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Different Temperature and Cooling Patterns at the Blunt and Sharp Egg Poles Reflect the Arrangement of Eggs in an Avian Clutch

机译:钝和尖卵子杆的不同温度和冷却方式反映了禽类离合器中卵的排列

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摘要

Incubation is an energetically demanding process during which birds apply heat to their eggs to ensure embryonic development. Parent behaviours such as egg turning and exchanging the outer and central eggs in the nest cup affect the amount of heat lost to the environment from individual eggs. Little is known, however, about whether and how egg surface temperature and cooling rates vary among the different areas of an egg and how the arrangement of eggs within the clutch influences heat loss. We performed laboratory (using Japanese quail eggs) and field (with northern lapwing eggs) experiments using infrared imaging to assess the temperature and cooling patterns of heated eggs and clutches. We found that (i) the sharp poles of individual quail eggs warmed to a higher egg surface temperature than did the blunt poles, resulting in faster cooling at the sharp poles compared to the blunt poles; (ii) both quail and lapwing clutches with the sharp poles oriented towards the clutch centre (arranged clutches) maintained higher temperatures over the central part of the clutch than occurred in those clutches where most of the sharp egg poles were oriented towards the exterior (scattered clutches); and (iii) the arranged clutches of both quail and lapwing showed slower cooling rates at both the inner and outer clutch positions than did the respective parts of scattered clutches. Our results demonstrate that egg surface temperature and cooling rates differ between the sharp and blunt poles of the egg and that the orientation of individual eggs within the nest cup can significantly affect cooling of the clutch as a whole. We suggest that birds can arrange their eggs within the nest cup to optimise thermoregulation of the clutch.
机译:孵化是一个精力充沛的过程,在此过程中,鸟类将热量加热到卵上以确保胚胎发育。父母的行为,例如转动鸡蛋以及交换巢杯中的外部和中央鸡蛋,都会影响单个鸡蛋散发到环境中的热量。然而,关于鸡蛋的不同区域之间的鸡蛋表面温度和冷却速率是否变化以及如何变化以及离合器中鸡蛋的排列如何影响热量损失的知之甚少。我们使用红外成像技术进行了实验室(使用日本鹌鹑蛋)和田野(使用北蛋)实验,以评估加热后的鸡蛋和离合器的温度和冷却方式。我们发现:(i)单个鹌鹑蛋的尖极比钝极变暖到更高的蛋表面温度,与尖极相比,尖锐极的冷却速度更快; (ii)鹌鹑和田wing离合器中,尖锐的极指向离合器中心(已布置的离合器),在离合器中部保持较高的温度,而大多数尖锐的蛋极指向外部(散开)的离合器保持较高的温度。离合器); (iii)鹌鹑和田wing的已布置离合器在内部和外部离合器位置均显示出比散开离合器的各个部分的冷却速度慢。我们的结果表明,鸡蛋的表面温度和冷却速度在鸡蛋的尖角和钝角之间有所不同,并且单个蛋在巢杯中的方向会显着影响整个离合器的冷却。我们建议禽鸟可以将鸡蛋放在巢杯中,以优化离合器的温度调节。

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