...
首页> 外文期刊>BMC Evolutionary Biology >The mitochondrial genome structure of Xenoturbella bocki (phylum Xenoturbellida) is ancestral within the deuterostomes
【24h】

The mitochondrial genome structure of Xenoturbella bocki (phylum Xenoturbellida) is ancestral within the deuterostomes

机译:博克异球藻(Xenoturbellida)的线粒体基因组结构在氘核中是祖先的

获取原文
           

摘要

Background Mitochondrial genome comparisons contribute in multiple ways when inferring animal relationships. As well as primary sequence data, rare genomic changes such as gene order, shared gene boundaries and genetic code changes, which are unlikely to have arisen through convergent evolution, are useful tools in resolving deep phylogenies. Xenoturbella bocki is a morphologically simple benthic marine worm recently found to belong among the deuterostomes. Here we present analyses comparing the Xenoturbella bocki mitochondrial gene order, genetic code and control region to those of other metazoan groups. Results The complete mitochondrial genome sequence of Xenoturbella bocki was determined. The gene order is most similar to that of the chordates and the hemichordates, indicating that this conserved mitochondrial gene order might be ancestral to the deuterostome clade. Using data from all phyla of deuterostomes, we infer the ancestral mitochondrial gene order for this clade. Using inversion and breakpoint analyses of metazoan mitochondrial genomes, we test conflicting hypotheses for the phylogenetic placement of Xenoturbella and find a closer affinity to the hemichordates than to other metazoan groups. Comparative analyses of the control region reveal similarities in the transcription initiation and termination sites and origin of replication of Xenoturbella with those of the vertebrates. Phylogenetic analyses of the mitochondrial sequence indicate a weakly supported placement as a basal deuterostome, a result that may be the effect of compositional bias. Conclusion The mitochondrial genome of Xenoturbella bocki has a very conserved gene arrangement in the deuterostome group, strikingly similar to that of the hemichordates and the chordates, and thus to the ancestral deuterostome gene order. Similarity to the hemichordates in particular is suggested by inversion and breakpoint analysis. Finally, while phylogenetic analyses of the mitochondrial sequences support a basal deuterostome placement, support for this decreases with the use of more sophisticated models of sequence evolution.
机译:背景线粒体基因组比较在推断动物关系时有多种作用。除一级序列数据外,罕见的基因组变化(如基因顺序,共享的基因边界和遗传密码变化)(通过融合进化不太可能产生)是解决深层系统发育的有用工具。博克氏小球藻是一种形态简单的底栖海生蠕虫,最近发现它属于氘吻合器。在这里,我们目前进行的分析比较了博克氏小球藻线粒体的基因顺序,遗传密码和控制区,以及其他后生动物群体。结果确定了博克异球菌的完整线粒体基因组序列。该基因顺序与脊索动物和半草酸盐的基因顺序最相似,表明这种保守的线粒体基因顺序可能是氘代吻合口祖先的祖先。使用来自氘吻口的所有门的数据,我们推断出该进化枝的祖先线粒体基因顺序。使用后生线粒体基因组的倒置和断点分析,我们测试了异种球菌在系统发育上的相互矛盾的假设,并发现与半水生动物相比,与其他后生动物亲缘关系更近。对照区域的比较分析揭示了异色藻的转录起始和终止位点以及复制起点与脊椎动物相似。线粒体序列的系统发育分析表明,作为基础氘代吻合器的支持较弱,这可能是成分偏倚的影响。结论异特氏杆菌的线粒体基因组在氘化口琴组中具有非常保守的基因排列,与半the状和脊索状的基因组惊人地相似,因此与祖先的氘化口琴基因顺序相似。反演和断点分析表明,特别是与半血酸盐相似。最后,虽然线粒体序列的系统发育分析支持基础氘核吻合器位置,但使用更复杂的序列进化模型可减少对此的支持。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号