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Environmental DNA metabarcoding for fish community analysis in backwater lakes: A comparison of capture methods

机译:水湖中鱼群分析的环境DNA地区:捕获方法的比较

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摘要

The use of environmental DNA (eDNA) methods for community analysis has recently been developed. High-throughput parallel DNA sequencing (HTS), called eDNA metabarcoding, has been increasingly used in eDNA studies to examine multiple species. However, eDNA metabarcoding methodology requires validation based on traditional methods in all natural ecosystems before a reliable method can be established. To date, relatively few studies have performed eDNA metabarcoding of fishes in aquatic environments where fish communities were intensively surveyed using multiple traditional methods. Here, we have compared fish communities' data from eDNA metabarcoding with seven conventional multiple capture methods in 31 backwater lakes in Hokkaido, Japan. We found that capture and field surveys of fishes were often interrupted by macrophytes and muddy sediments in the 31 lakes. We sampled 1 L of the surface water and analyzed eDNA using HTS. We also surveyed the fish communities using seven different capture methods, including various types of nets and electrofishing. At some sites, we could not detect any eDNA, presumably because of the polymerase chain reaction (PCR) inhibition. We also detected the marine fish species as sewage-derived eDNA. Comparisons of eDNA metabarcoding and capture methods showed that the detected fish communities were similar between the two methods, with an overlap of 70%. Thus, our study suggests that to detect fish communities in backwater lakes, the performance of eDNA metabarcoding with the use of 1 L surface water sampling is similar to that of capturing methods. Therefore, eDNA metabarcoding can be used for fish community analysis but environmental factors that can cause PCR inhibition, should be considered in eDNA applications.
机译:最近开发了使用环境DNA(EDNA)群落分析方法。在EDNA研究中越来越多地用于检查多种物种的高通量并行DNA测序(HTS)越来越多地用于检查多种物种。然而,EDNA Metabarding方法需要基于所有自然生态系统中的传统方法验证,在可以建立可靠的方法之前。迄今为止,相对较少的研究已经在水生环境中进行了edna地区的鱼类,其中使用多种传统方法对鱼群进行了集中调查。在这里,我们在日本北海道的31个水湖中使用七种传统的多捕获方法比较了来自edna成立的鱼群数据。我们发现,鱼类的捕获和田间调查通常在31湖中被麦克饼和泥质沉积物中断。我们采样1升地表水并使用HTS分析EDNA。我们还使用七种不同的捕获方法调查了鱼群,包括各种类型的网和电捕获。在某些地点,我们无法检测到任何EDNA,可能是因为聚合酶链反应(PCR)抑制。我们还检测到海洋鱼类作为污水衍生的edna。 EDNA地区沟通和捕获方法的比较表明,两种方法之间检测到的鱼群相似,重叠为70%。因此,我们的研究表明,要检测水湖中的鱼群,EDNA地区采用1L地面水采样的性能与捕获方法的性能类似。因此,EDNA Metabarcoding可用于鱼群分析,但应在EDNA应用中考虑可能导致PCR抑制的环境因素。

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