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Using Next-Generation Sequencing for DNA Barcoding: Capturing Allelic Variation in ITS2

机译:使用下一代测序进行DNA条形码:捕获ITS2中的等位基因变异

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摘要

Internal Transcribed Spacer 2 (ITS2) is a popular DNA barcoding marker; however, in some animal species it is hypervariable and therefore difficult to sequence with traditional methods. With next-generation sequencing (NGS) it is possible to sequence all gene variants despite the presence of single nucleotide polymorphisms (SNPs), insertions/deletions (indels), homopolymeric regions, and microsatellites. Our aim was to compare the performance of Sanger sequencing and NGS amplicon sequencing in characterizing ITS2 in 26 mosquito species represented by 88 samples. The suitability of ITS2 as a DNA barcoding marker for mosquitoes, and its allelic diversity in individuals and species, was also assessed. Compared to Sanger sequencing, NGS was able to characterize the ITS2 region to a greater extent, with resolution within and between individuals and species that was previously not possible. A total of 382 unique sequences (alleles) were generated from the 88 mosquito specimens, demonstrating the diversity present that has been overlooked by traditional sequencing methods. Multiple indels and microsatellites were present in the ITS2 alleles, which were often specific to species or genera, causing variation in sequence length. As a barcoding marker, ITS2 was able to separate all of the species, apart from members of the Culex pipiens complex, providing the same resolution as the commonly used Cytochrome Oxidase I (COI). The ability to cost-effectively sequence hypervariable markers makes NGS an invaluable tool with many applications in the DNA barcoding field, and provides insights into the limitations of previous studies and techniques.
机译:内部转录间隔物2(ITS2)是一种流行的DNA条形码标记。但是,在某些动物物种中,它是高变的,因此很难用传统方法进行测序。使用下一代测序(NGS),尽管存在单核苷酸多态性(SNP),插入/缺失(indels),均聚物区域和微卫星,但仍可以对所有基因变异进行测序。我们的目的是比较Sanger测序和NGS扩增子测序在表征88个样品所代表的26种蚊虫中ITS2的性能。还评估了ITS2作为蚊子DNA条形码标记的适用性及其在个体和物种中的等位基因多样性。与Sanger测序相比,NGS能够更大程度地表征ITS2区域,而以前无法在个体和物种内和之间进行分辨。从88个蚊子标本中产生了总共382个独特序列(等位基因),证明了目前的多样性已被传统测序方法所忽略。 ITS2等位基因中存在多个indel和微卫星,它们通常特定于物种或属,从而导致序列长度变化。作为条形码标记,ITS2能够分离所有物种,而淡色库蚊(Culex pipiens)复合体的成员除外,提供与常用细胞色素氧化酶I(COI)相同的分辨率。具有成本效益的对高变标记物进行测序的能力使NGS成为在DNA条形码领域具有许多应用的无价工具,并提供了对先前研究和技术局限性的见识。

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