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首页> 外文期刊>Endangered species research >Osmoregulatory, metabolic, and nutritional condition of summer-run male Chinook salmon in relation to their fate and migratory behavior in a regulated river
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Osmoregulatory, metabolic, and nutritional condition of summer-run male Chinook salmon in relation to their fate and migratory behavior in a regulated river

机译:夏季运行的奇努克鲑鱼在调节河中的渗透调节,代谢和营养状况与其命运和迁徙行为的关系

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ABSTRACT: We studied the migratory success of male summer-run Chinook salmon Oncorhynchus tshawytscha in the Puntledge River on Canada’s Vancouver Island over a 3 yr period using biotelemetry and non-lethal physiological biopsy. Principal component analysis was used to group co-varying physiological variables prior to comparing fish with different migratory behaviors (e.g. migration rate, holding times) and fate (migration and spawning success). Fish with low levels of endogenous energy stores (total protein, cholesterol, and triglycerides) and dietary minerals (calcium, magnesium, and phosphorus) at the time of sampling were found to subsequently ascend the most upstream natural barrier (Nib Falls) significantly faster than fish with higher levels. Fate was weakly associated with several physiological characteristics; successful migrants had significantly higher hematocrit values and significantly lower plasma K+ relative to failed migrants, suggesting that fish condition at river entry can influence subsequent behavior. Our results indicate that physiological and nutritional condition can influence adult migrating male summer-run Chinook salmon, but we did not find a physiological profile that could explain all behaviors and fates observed. This study represents one of the first to apply conservation physiology tools to study an imperiled river fish population.
机译:摘要:我们使用生物遥测和非致死性生理活检技术研究了加拿大温哥华岛蓬特里奇河上3年来夏季运行的雄性奇努克鲑鱼(icoronnchynchus tshawytscha )的迁徙成功。在比较具有不同迁徙行为(例如迁徙速度,保持时间)和命运(迁徙和产卵成功)的鱼类之前,使用主成分分析对不同的生理变量进行分组。发现采样时内源性能量存储量低(总蛋白,胆固醇和甘油三酸酯)和膳食矿物质(钙,镁和磷)含量低的鱼随后比最上游的自然屏障(Nib Falls)上升更快。高水平的鱼。命运与几种生理特征微弱相关。与失败的移民相比,成功的移民具有更高的血细胞比容值和更低的血浆K +值,这表明河流进入时的鱼类状况会影响随后的行为。我们的结果表明,生理和营养状况可以影响成年迁徙的成年雄性夏努克鲑鱼,但我们没有找到可以解释观察到的所有行为和命运的生理特征。这项研究代表了最早应用保护生理学工具来研究河床鱼类种群数量的方法之一。

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