Institute of Ecology and Earth Sciences, University of Tartu, Tartu, Estonia.
Mycology and Microbiology Center, University of Tartu, Tartu, Estonia.
Mol Ecol Resour. 2022 Nov;22(8):2871-2879. doi: 10.1111/1755-0998.13663. Epub 2022 Jun 17.
Molecular methods are increasingly used to identify species that lack conspicuous macro- or micromorphological characters. Taxonomic and ecological research teams barcode large numbers of collected voucher specimens annually. In this study we assessed the efficiency of long-read high throughput sequencing (HTS) as opposed to the traditionally used Sanger method for taxonomic identification of multiple vouchered fungal specimens. We also evaluated whether this method can provide reference information about intraindividual gene polymorphism. We developed a workflow based on a test set of 423 basidiomycete specimens (representing 195 species), the PacBio HTS method, and ribosomal rRNA operon internal transcribed spacer (ITS) and 28S rRNA gene (LSU) markers. The PacBio HTS had a higher success rate than Sanger sequencing at a comparable cost. Species identification based on PacBio reads was usually straightforward, because the dominant operational taxonomic unit (OTU) typically represented the targeted organism. The PacBio HTS also enabled us to detect widespread polymorphism within the ITS marker. We conclude that multiplex DNA barcoding of the fungal ITS and LSU markers using PacBio HTS is a useful tool for taxonomic identification of large amounts of collected voucher specimens at a competitive price. Furthermore, PacBio HTS accurately recovers various alleles and paralogues, which can provide crucial information for species delimitation and population-level studies.
分子方法越来越多地被用于鉴定那些缺乏明显宏观或微观形态特征的物种。分类学和生态学研究团队每年都会对大量收集的凭证标本进行条码标记。在本研究中,我们评估了长读高通量测序(HTS)相对于传统的 Sanger 方法在鉴定多种凭证真菌标本方面的效率。我们还评估了这种方法是否可以提供关于个体内基因多态性的参考信息。我们开发了一个基于 423 个担子菌标本(代表 195 个物种)、PacBio HTS 方法以及核糖体 rRNA 操纵子内转录间隔区(ITS)和 28S rRNA 基因(LSU)标记的测试集的工作流程。与 Sanger 测序相比,PacBio HTS 的成本相当,但成功率更高。基于 PacBio 读数的物种鉴定通常很直接,因为占主导地位的操作分类单位(OTU)通常代表目标生物。PacBio HTS 还使我们能够检测到 ITS 标记内广泛的多态性。我们得出结论,使用 PacBio HTS 对真菌 ITS 和 LSU 标记进行多重 DNA 条码标记是一种有用的工具,可以以有竞争力的价格对大量收集的凭证标本进行分类鉴定。此外,PacBio HTS 可以准确地恢复各种等位基因和旁系同源物,这可为物种划分和种群水平研究提供关键信息。