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首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Effects of temperature and body-mass on the standard metabolic rates of the round stingray, Urobatis halleri (Cooper, 1863)
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Effects of temperature and body-mass on the standard metabolic rates of the round stingray, Urobatis halleri (Cooper, 1863)

机译:温度和体内质量对圆形黄貂鱼的标准代谢率的影响,Urbatis Holleri(Cooper,1863)

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摘要

Using an intermittent respirometer, we measured the thermal sensitivity (metabolic Q(10)) and scaling relationship (b) of the round stingray, Urobatis halleri, based on their standard metabolic rates (SMR). A total of 33 individuals (mass range = 0.03-0.86 kg) were acclimated for over 14 days at three temperature treatments (15 degrees, 23 degrees, 27 degrees C) spanning the seasonal water temperature variation in southern California. An average thermal sensitivity (Q(10)) of 3.1 was estimated for the round stingray across the range of experimental temperatures. Estimations of size dependent Q(10) was 3.8 in juveniles while 2.6 in adults. Our model showed a negative relationship between this species mass-specific scaling exponent (b) and temperature (b = 0.99 at 15 degrees C, b = 0.86 at 23 degrees C, and b = 0.79 at 27 degrees C). Results indicate that the round stingray is relatively sensitive to the thermal fluctuations they experience in southern California. While adults with a relatively high metabolic Q(10) may optimize their daily net energy gain by exploiting the local thermal heterogeneity, a higher thermal sensitivity in juveniles could have adverse effects on the population fitness under a pervasive increase of ocean's temperature. Given that the scaling exponent can be affected by temperature, modeling studies should consider correcting for this effect when using scaling relationships as an input for more precise bioenergetic models under various thermal scenarios.
机译:使用间歇呼吸,我们测量了热灵敏度(代谢Q(10))和圆黄貂鱼的比例关系(b)中,Urobatis halleri,基于其标准代谢率(SMR)。总共33个人(质量范围= 0.03-0.86千克)中适应超过14天在三个温度处理(15度,23度,27度C)横跨在南加州季节性水的温度变化。的3.1(Q(10))的平均热灵敏度估计跨试验温度范围内的圆的黄貂鱼。尺寸依赖Q(10)的估计在青少年而2.6成人为3.8。我们的模型显示该种类特定的质量标度指数(b)和温度之间的负相关(B = 0.99在15℃,B = 0.86在23℃,和b = 0.79在27度C)。结果表明,该轮黄貂鱼是他们在南加州体验热波动相对敏感。而具有相对高代谢Q(10)成人可以优化通过利用局部热异质日常的净能量增益,在青少年更高的热敏感性可能有下海洋温度的普遍增加对人口健康的不良影响。鉴于标度指数受温度的影响,模拟研究应该考虑使用比例关系,作为输入用于在各种热的情况更精确的生物能量模型时校正这种效果。

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