Graduate School of Science and Technology, Ryukoku University, 1-5 Yokotani, Seta Oe-cho, Otsu, 520-2194, Japan.
Program in Environmental Management, Graduate School of Agriculture, Kindai University, 3327-204 Nakamachi, Nara, Nara, 631-8505, Japan.
Sci Rep. 2018 Jun 14;8(1):9138. doi: 10.1038/s41598-018-27434-w.
Information about species distribution is crucial to ecological studies. Environmental DNA (eDNA) analysis has recently been used to estimate the distribution of aquatic organisms. Several analytical methods including metabarcoding and species-specific PCR are being used for eDNA analysis. However, when only a few species are targeted, metabarcoding is not cost-effective because of the wasted consumption of read due to amplification of non-target species DNA. On the other hand, species-specific PCR requires tests to be repeated multiple times resulting in consuming more DNA templates, and experimental consumables. Here we propose a methodological framework for simultaneously detecting a few species using real-time multiplex PCR. We developed the species-specific primer-probe sets for two species of Japanese medaka (Oryzias latipes and o. sakaizumii), and we used them in the real-time multiplex PCR. In aquarium experiment, even when the species abundances were biased, both species were simultaneously detected in all samples. In a field survey, eDNA analysis and capture survey produced consistent results in all sampling sites, including sites with low fish densities. eDNA analysis using real-time multiplex PCR can be easily applied to other aquatic organisms, enabling a more cost-effective distribution survey of multiple target organisms.
物种分布信息对于生态研究至关重要。环境 DNA(eDNA)分析最近被用于估计水生生物的分布。几种分析方法,包括代谢组学和物种特异性 PCR,都被用于 eDNA 分析。然而,当仅针对少数几个物种时,由于扩增非目标物种 DNA 导致的读长浪费,代谢组学的成本效益不高。另一方面,物种特异性 PCR 需要重复多次测试,从而消耗更多的 DNA 模板和实验耗材。在这里,我们提出了一种使用实时多重 PCR 同时检测少数几个物种的方法框架。我们为两种日本青鳉(Oryzias latipes 和 O. sakaizumii)开发了物种特异性引物-探针组,并将其用于实时多重 PCR。在水族馆实验中,即使物种丰度存在偏差,所有样本中也能同时检测到这两个物种。在野外调查中,eDNA 分析和捕获调查在所有采样点(包括鱼类密度较低的采样点)都产生了一致的结果。使用实时多重 PCR 的 eDNA 分析可以很容易地应用于其他水生生物,从而更经济有效地对多个目标生物进行分布调查。