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首页> 外文期刊>Journal of Thermal Biology >Thermal biology and bioenergetics of different upriver migration strategies in a stock of summer-run Chinook salmon
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Thermal biology and bioenergetics of different upriver migration strategies in a stock of summer-run Chinook salmon

机译:夏季运行的奇努克鲑鱼种群中不同上游迁移策略的热生物学和生物能学

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By combining biotelemetry with animal-borne thermal loggers, we re-created the thermal histories of 21 summer-run Chinook salmon (Oncorhynchus tshawytscha) migrating in the Puntledge River, a hydropower impacted river system on Vancouver Island, British Columbia, Canada. Daily maximum water temperatures in the Puntledge River during the summer-run adult Chinook salmon migration and residency period frequently exceeded 21 degrees C, a value that has been observed to elicit behavioral thermoregulation in other Chinook salmon populations. We therefore compared river temperatures to body temperatures of 16 fish that migrated through the river to understand if cool-water refuge was available and being used by migrants. In addition, we used thermal histories from fish and thermal loggers distributed in the river to model the effect of thermal habitat on energy density using a bioenergetics model. In general, we found no evidence that cool-water refuge existed in the river, suggesting that there is no opportunity for fish to behaviorally thermoregulate during upriver migration through the regulated portion of the river. Of the thermal histories used in the bioenergetics model, fish that reached an upstream lake were able to access cooler, deeper waters, which would have reduced energy consumption compared to fish that only spent time in the warmer river. Consequently, the Puntledge River water temperatures are likely approaching and in some cases exceeding the thermal limits of the summer-run Chinook salmon during the spawning migration. Further warming may cause more declines in the stock
机译:通过将生物遥测技术与动物传播的热记录仪相结合,我们重新创建了21只夏季运行的奇努克鲑(Oncorhynchus tshawytscha)在蓬特里奇河中迁移的热历史,蓬特里奇河是受水电影响的加拿大不列颠哥伦比亚省温哥华岛的水系。在夏季成年奇努克鲑鱼成年和迁徙期间,蓬特雷奇河的每日最高水温经常超过21摄氏度,这一温度已被观察到引起其他奇努克鲑鱼种群的行为温度调节。因此,我们将河流温度与通过河流迁移的16条鱼的体温进行了比较,以了解是否有冷水庇护所并被移民使用。此外,我们使用了分布在河中的鱼类和热记录仪的热历史,使用生物能学模型来模拟热栖息地对能量密度的影响。总体而言,我们没有发现证据表明河流中存在冷水庇护所,这表明在上游河流通过受管制区域迁移期间,鱼类没有机会进行体温调节。在生物能学模型中使用的热历史中,到达上游湖泊的鱼能够进入更凉,更深的水域,与仅在温暖的河中度过的鱼相比,这将减少能耗。因此,在产卵迁移过程中,蓬特利奇河的水温可能接近并且在某些情况下超过了夏季运行的奇努克鲑鱼的温度极限。进一步变暖可能导致库存进一步下降

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