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Free-living greylag geese adjust their heart rates and body core temperatures to season and reproductive context

机译:自由生活的灰雁根据季节和生殖环境调整心率和体温

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摘要

Animals adaptively regulate their metabolic rate and hence energy expenditure over the annual cycle to cope with energetic challenges. We studied energy management in greylag geese. In all geese, profound seasonal changes of heart rate (fH) and body temperature (Tb) showed peaks in summer and troughs during winter, and also daily modulation of fH and Tb. Daily mean fH was on average 22% lower at the winter trough than at the summer peak, whereas daily mean Tb at the winter trough was only about 1 °C below the summer peak. Daily means of Tb together with those of air temperature and day length were the most important predictors of daily mean fH, which was further modulated by precipitation, reproductive state, and, to a minor degree, social rank. Peaks of fH and Tb occurred earlier in incubating females compared to males. Leading goslings increased daily mean fH. Our results suggest that in greylag geese, pronounced changes of fH over the year are caused by photoperiod-induced changes of endogenous heat production. Similar to large non-hibernating mammals, tolerance of lower Tb during winter seems the major factor permitting this. On top of these major seasonal changes, fH and Tb are elevated in incubating females.
机译:动物可以适应性地调节其新陈代谢速度,从而在整个年度周期内调节能量消耗,以应对精力充沛的挑战。我们研究了灰雁的能源管理。在所有鹅群中,心率(fH)和体温(Tb)的深刻季节性变化在夏季出现高峰,在冬季出现低谷,并且每日调节fH和Tb。冬季低谷处的日均fH平均比夏季高峰低22%,而冬季低谷处的日均Tb仅比夏季高峰低1C。 Tb的每日平均值,气温和日长是每日平均fH的最重要预测指标,而fH则由降水,生殖状态以及较小的社会地位进一步调节。与雄性相比,孵化雌性时fH和Tb的峰值出现得更早。雏鹅的日均fH增加。我们的结果表明,在灰雁中,一年中fH的明显变化是由光周期诱导的内生热产生变化引起的。与大型非冬眠哺乳动物相似,冬季对较低Tb的耐受性似乎是允许这种情况的主要因素。除了这些主要的季节性变化外,在孵化的雌性动物中fH和Tb升高。

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