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首页> 外文期刊>The Journal of Experimental Biology >Minimum daily core body temperature in western grey kangaroos decreases as summer advances: a seasonal pattern, or a direct response to water, heat or energy supply?
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Minimum daily core body temperature in western grey kangaroos decreases as summer advances: a seasonal pattern, or a direct response to water, heat or energy supply?

机译:夏季,西部灰袋鼠的最低每日核心体温会降低:是季节性的模式,还是对水,热或能量供应的直接反应?

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Using implanted temperature loggers, we measured core body temperature in nine western grey kangaroos every 5 min for 24 to 98 days in spring and summer. Body temperature was highest at night and decreased rapidly early in the morning, reaching a nadir at 10:00 h, after ambient temperature and solar radiation had begun to increase. On hotter days, the minimum morning body temperature was lower than on cooler days, decreasing from a mean of 36.2 degrees C in the spring to 34.0 degrees C in the summer. This effect correlated better with the time of the year than with proximate thermal stressors, suggesting that either season itself or some factor correlated with season, such as food availability, caused the change. Water saving has been proposed as a selective advantage of heterothermy in other large mammals, but in kangaroos the water savings would have been small and not required in a reserve with permanent standing water. We calculate that the lower core temperature could provide energy savings of nearly 7%. It is likely that the heterothermy that we observed on hot days results either from decreased energy intake during the dry season or from a seasonal pattern entrained in the kangaroos that presumably has been selected for because of decreased energy availability during the dry season.
机译:使用植入式温度记录仪,我们在春季和夏季每5分钟测量9只西部灰色袋鼠的核心体温,持续24至98天。在室温和太阳辐射开始增加之后,人体温度在晚上最高,并在清晨迅速下降,并在10:00 h达到最低点。在较热的日子里,早晨的最低体温低于较冷的日子,从春季的平均36.2摄氏度降低到夏季的34.0摄氏度。这种影响与一年中的时间比与临近的热应激因素相关性更好,这表明季节本身或与季节相关的某些因素(例如食物供应量)引起了这种变化。节水已被提议作为其他大型哺乳动物的异体热的选择性优势,但在袋鼠中,节水将是很小的,并且在具有永久性积水的保护区中不需要。我们计算出较低的核心温度可以节省近7%的能源。我们在炎热的天气中观察到的异温热可能是由于干旱季节的能量摄入减少,或者是由于干旱季节能量的减少而选择了袋鼠所夹带的季节性模式。

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