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Bioenergetic and limnological foundations for using degree-days derived from air temperatures to describe fish growth

机译:生物能源和植物基础,用于使用空气温度的学位天描述鱼类生长

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摘要

Degree-days (DD) are an effective metric for quantifying the thermal opportunity for ectotherm growth. There is strong empirical evidence to suggest that DD are useful for describing fish growth and that immature growth increases linearly with DD. However, fish ecology lags behind other disciplines in the widespread adoption of DD. We provide (1) a foundation for the observed linear relationship between immature fish growth and DD and (2) justification for using DD derived from air temperatures as a proxy for DD derived from water temperatures in fish science. We use bioenergetics models and both simulated and empirical water temperatures to show that immature annual and interannual fish growth are approximately linear with water DD. We then use simulated and empirical data to show that air and surface water temperatures are often highly correlated and that immature fish growth is also approximately linear with air DD. By connecting the dots among air temperature, water temperature, and fish growth, we lay the foundation for wider adoption of DD in fish science.
机译:学位天(DD)是量化Ectotherm生长的热机会的有效度量。有强有力的经验证据表明DD可用于描述鱼类生长,并且不成熟的生长与DD线性增加。然而,在广泛采用DD的广泛采用中,鱼生态落后于其他学科。我们提供(1)在不成熟的鱼类生长和DD之间观察到的线性关系的基础,(2)使用从空气温度衍生的DD的理由作为来自鱼类科学水温的DD的代理。我们使用生物能器模型和模拟和经验水温,表明未成熟的年和际鱼生长大致用水DD线性。然后,我们使用模拟和经验数据来表明空气和表面水温通常具有高度相关性,并且不成熟的鱼类生长也近似与空气DD线性。通过将点连接到空气温度,水温和鱼类生长中,我们为鱼类科学的宽度采用奠定了基础。

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