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Mass scaling of the resting and maximum metabolic rates of the black carp

机译:黑色鲤鱼休息和最大代谢速率的大规模缩放

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We investigated the body mass (M) scaling of resting metabolic rate (RMR), maximum metabolic rate (MMR), excess post-exercise oxygen consumption (EPOC), blood parameters, and organ masses of black carp (Mylopharyngoden piceus). The results showed that RMR scaled with M of the fish by an exponent (b) of 0.833 (b (R)), which was significantly larger than 0.75. MMR scaled with M by a power of 0.775 (b (M)), which was significantly lower than 1 and may be due to a small size proportion of red muscle. No difference between b (R) and b (M) or correlation between factorial aerobic scope and M was found. However, EPOC scaled positively with M by a power of 1.231, suggesting a constant aerobic capacity and an enhanced anaerobic capacity with fish growth. Mass of the inactive organs scaled with M by a power of 1.005, which was significantly larger than 1 and was negatively correlated with RMR, suggesting that the proportion of inactive organs increases with fish growth, which may contribute to the negative scaling of RMR. Red blood cell surface area (S) did not increase with increasing M, suggesting that the ontogenetic decrease in the surface area to volume ratio of cells may not contribute to the negative scaling of RMR. The predicted b (R) value (0.846) by the average S (1.746 A mu mA(2)) differs by only 1.62% from the observed b (R) value using our previously reported S - b (R) function in carp, suggesting that the species-specific cell size, rather than its ontogenetic change, affects the metabolic scaling of a species.
机译:我们研究了休息代谢率(RMR),最大代谢率(MMR),运动后氧气消耗(EPOC),血液参数和器官群体的体积(M)缩放,血液参数和器官群体(Mylopharyngoden Piceus)。结果表明,用0.833(B(r))的指数(b)尺度用m鱼缩放的RMR,其显着大于0.75。 MMR为0.775(B(m))的功率缩小,其显着低于1,并且可能是由于红色肌肉的小尺寸比例。 B(R)和B(m)之间没有区别或因子之间发现阶乘有氧范围和m之间的相关性。然而,EPOC通过1.231的功率呈正极地缩放,表明恒定的有氧能力和具有鱼类生长的增强的厌氧能力。用m质量缩小的无活性器官的功率为1.005,其明显大于1并且与RMR负相关,表明无活性器官的比例随着鱼类的增长而增加,这可能有助于RMR的负缩放。随着M的增加,红细胞表面积不会增加,表明表面积与细胞的体积比的植入减少可能不会导致RMR的负缩放。预测的B(R)值(R)值(0.846)平均S(1.746A mu mA(2))在鲤鱼中使用先前报道的S-B(R)函数的观察到的B(R)值仅为1.62%。表明物种特异性细胞大小,而不是其植入变化,影响了物种的代谢缩放。

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