SPYGEN, 17 rue du Lac Saint-André, Savoie Technolac, 73370, Le Bourget du Lac, France.
VIGILIFE, 17 rue du Lac Saint-André, Savoie Technolac, 73370, Le Bourget du Lac, France.
Sci Rep. 2018 Jul 10;8(1):10361. doi: 10.1038/s41598-018-28424-8.
Despite the ecological and societal importance of large rivers, fish sampling remains costly and limited to specific habitats (e.g., river banks). Using an eDNA metabarcoding approach, we regularly sampled 500 km of a large river (Rhône River). Comparisons with long-term electrofishing surveys demonstrated the ability of eDNA metabarcoding to qualitatively and quantitatively reveal fish assemblage structures (relative species abundance) but eDNA integrated a larger space than the classical sampling location. Combination of a literature review and field data showed that eDNA behaves in the water column like fine particulate organic matter. Its detection distance varied from a few km in a small stream to more than 100 km in a large river. To our knowledge, our results are the first demonstration of the capacity of eDNA metabarcoding to describe longitudinal fish assemblage patterns in a large river, and metabarcoding appears to be a reliable, cost-effective method for future monitoring.
尽管大型河流具有重要的生态和社会意义,但鱼类采样仍然成本高昂,并且仅限于特定的栖息地(例如,河岸)。我们使用基于 DNA 条形码的宏条形码方法,定期对一条长达 500 公里的大型河流(罗纳河)进行采样。与长期的电鱼调查进行比较,证明了 eDNA 宏条形码能够定性和定量地揭示鱼类群落结构(相对物种丰度),但 eDNA 整合的空间比传统采样位置更大。文献综述和实地数据的结合表明,eDNA 在水柱中表现得像细颗粒有机物质。它的检测距离从小溪流的几公里到大河的 100 多公里不等。据我们所知,我们的结果是首次证明 eDNA 宏条形码能够描述大型河流中的纵向鱼类群落模式,宏条形码似乎是一种可靠、具有成本效益的未来监测方法。