Environmental DNA Characterization of the Fish Species Composition in the Mukawa River and Adjacent Habitats

Fishes Pub Date : 2024-04-21 DOI:10.3390/fishes9040147
Hyojin Ahn, Michael J. Miller
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Abstract

The diverse freshwater fish fauna of the Japanese archipelago is distributed among four main island landmasses, which include Hokkaido in the north, with many diadromous species. One relatively well-preserved river drainage along the southern coast of Central Hokkaido is the Mukawa River. Fish fauna surveys in the Mukawa River were mostly in downstream areas and the fish diversity is not well-documented among the upper, lower river, and coastal environments. Fish communities in the river, estuary, and sea were sampled using eDNA analysis to evaluate upstream and downstream species detections, and tidal and spatial detection variation near the river mouth. The number of species was higher at the river mouth and nearshore sites compared to the river and offshore. Fish detections reflected life history categories (freshwater resident, diadromous, brackish, or marine) and the environments. Similarity analysis showed that fish species compositions were divided into (1) upstream and midstream, (2) downstream and river mouth, (3) adjacent shore, and (4) offshore. Salmonid, cyprinid, loach, and sculpin species were detected in the river, compared to a mixture of species downstream and along the coast. This rapid assessment type study demonstrated that eDNA survey methodology would be effective for multiple river comparative surveys, seasonality studies, or evaluating possible effects of cross-river weirs or dams.
武川河及邻近栖息地鱼类物种组成的环境 DNA 特征描述
日本列岛的淡水鱼类动物种类繁多,分布在四个主要岛屿陆地上,包括北部的北海道,其中有许多洄游鱼类。北海道中部南部沿岸有一条保存相对完好的河流,那就是向川。对向川的鱼类动物调查主要集中在下游地区,对河流上游、下游和沿岸环境中的鱼类多样性没有很好的记录。利用 eDNA 分析法对河流、河口和海域的鱼类群落进行了采样,以评估上游和下游的物种检测情况,以及河口附近潮汐和空间检测的变化情况。与河流和近海相比,河口和近岸地点的物种数量较多。检测到的鱼类反映了生活史类别(淡水常住、洄游、咸水或海洋)和环境。相似性分析表明,鱼类物种组成分为:(1) 上游和中游;(2) 下游和河口;(3) 近岸;(4) 近海。在河流中发现了鲑科鱼类、鲤科鱼类、泥鳅和鲭科鱼类,而在下游和沿岸则发现了多种鱼类。这项快速评估型研究表明,eDNA 调查方法对于多河流比较调查、季节性研究或评估跨河围堰或大坝可能造成的影响非常有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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