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Potential for DNA-based identification of Great Lakes fauna: match and mismatch between taxa inventories and DNA barcode libraries

机译:基于DNA的大湖动物区系识别的潜力:分类群清单与DNA条码文库之间的匹配与错配

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摘要

DNA-based identification of mixed-organism samples offers the potential to greatly reduce the need for resource-intensive morphological identification, which would be of value both to bioassessment and non-native species monitoring. The ability to assign species identities to DNA sequences found depends on the availability of comprehensive DNA reference libraries. Here, we compile inventories for aquatic metazoans extant in or threatening to invade the Laurentian Great Lakes and examine the availability of reference mitochondrial COI DNA sequences (barcodes) in the Barcode of Life Data System for them. We found barcode libraries largely complete for extant and threatening-to-invade vertebrates (100% of reptile, 99% of fish, and 92% of amphibian species had barcodes). In contrast, barcode libraries remain poorly developed for precisely those organisms where morphological identification is most challenging; 46% of extant invertebrates lacked reference barcodes with rates especially high among rotifers, oligochaetes, and mites. Lack of species-level identification for many aquatic invertebrates also is a barrier to matching DNA sequences with physical specimens. Attaining the potential for DNA-based identification of mixed-organism samples covering the breadth of aquatic fauna requires a concerted effort to build supporting barcode libraries and voucher collections.
机译:基于DNA的混合生物样品鉴定提供了极大地减少对资源密集型形态鉴定的需求的潜力,这对生物评估和非本地物种监测均具有价值。将物种身份分配给找到的DNA序列的能力取决于全面的DNA参考库的可用性。在这里,我们为存在于或威胁要入侵Laurentian大湖的水生后生动物编制清单,并在生命数据系统的条形码中检查了线粒体参考COI DNA序列(条形码)的可用性。我们发现,对于现存的和即将入侵的脊椎动物,条形码库已基本完成(100%的爬行动物,99%的鱼类和92%的两栖动物都有条形码)。相反,对于那些形态学鉴定最具挑战性的生物,条形码库仍然开发得很差。现存的无脊椎动物中有46%缺少参考条形码,其中轮虫,寡毛m和螨虫的参考条形码尤其高。许多水生无脊椎动物缺乏物种一级的鉴定,这也是使DNA序列与物理标本匹配的障碍。要获得基于DNA的识别涵盖水生动物种类广度的混合生物样品的潜力,就需要共同努力,以建立支持性的条形码库和凭证集。

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