitochondrial (mt) genomes were obtained from the scleractinian corals, Stylophora pistillata, Pocillopora damicornis, and Madracis mirabilis, and were compared to the published mt genomes to elucidate phylogenetically unique features of the family Pocilloporidae. The entire mt genomes of pocilloporid corals ranged from 16,951 to 17,425 bp with the A+T contents of their sense strands ranging from 68.4% to 70.2%. The gene order of protein-coding genes was identical to those of other scleractinian corals. The novel atp8 gene, first described in confamilial Seriatopora corals, was also confirmed using reverse transcription-polymerase chain reaction (RT-PCR), Northern blot, and sequence analyses in other genera of the Pocilloporidae. The intergenic spacer between atp6 and nad4, containing distinct repeated elements, conserved sequence blocks and domains, and functional structures, possesses typical characteristics of a putative control region for the four coral genera. A duplicated trnW, detected in the region close to the cox1 gene and which shares the highly conserved primary and secondary structures of its original counterpart, was discovered in both Seriatopora and Stylophora. These molecular characteristics are unique and provide the phylogenetic information for future evaluation of the status of the family Pocilloporidae in the evolutionary history of scleractinian corals.
机译:从巩膜珊瑚,Stylophora pistillata,Pocillopora damicornis和Miradalis中获得了三个线粒体(mt)基因组的完整DNA序列,并将其与已发表的mt基因组进行了比较,以阐明Pocilloporidae家族的系统发育独特特征。孔孢珊瑚的整个mt基因组范围为16,951至17,425 bp,其有义链的A + T含量范围为68.4%至70.2%。蛋白质编码基因的基因顺序与其他Scleractinian珊瑚的基因顺序相同。还使用逆转录-聚合酶链反应(RT-PCR),Northern印迹和其他在Pocilloporidae属中的序列分析,证实了新的atp8基因首次在家族性珊瑚藻中发生。 atp6和nad4之间的基因间隔子包含不同的重复元件,保守的序列块和结构域以及功能结构,具有四个珊瑚属的假定控制区域的典型特征。在Seriatopora和Stylophora中都发现了一个重复的trnW,该蛋白在接近cox1基因的区域被发现,并且具有与其原始对应物高度保守的一级和二级结构。这些分子特征是独特的,并提供了系统发育信息,以供将来评估巩膜纲珊瑚在进化史上的地位。

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