Klymus Katy E, Ruiz Ramos Dannise V, Thompson Nathan L, Richter Catherine A
Columbia Environmental Research Center, U.S. Geological Survey;
Columbia Environmental Research Center, U.S. Geological Survey.
J Vis Exp. 2020 Nov 5(165). doi: 10.3791/61825.
New, non-invasive methods for detecting and monitoring species presence are being developed to aid in fisheries and wildlife conservation management. The use of environmental DNA (eDNA) samples for detecting macrobiota is one such group of methods that is rapidly becoming popular and being implemented in national management programs. Here we focus on the development of species-specific targeted assays for probe-based quantitative PCR (qPCR) applications. Using probe-based qPCR offers greater specificity than is possible with primers alone. Furthermore, the ability to quantify the amount of DNA in a sample can be useful in our understanding of the ecology of eDNA and the interpretation of eDNA detection patterns in the field. Careful consideration is needed in the development and testing of these assays to ensure the sensitivity and specificity of detecting the target species from an environmental sample. In this protocol we will delineate the steps needed to design and test probe-based assays for the detection of a target species; including creation of sequence databases, assay design, assay selection and optimization, testing assay performance, and field validation. Following these steps will help achieve an efficient, sensitive, and specific assay that can be used with confidence. We demonstrate this process with our assay designed for populations of the mucket (Actinonaias ligamentina), a freshwater mussel species found in the Clinch River, USA.
为协助渔业和野生动物保护管理,正在开发用于检测和监测物种存在的新型非侵入性方法。利用环境DNA(eDNA)样本检测大型生物群就是这类迅速流行并已在国家管理计划中实施的方法之一。在此,我们专注于开发用于基于探针的定量聚合酶链反应(qPCR)应用的物种特异性靶向检测方法。与仅使用引物相比,使用基于探针的qPCR具有更高的特异性。此外,量化样本中DNA的量有助于我们理解eDNA的生态学以及解释野外eDNA检测模式。在开发和测试这些检测方法时需要仔细考虑,以确保从环境样本中检测目标物种的灵敏度和特异性。在本方案中,我们将描述设计和测试用于检测目标物种的基于探针的检测方法所需的步骤;包括创建序列数据库、检测方法设计、检测方法选择与优化、测试检测方法性能以及现场验证。遵循这些步骤将有助于实现一种高效、灵敏且特异的检测方法,可放心使用。我们以针对美国克林奇河中发现的淡水贻贝物种——穆克特(Actinonaias ligamentina)种群设计的检测方法来演示这一过程。