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首页> 外文期刊>Environmental Biology of Fishes >Energetic status and bioelectrical impedance modeling of Arctic grayling Thymallus arcticus in interior Alaska Rivers
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Energetic status and bioelectrical impedance modeling of Arctic grayling Thymallus arcticus in interior Alaska Rivers

机译:北极灰曲塔比萨斯北极地区的精力充沛的地位和生物电阻抗建模在室内阿拉斯加河

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The energetic status of fishes represents energy stored as protein and lipids and reflects the ability of an individual to reproduce, migrate, and transition through life stages, ultimately influencing survival. However, traditional measurement methods, while highly accurate, are time consuming, expensive, and lethal, and nonlethal methods such as condition factor may not adequately characterize energetic status. We collected 161 Arctic grayling (Thymallus arcticus) from four interior Alaska river basins with varying hydrologic regimes during early summer and autumn seasons, and used multiple regression and model selection to evaluate the efficacy of bioelectrical impedance analysis (BIA), a nonlethal condition assessment method, to predict percent dry mass and percent lipid content estimated from proximate analysis. We found that Arctic grayling energetic status varied across seasons, by sex, and fish from sites with spawning runs of Pacific salmon had higher energy content than those from sites without salmon, potentially due to the influence of salmon-derived food subsidies. Electrical measurements explained 82% and 80% of the variability in percent dry mass and percent total lipids, respectively, and top models showed high predictive performance (observed vs. predicted root mean squared error = 2.2%). Overall, we found the BIA approach to provide rapid, precise, and non-lethal estimates of Arctic grayling body condition. Such an approach may be useful for future work to characterize Arctic grayling bioenergetics and monitor fish condition under a rapidly changing Arctic environment.
机译:鱼类的能量状态是储存作为蛋白质和脂质的能量,并反映了个人通过寿命繁殖,迁移和过渡的能力,最终影响生存率。然而,传统的测量方法,同时高度准确,是耗时,昂贵和致命的,并且非致命方法,如条件因子可能无法充分表征能量状态。从四个内部的阿拉斯加河流域收集了161个北极灰曲(Thymallus Arcticus),在初夏和秋季季节,并使用多元回归和模型选择来评估生物电阻抗分析(BIA)的疗效,非致命条件评估方法,预测从近分析估计的干含量百分比和百分比脂质含量。我们发现,北极河鳟的精力充沛的状态各种各样的季节,通过性别,以及来自太平洋鲑鱼的产卵的网站的鱼类的能量含量比没有鲑鱼的遗址更高,可能是由于鲑鱼衍生的食品补贴的影响。电测量分别解释了干肿块百分比和总脂质百分比的82%和80%,顶部模型显示出高的预测性能(观察到的与预测的根部平均平方误差误差)。总体而言,我们发现BIA方法提供快速,精确,非致命性的北极灰曲体状况的估计。这种方法对于将来的工作有用,可以在迅速改变的北极环境下表征北极河流生物共生学和监测鱼条件。

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