首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Using meta-analysis to derive a respiration model for Atlantic salmon (Salmo salar) to assess bioenergetics requirements of juveniles in two Canadian rivers
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Using meta-analysis to derive a respiration model for Atlantic salmon (Salmo salar) to assess bioenergetics requirements of juveniles in two Canadian rivers

机译:使用META分析来推导大西洋鲑鱼( Salmo Salar )的呼吸模型,以评估两条加拿大河流中青少年的生物能源要求

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Standard metabolic rates (SMRs) for Atlantic salmon (Salmo salar ) have been calculated independently for different life stages and populations, but the absence of a comprehensive SMR model limits its application for modelling the energy use or life stage-specific growth. Atlantic salmon respiration data were compiled from a meta-analysis of 26 publications, and exponential or optimal relationships were fitted to the metadata to estimate respiration equation parameters and generate confidence intervals dependent on temperature and body mass. While model parameters were significant for both models, mass-corrected standard metabolic rates (g O_(2)·day~(?1)) increased as a function of water temperature (°C) and decreased beyond ~16 °C following an optimal relationship (AIC_(optimal) = –9185.50 versus AIC_(exponential) = –8948.95; ΔAIC = 236.55). Juvenile Atlantic salmon growth (cohorts 1 and 2) from bioenergetics simulations did not vary between Little Southwest Miramichi and Northwest Miramichi rivers; however, variation between simulations using the different respiration models (i.e., exponential versus optimal) led to differences in the way fish allocate energy throughout the year. Results from this analysis will inform conservation efforts for the species throughout its current range and predict the energetic requirements at juvenile life stages.
机译:对于大西洋鲑鱼( Salmo Salar)的标准代谢率(SMR)已经独立计算不同的寿命和群体,但没有综合的SMR模型限制其应用于建模能量使用或寿命阶段特异性增长。从26个出版物的META分析编制大西洋鲑鱼呼吸数据,指数或最佳关系拟合到元数据,以估计呼吸方程参数,并产生依赖于温度和体重的置信区间。虽然模型参数对于两种模型都很重要,但质量校正的标准代谢速率(G O_(2)·日〜(α1))随水温(°C)的函数而增加,并且在最佳状态下减少约16°C关系(AIC_(最佳)= -9185.50与AIC_(指数)= -8948.95;ΔAIC= 236.55)。来自生物植物模拟的少年大西洋三文鱼生长(群组1和2)在小西拉米希和西北米拉米希河之间没有变化;然而,使用不同呼吸模型(即指数与最佳)模拟之间的变化导致了鱼类全年分配能量的方式差异。该分析的结果将在整个当前范围内提供物种的节约努力,并预测少年生命阶段的能量需求。

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