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首页> 外文期刊>BMC Genomics >A close phylogenetic relationship between Sipuncula and Annelida evidenced from the complete mitochondrial genome sequence of Phascolosoma esculenta
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A close phylogenetic relationship between Sipuncula and Annelida evidenced from the complete mitochondrial genome sequence of Phascolosoma esculenta

机译:食管假单胞菌的完整线粒体基因组序列证明了壶腹和无翅纲之间密切的系统发育关系。

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Background There are many advantages to the application of complete mitochondrial (mt) genomes in the accurate reconstruction of phylogenetic relationships in Metazoa. Although over one thousand metazoan genomes have been sequenced, the taxonomic sampling is highly biased, left with many phyla without a single representative of complete mitochondrial genome. Sipuncula (peanut worms or star worms) is a small taxon of worm-like marine organisms with an uncertain phylogenetic position. In this report, we present the mitochondrial genome sequence of Phascolosoma esculenta, the first complete mitochondrial genome of the phylum. Results The mitochondrial genome of P.esculenta is 15,494 bp in length. The coding strand consists of 32.1% A, 21.5% C, 13.0% G, and 33.4% T bases (AT = 65.5%; AT skew = -0.019; GC skew = -0.248). It contains thirteen protein-coding genes (PCGs) with 3,709 codons in total, twenty-two transfer RNA genes, two ribosomal RNA genes and a non-coding AT-rich region (AT = 74.2%). All of the 37 identified genes are transcribed from the same DNA strand. Compared with the typical set of metazoan mt genomes, sipunculid lacks trnR but has an additional trnM. Maximum Likelihood and Bayesian analyses of the protein sequences show that Myzostomida, Sipuncula and Annelida (including echiurans and pogonophorans) form a monophyletic group, which supports a closer relationship between Sipuncula and Annelida than with Mollusca, Brachiopoda, and some other lophotrochozoan groups. Conclusion This is the first report of a complete mitochondrial genome as a representative within the phylum Sipuncula. It shares many more similar features with the four known annelid and one echiuran mtDNAs. Firstly, sipunculans and annelids share quite similar gene order in the mitochondrial genome, with all 37 genes located on the same strand; secondly, phylogenetic analyses based on the concatenated protein sequences also strongly support the sipunculan + annelid clade (including echiurans and pogonophorans). Hence annelid "key-characters" including segmentation may be more labile than previously assumed.
机译:背景技术完整的线粒体(mt)基因组在后生动物系统发育关系的准确重建中具有许多优势。尽管已对上千个后生动物基因组进行了测序,但分类学采样仍然存在很大偏差,留下许多门而没有完整线粒体基因组的单个代表。 Sipuncula(花生蠕虫或星状蠕虫)是蠕虫状海洋生物的小分类群,其系统发生位置不确定。在此报告中,我们介绍了Phascolosoma esculenta的线粒体基因组序列,这是门的第一个完整的线粒体基因组。结果P.esculenta的线粒体基因组长度为15,494 bp。编码链由32.1%A,21.5%C,13.0%G和33.4%T碱基组成(AT = 65.5%; AT偏斜= -0.019; GC偏斜= -0.248)。它包含13个蛋白质编码基因(PCG),共有3,709个密码子,22个转移RNA基因,2个核糖体RNA基因和一个非编码AT富集区域(AT = 74.2%)。从相同的DNA链中转录出所有37个已鉴定的基因。与典型的后生动物mt基因组相比,sipunculid缺乏trnR但具有额外的trnM。对蛋白质序列的最大似然和贝叶斯分析表明,粘足纲,Sipuncula和Annelida(包括棘皮动物和po足类动物)形成了一个单系群,这支持了Sipuncula和Annelida之间的关系比与软体动物,腕足动物和其他一些风毛虫基团的关系更紧密。结论这是完整的线粒体基因组作为Sipuncula门的代表的首次报道。它与四个已知的肘节和一个echiuran mtDNA共享更多相似的功能。首先,五倍体和Annelids在线粒体基因组中共有非常相似的基因顺序,所有37个基因都位于同一条链上。其次,基于级联蛋白序列的系统发育分析也强烈支持sipunculan + annelid进化枝(包括棘皮动物和po足类动物)。因此,包括分段在内的网状网“关键字符”可能比以前假定的更加不稳定。

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