利用代谢数据研究育窝大小在恒温动物发育中的作用

IF 1.5 3区 生物学 Q1 ORNITHOLOGY
Elana Rae Engert, Fredrik Andreasson, Andreas Nord, Jan-Åke Nilsson
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引用次数: 0

摘要

晚食鸣禽从孵化到羽翼丰满的几天时间里,从赤裸的变温动物转变为完全有羽毛的恒温动物。恒温动物的个体发生是鸟类发育的一个里程碑,因为鸟类不仅要面对更温暖的平均气温,还要面对越来越频繁的寒流和极端天气。半个多世纪以来,人们一直在研究晚育鸟类的恒温动物发育时间。然而,恒温动物发生的决定因素和限制因素尚未完全了解。我们通过实验研究了在瑞典南部饲养的4-8日龄雏鸟蓝山雀(Cyanistes caeruleus)的巢大小是否会影响吸热产热的个体发育。对冷却挑战(15°C)的产热反应随着年龄的增长而增加。我们发现,8日龄雏鸟的吸热产热能力与扩大的雏鸟相比略有增加。这种差异不能用体重来解释,因为这一特征在不同的育雏规模类别之间没有差异。虽然大多数雏鸟在第6天就出现了代谢反应,但这种反应是短暂的,持续时间不超过几分钟,也不足以维持任何年龄组的稳定体温。我们的研究表明,雏鸟蓝山雀在幼年时就开始有恒温行为,在雏鸟数量减少的情况下可能发展得更快,但雏鸟在出生后的第一周缺乏足够的保温和产热性能来独立维持恒温行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using metabolic data to investigate the role of brood size in the development of endothermy

Altricial songbirds transform themselves from naked poikilotherms to fully feathered endothermic homeotherms over a matter of days from hatching to fledging. The ontogeny of endothermy is a developmental milestone for birds that not only face warmer average temperatures, but also increasingly frequent cold snaps and extreme weather. The timing of development of endothermy has been studied in altricial birds for over half a century. However, the determinants and constraints of the onset of endothermy are not yet fully understood. We experimentally investigated whether brood size influences the ontogeny of endothermic heat production in 4–8 day-old nestling blue tits Cyanistes caeruleus in southern Sweden. The thermogenic response to a cooling challenge (15°C) increased with age overall. We found that 8-day-old nestlings from reduced broods had a slightly increased capacity for endothermic heat production compared to enlarged broods. This difference cannot be explained by body mass because this trait did not differ between brood size categories. Although a metabolic response was present in most nestlings by day 6, it was brief, not lasting more than a few minutes, and not sufficient to maintain a stable body temperature in any age group. Our study shows that incipient endothermy is present at an early age in nestling blue tits and may advance faster in reduced broods, but that individual nestlings lack sufficient insulation and thermogenic performance to maintain homeothermy independently during the first week of life.

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来源期刊
Journal of Avian Biology
Journal of Avian Biology 生物-鸟类学
CiteScore
3.70
自引率
0.00%
发文量
56
审稿时长
3 months
期刊介绍: Journal of Avian Biology publishes empirical and theoretical research in all areas of ornithology, with an emphasis on behavioural ecology, evolution and conservation.
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