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Ecological Energetics of the Kestrel:Daily Energy Expenditure throughout the Year Based on Time-Energy Budget, Food Intake and Doubly Labeled Water Methods

机译:茶est的生态能量学:基于时间-能量预算,食物摄入量和双标记水方法的全年全年能量支出

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摘要

1. Three methods were employed to determine the daily energy expenditure (DEE) of free-living Kestrels, throughout the year in a study area in the northern Netherlands. - TEB (time budget analysis) - Food intake (observational method) - DLW (doubly labeled water method) 2. The TEB model used here relies on empirically determined cost factors for the behaviour categories distinguished. To obtain average daily energy expenditure the average fasting metabolic rate for birds under thermoneutral conditions as determined in the laboratory is adjusted for thermoregulatory cost under field conditions. The environmental factors impinging on the animal were evaluated by exposing a heated taxidermic mount to ambient conditions. To this value were added the cost factors for activity as well as for tissue synthesis and empirically determined values for the heat increment of feeding. Where appropriate, the increased energetic expenditure associated with moult has also been added. 3. In all, comparison of TEB predictions and DLW measurements is possible for 15 sessions lasting from one to three days. Agreement was good, the time budget model tending to overestimate actual energy expenditure by about 7%. A further 12 DLW determinations, lacking complete time budget data, when compared to the mean, expected by TEB prediction for the period of the year concerned, confirm this (discrepancy about 1%, TEB again overestimating). 4. The estimation of daily expenditure from the observations of prey capture when corrected for body mass changes (D) yields figures lower than the TEB prediction by about 11 %. After excluding episodes of extreme discrepancies, which are probably due to shortcomings of the food intake method under special circumstances, food intake estimated DEE about 6.5% lower than TEB predictions. We conclude that this method is for a large part of the annual cycle essentially in agreement with the DLW value. 5. The seasonal pattern of energy expenditure in the Kestrel as estimated by the TEB approach is given. Males experience an extended annual peak during reproduction when they provision both their mate and progeny, whereas females peak during the late nestling phase when they actively participate in feeding. 6. On account of the energy subsidy provided by the male and lower mass-specific basal metabolic rate, the total annual energy consumption of the heavier female Kestrel is slightly less than that of her mate. Consequently the mass-specific metabolic rate in males is 20% higher than in females, which might have, still unknown, different consequences for the expected longevity of the sexes.
机译:1.在荷兰北部的一个研究区域,全年采用三种方法确定自由生活的Kestrels的每日能量消耗(DEE)。 -TEB(时间预算分析)-食物摄入(观测方法)-DLW(双标签水方法)2.此处使用的TEB模型依靠经验确定的成本因子来区分不同的行为类别。为了获得平均每日能量消耗,对实验室确定的热中性条件下禽类的平均空腹代谢率进行了田间条件下的温度调节费用的调整。通过将加热的动物标本架暴露于环境条件来评估影响动物的环境因素。在该值中添加了活动和组织合成的成本因素,以及根据经验确定的进食热量增量值。在适当的情况下,还增加了与换羽有关的精力充沛的支出。 3.总共可以比较15天的TEB预测和DLW测量,持续1到3天。协议很好,时间预算模型倾向于将实际能源支出高估约7%。与TEB预测在有关年份的预期中所期望的平均值相比,缺乏完整的时间预算数据的另外12项DLW测定证实了这一点(差异约为1%,TEB再次高估了)。 4.校正体重变化(D)后,从猎物捕获的观察中得出的每日支出估算值比TEB预测值低约11%。在排除可能由于特殊情况下食物摄入方法的缺陷而导致的极高差异的事件之后,食物摄入量的估计DEE比TEB预测低约6.5%。我们得出的结论是,该方法在很大程度上与DLW值一致,在整个年度周期中占很大比例。 5.给出了用TEB方法估算的茶est能量消耗的季节性模式。当雄性提供配偶和后代时,其繁殖期间的年度高峰期延长,而雌性则积极参与进食,在巢期后期达到高峰。 6.由于男性提供的能量补贴和较低的特定群体基础代谢率,较重的雌性茶est的年总能量消耗略低于其同伴。因此,男性的特定质量代谢率比女性高20%,这对于预期的性别寿命可能会有不同的后果,但仍未知。

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