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The Utility of Genome Skimming for Phylogenomic Analyses as Demonstrated for Glycerid Relationships (Annelida Glyceridae)

机译:基因组撇除在植物生理学研究中的效用证明了甘油的关系(AnnelidaGlyceridae)

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摘要

Glyceridae (Annelida) are a group of venomous annelids distributed worldwide from intertidal to abyssal depths. To trace the evolutionary history and complexity of glycerid venom cocktails, a solid backbone phylogeny of this group is essential. We therefore aimed to reconstruct the phylogenetic relationships of these annelids using Illumina sequencing technology. We constructed whole-genome shotgun libraries for 19 glycerid specimens and 1 outgroup species (Glycinde armigera). The chosen target genes comprise 13 mitochondrial proteins, 2 ribosomal mitochondrial genes, and 4 nuclear loci (18SrRNA, 28SrRNA, ITS1, and ITS2). Based on partitioned maximum likelihood as well as Bayesian analyses of the resulting supermatrix, we were finally able to resolve a robust glycerid phylogeny and identified three clades comprising the majority of taxa. Furthermore, we detected group II introns inside the cox1 gene of two analyzed glycerid specimens, with two different insertions in one of these species. Moreover, we generated reduced data sets comprising 10 million, 4 million, and 1 million reads from the original data sets to test the influence of the sequencing depth on assembling complete mitochondrial genomes from low coverage genome data. We estimated the coverage of mitochondrial genome sequences in each data set size by mapping the filtered Illumina reads against the respective mitochondrial contigs. By comparing the contig coverage calculated in all data set sizes, we got a hint for the scalability of our genome skimming approach. This allows estimating more precisely the number of reads that are at least necessary to reconstruct complete mitochondrial genomes in Glyceridae and probably non-model organisms in general.
机译:甘油科(Annelida)是一组有毒的无节肢动物,分布在潮间带至深渊。为了追踪甘油蛇毒鸡尾酒的进化历史和复杂性,这一组的坚实的主链系统发育至关重要。因此,我们旨在使用Illumina测序技术来重建这些类动物的系统发育关系。我们构建了全基因组shot弹枪文库,其中包含19个甘油标本和1个外来物种(Glycinde armigera)。选择的靶基因包含13个线粒体蛋白,2个核糖体线粒体基因和4个核基因座(18SrRNA,28SrRNA,ITS1和ITS2)。基于分区的最大似然性以及由此产生的超级矩阵的贝叶斯分析,我们最终能够解析出稳健的甘油系谱,并鉴定了包含大多数分类单元的三个进化枝。此外,我们在两个被分析的甘油样本的cox1基因内部检测到II组内含子,其中一个物种有两个不同的插入。此外,我们从原始数据集中生成了减少的数据集,包括1000万,400万和100万个读数,以测试测序深度对从低覆盖度基因组数据组装完整线粒体基因组的影响。我们通过针对各自的线粒体重叠群映射过滤的Illumina读数,估计了每个数据集大小中线粒体基因组序列的覆盖率。通过比较在所有数据集大小中计算出的重叠群覆盖率,我们获得了基因组撇除方法可扩展性的提示。这使得可以更准确地估算在甘油科动物和通常可能是非模型生物中重建完整的线粒体基因组所必需的读取次数。

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