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洄游型奇努克鲑鱼苗的洄游行为。

Swimming behavior of emigrating Chinook Salmon smolts.

机构信息

Center for Watershed Sciences, University of California Davis, Davis, California, United States of America.

Department of Civil and Environmental Engineering, University of California Davis, Davis, California, United States of America.

出版信息

PLoS One. 2022 Mar 15;17(3):e0263972. doi: 10.1371/journal.pone.0263972. eCollection 2022.

Abstract

Swimming behavior of Chinook Salmon (Oncorhynchus tshawytscha) smolts affects transit time, route selection and survival in complex aquatic ecosystems. Behavior quantified at the river reach and junction scale is of particular importance for route selection and predator avoidance, though few studies have developed field-based approaches for quantifying swimming behavior of juvenile migratory fishes at this fine spatial scale. Two-dimensional acoustic fish telemetry at a river junction was combined with a three-dimensional hydrodynamic model to estimate in situ emigration swimming behavior of federally-threatened juvenile Chinook salmon smolts. Fish velocity over ground was estimated from telemetry, while the hydrodynamic model supplied simultaneous, colocated water velocities, with swimming velocity defined by the vector difference of the two velocities. Resulting swimming speeds were centered around 2 body lengths/second, and included distinct behaviors of positive rheotaxis, negative rheotaxis, lateral swimming, and passive transport. Lateral movement increased during the day, and positive rheotaxis increased in response to local hydrodynamic velocities. Swim velocity estimates were sensitive to the combination of vertical shear in water velocities and vertical distribution of fish.

摘要

奇努克鲑(Oncorhynchus tshawytscha)幼鱼的游泳行为会影响其在复杂水生态系统中的洄游时间、洄游路线选择和生存。在河川段和河川交叉口尺度上量化的行为对于洄游路线选择和躲避捕食者非常重要,尽管很少有研究针对这种精细的空间尺度开发出基于野外的量化幼鱼洄游鱼类游泳行为的方法。在河川交叉口处采用二维声纳鱼类遥测技术与三维水动力模型相结合,来估算受联邦威胁的幼年奇努克鲑幼鱼的原位洄游游泳行为。从遥测数据中估算鱼在地面上的移动速度,而水动力模型同时提供同地点的水流速度,游泳速度定义为这两个速度的矢量差。得出的游泳速度集中在 2 个身体长度/秒左右,包括明显的正趋流性、负趋流性、横向游泳和被动迁移等行为。白天横向运动增加,而正趋流性则会响应局部水动力速度而增加。游泳速度估计对水速度的垂直切变和鱼类的垂直分布组合很敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/270b/8923499/d4a931680d78/pone.0263972.g001.jpg

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