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Lateral migration of fish between China's second largest freshwater lake (Dongting Lake) and the mainstem of the Yangtze River

机译:中国第二大淡水湖(洞庭湖)与长江主干侧面迁移

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Lateral migration of fish between Dongting Lake and the mainstem of Yangtze River was investigated at the channel connecting these two systems to identify its regular pattern and possible affecting factors. During the sampling period, a total of 55 fish species were recorded, with the lake-river migratory fish species dominating abundance all the time. Hierarchical clustering analysis found four temporal fish assemblages: Feb-Mar, Apr-Jun, Jul-Sep and Oct-Jan, which was consistent with the rising and falling of water temperature and water level. The Movement index was used to measure the direction of fish migration, which was found closely associated with variations of water temperature, water level and flow discharge. Particularly, when water temperature and water level rose from March to July, fish migration showed the tendency of entering the lake; when they receded from August to February of the next year, fish migration showed the opposite tendency. Based on our results, we concluded that maintaining the river-lake connection is essential for the river-lake migratory fishes and the natural flow regime was the key driver in this floodplain ecosystem.
机译:在连接这两个系统的通道中调查了洞庭湖与长江主机之间鱼的横向迁移,以确定其常规模式和可能的影响因素。在采样期间,共记录了共有55种鱼类,湖泊河流迁徙鱼类始终占据丰富。分层聚类分析发现了四个颞钓鱼组合:2月2月,4月,7月,9月和10月 - Jan,这与水温和水位的上升和下降一致。运动指数用于测量鱼迁移的方向,该方向与水温,水位和流量排出的变化密切相关。特别是,当水温和水位从3月到7月的水平上升时,鱼迁移显示进入湖泊的趋势;当他们从明年的8月到2月退出时,鱼迁移表现出相反的趋势。根据我们的结果,我们得出结论,维持河湖连接对于河湖迁徙鱼类至关重要,自然流动制度是这一洪泛区生态系统的关键驾驶员。

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