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基于牛津纳米孔测序的快速线粒体基因组测序及脊椎动物物种鉴定的替代方法。

Rapid mitochondrial genome sequencing based on Oxford Nanopore Sequencing and a proxy for vertebrate species identification.

作者信息

Franco-Sierra Nicolás D, Díaz-Nieto Juan F

机构信息

Grupo de investigación en Biodiversidad, Evolución y Conservación (BEC) Departamento de Ciencias Biológicas, Escuela de Ciencias Universidad EAFIT Medellín Colombia.

出版信息

Ecol Evol. 2020 Mar 11;10(7):3544-3560. doi: 10.1002/ece3.6151. eCollection 2020 Apr.

Abstract

Molecular information is crucial for species identification when facing challenging morphology-based specimen identifications. The use of DNA barcodes partially solves this problem, but in some cases when PCR is not an option (i.e., primers are not available, problems in reaction standardization), amplification-free approaches could be an optimal alternative. Recent advances in DNA sequencing, like the MinION device from Oxford Nanopore Technologies (ONT), allow to obtain genomic data with low laboratory and technical requirements, and at a relatively low cost. In this study, we explore ONT sequencing for molecular species identification from a total DNA sample obtained from a neotropical rodent and we also test the technology for complete mitochondrial genome reconstruction via genome skimming. We were able to obtain "de novo" the complete mitogenome of a specimen from the genus (Cricetidae: Sigmodontinae) with average depth coverage of 78X using ONT-only data and by combining multiple assembly routines. Our pipeline for an automated species identification was able to identify the sample using unassembled sequence data (raw) in a reasonable computing time, which was substantially reduced when a priori information related to the organism identity was known. Our findings suggest ONT sequencing as a suitable candidate to solve species identification problems in metazoan nonmodel organisms and generate complete mtDNA datasets.

摘要

在面对基于形态学的标本鉴定具有挑战性的情况时,分子信息对于物种鉴定至关重要。DNA条形码的使用部分解决了这个问题,但在某些情况下,当PCR不可行时(即没有可用引物、反应标准化存在问题),免扩增方法可能是一个最佳选择。DNA测序的最新进展,如牛津纳米孔技术公司(ONT)的MinION设备,能够在较低的实验室和技术要求下,以相对较低的成本获得基因组数据。在本研究中,我们探索了利用ONT测序从一种新热带啮齿动物的总DNA样本中进行分子物种鉴定,并且我们还通过基因组筛选测试了该技术用于完整线粒体基因组重建的能力。我们能够仅使用ONT数据并通过组合多种组装程序,“从头”获得来自该属(仓鼠科:稻鼠亚科)一个标本的完整有丝分裂基因组,平均深度覆盖为78倍。我们用于自动物种鉴定的流程能够在合理的计算时间内使用未组装的序列数据(原始数据)鉴定样本,当已知与生物体身份相关的先验信息时,计算时间会大幅减少。我们的研究结果表明ONT测序是解决后生动物非模式生物物种鉴定问题并生成完整线粒体DNA数据集的合适候选方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48fc/7141017/f2280a63e287/ECE3-10-3544-g001.jpg

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