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DNA BARCODING IN LAND PLANTS: DEVELOPING STANDARDS TO QUANTIFY AND MAXIMIZE SUCCESS

机译:陆地植物中的DNA编码:制定标准以量化和最大化成功

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摘要

The selection of a DNA barcode in plants has been impeded in part due to the relatively low rates of nucleotide substitution observed at the most accessible plastid markers. However, the absence of consensus also reflects a lack of standards for comparing potential barcode markers. While many publications have suggested a host of plant DNA barcodes, the studies cannot be readily compared with each other through any quantitative or statistical parameter, partly because they put forward no single compelling rationale relevant to the adoption of a DNA barcode in plants. Here, we argue that the efficacy of any particular plant DNA barcode selection should reflect the anticipated performance of the resulting barcode database in assignment of a query sequence to species. While legitimate scientific disagreement exists over the criteria relevant to “database performance”, the notion gives a unifying rationale for prioritizing selection criteria. Accordingly, we suggest a measure of barcode efficacy based on the rationale of database performance, “the probability of correct identification” (PCI). Moreover, the definition of PCI is left flexible enough to handle most of the scientific disagreement over how to best evaluate DNA barcodes. Finally, we consider how different types of barcodes might require different methods of analysis and database design and indicate how the analysis might affect the selection of the most broadly effective barcode for land plants.
机译:由于在最易接近的质体标记物上观察到相对较低的核苷酸取代率,部分地阻碍了植物中DNA条形码的选择。但是,缺乏共识也反映出缺乏用于比较潜在条形码标记的标准。尽管许多出版物提出了许多植物DNA条形码,但是这些研究不能通过任何定量或统计参数相互比较,部分原因是它们没有提出与在植物中采用DNA条形码相关的令人信服的理由。在这里,我们认为,任何特定植物DNA条形码选择的功效都应反映在将查询序列分配给物种时所得条形码数据库的预期性能。尽管在与“数据库性能”相关的标准上存在合理的科学分歧,但该概念为优先选择标准提供了统一的理由。因此,我们建议根据数据库性能的基本原理“正确识别的可能性”(PCI)来衡量条形码的有效性。而且,PCI的定义足够灵活,可以处理有关如何最好地评估DNA条形码的大多数科学分歧。最后,我们考虑了不同类型的条形码如何可能需要不同的分析方法和数据库设计,并指出了该分析如何影响陆地植物最广泛使用的条形码的选择。

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