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Genome skimming is a low-cost and robust strategy to assemble complete mitochondrial genomes from ethanol preserved specimens in biodiversity studies

机译:在生物多样性研究中基因组撇除是一种低成本且强大的策略可从乙醇保存的标本中组装完整的线粒体基因组

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摘要

Global loss of biodiversity is an ongoing process that concerns both local and global authorities. Studies of biodiversity mainly involve traditional methods using morphological characters and molecular protocols. However, conventional methods are a time consuming and resource demanding task. The development of high-throughput sequencing (HTS) techniques has reshaped the way we explore biodiversity and opened a path to new questions and novel empirical approaches. With the emergence of HTS, sequencing the complete mitochondrial genome became more accessible, and the number of genome sequences published has increased exponentially during the last decades. Despite the current state of knowledge about the potential of mitogenomics in phylogenetics, this is still a relatively under-explored area for a multitude of taxonomic groups, especially for those without commercial relevance, non-models organisms and with preserved DNA. Here we take the first step to assemble and annotate the genomes from HTS data using a new protocol of genome skimming which will offer an opportunity to extend the field of mitogenomics to under-studied organisms. We extracted genomic DNA from specimens preserved in ethanol. We used Nextera XT DNA to prepare indexed paired-end libraries since it is a powerful tool for working with diverse samples, requiring a low amount of input DNA. We sequenced the samples in two different Illumina platform (MiSeq or NextSeq 550). We trimmed raw reads, filtered and had their quality tested accordingly. We performed the assembly using a baiting and iterative mapping strategy, and the annotated the putative mitochondrion through a semi-automatic procedure. We applied the contiguity index to access the completeness of each new mitogenome. Our results reveal the efficiency of the proposed method to recover the whole mitogenomes of preserved DNA from non-model organisms even if there are gene rearrangement in the specimens. Our findings suggest the potential of combining the adequate platform and library to the genome skimming as an innovative approach, which opens a new range of possibilities of its use to obtain molecular data from organisms with different levels of preservation.
机译:全球生物多样性丧失是一个持续的过程,涉及地方和全球当局。生物多样性的研究主要涉及使用形态特征和分子方案的传统方法。然而,常规方法是费时且资源需求的任务。高通量测序(HTS)技术的发展重塑了我们探索生物多样性的方式,并开辟了通往新问题和新颖经验方法的道路。随着HTS的出现,对完整线粒体基因组进行测序变得更加容易,并且在过去的几十年中,公布的基因组序列数量呈指数增长。尽管目前关于线粒体基因组学在系统发育学中的潜力的知识水平,但对于许多分类学群体,尤其是那些没有商业相关性,非模式生物和DNA保存的群体,这仍然是一个相对未开发的领域。在这里,我们采取第一步,使用新的基因组撇除协议从HTS数据组装和注释基因组,这将为将线粒体基因组学领域扩展至研究不足的生物提供机会。我们从保存在乙醇中的标本中提取基因组DNA。我们使用Nextera XT DNA来制备索引的配对末端文库,因为它是处理各种样品的强大工具,需要少量的输入DNA。我们在两个不同的Illumina平台(MiSeq或NextSeq 550)上对样品进行了测序。我们整理了原始读物,进行了过滤,并对其质量进行了相应的测试。我们使用诱饵和迭代映射策略进行了组装,并通过半自动过程对假定的线粒体进行了注释。我们应用连续性指数来访问每个新的有丝分裂基因组的完整性。我们的结果表明,即使标本中存在基因重排,所提出的方法也能从非模型生物中恢复整个保存的DNA的有丝分裂基因组的效率。我们的发现表明将适当的平台和文库与基因组撇取相结合作为一种创新方法的潜力,这为从具有不同保存水平的生物中获取分子数据开辟了新的可能性。

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