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Caps and gaps: a computer model for studies on brood incubation strategies in honeybees (Apis mellifera carnica)

机译:上限和差距:用于蜜蜂(Apis mellifera carnica)育雏策略研究的计算机模型

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摘要

In addition to heat production on the comb surface, honeybee workers frequently visit open cells ("gaps") that are scattered throughout the sealed brood area, and enter them to incubate adjacent brood cells. We examined the efficiency of this heating strategy under different environmental conditions and for gap proportions from 0 to 50%. For gap proportions from 4 to 10%, which are common to healthy colonies, we find a significant reduction in the incubation time per brood cell to maintain the correct temperature. The savings make up 18 to 37% of the time, which would be required for this task in completely sealed brood areas without any gaps. For unnatural high proportions of gaps (>20%), which may be the result of inbreeding or indicate a poor condition of the colony, brood nest thermoregulation becomes less efficient, and the incubation time per brood cell has to increase to maintain breeding temperature. Although the presence of gaps is not essential to maintain an optimal brood nest temperature, a small number of gaps make heating more economical by reducing the time and energy that must be spent on this vital task. As the benefit depends on the availability, spatial distribution and usage of gaps by the bees, further studies need to show the extent to which these results apply to real colonies.
机译:除了在梳子表面产生热量外,蜜蜂的工作人员还经常拜访散布在整个封闭育雏区域的开放细胞(“缺口”),并进入它们以孵化相邻的育雏细胞。我们检查了这种加热策略在不同环境条件下以及间隙比例从0%到50%的效率。对于健康菌落常见的4%至10%的缺口比例,我们发现每个育雏细胞的保温时间显着减少,以保持正确的温度。节省的时间占总时间的18%至37%,这是在完全密封的育雏区域中没有任何间隙的情况下所需的。对于不自然的高比例缺口(> 20%),这可能是近交的结果或表明菌落状况差,育雏巢的温度调节效率降低,必须增加每个育雏细胞的孵育时间以维持繁殖温度。尽管间隙的存在对于维持最佳的巢巢温度不是必不可少的,但是少量的间隙通过减少必须花费在这项重要任务上的时间和精力,使加热更加经济。由于收益取决于蜜蜂的可获得性,空间分布和缺口的利用,因此需要进一步的研究来证明这些结果在多大程度上适用于真实的殖民地。

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