Japan International Consultants for Transportation Co., Ltd, Tokyo, Japan.
Energy Planning Department, East Japan Railway Company, Tokyo, Japan.
PLoS One. 2024 Apr 1;19(4):e0301197. doi: 10.1371/journal.pone.0301197. eCollection 2024.
Dams and weirs impede the continuity of rivers and transit of migratory fish. To overcome this obstacle, fishways are installed worldwide; however, management after installation is important. The Miyanaka Intake Dam has three fish ladders with different flow velocities and discharges and has been under adaptive management since 2012. Fish catch surveys, conducted as an adaptive management strategy, place a heavy burden on fish. Furthermore, a large number of investigators must be mobilized during the 30-day investigation period. Thus, a monitoring method using environmental DNA that exerts no burden on fish and requires only a few surveyors (to obtain water samples) and an in-house analyst was devised; however, its implementation in a fishway away from the point of analysis and with limited flow space and its effective water sampling frequency have not been reported. Therefore, in 2019, we started a trial aiming to evaluate the methods and application conditions of environmental DNA surveys for the continuous and long-term monitoring of various fish fauna upstream and downstream of the Miyanaka Intake Dam. To evaluate the fish fauna, the results of an environmental DNA survey (metabarcoding method) for 2019 to 2022 were compared to those of a catch survey in the fishway from 2012 to 2022. The results confirmed the use of environmental DNA surveys in evaluating the contribution of fishways to biodiversity under certain conditions and introduced a novel method for sample collection.
水坝和堰阻碍了河流的连续性和洄游鱼类的迁徙。为了克服这一障碍,世界各地都安装了鱼类通道;然而,安装后的管理很重要。宫坂进水口大坝有三个具有不同流速和流量的鱼梯,自 2012 年以来一直进行适应性管理。作为适应性管理策略的鱼类捕捞调查对鱼类造成了沉重的负担。此外,在 30 天的调查期间需要动员大量的调查人员。因此,设计了一种使用环境 DNA 的监测方法,该方法不对鱼类造成负担,只需要少量的调查人员(采集水样)和内部分析人员;然而,它在远离分析点、流动空间有限的鱼类通道中的实施情况以及有效的水样采集频率尚未报道。因此,2019 年,我们开始了一项试验,旨在评估环境 DNA 调查方法及其在宫坂进水口大坝上下游各种鱼类群落的连续和长期监测中的应用条件。为了评估鱼类群落,比较了 2019 年至 2022 年环境 DNA 调查(代谢组学方法)的结果与 2012 年至 2022 年鱼类通道的捕捞调查结果。结果证实了在某些条件下,环境 DNA 调查在评估鱼类通道对生物多样性的贡献方面的应用,并介绍了一种新的样本采集方法。