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飞行羽换羽驱动野鹅的最小日常心率。

Flight feather moult drives minimum daily heart rate in wild geese.

机构信息

School of Biological Sciences, Royal Holloway, University of London, Egham TW20 0EX, UK

Biological Sciences, Monash University, Clayton, Melbourne, Australia.

出版信息

Biol Lett. 2018 Nov 28;14(11):20180650. doi: 10.1098/rsbl.2018.0650.

Abstract

Waterfowl undergo an annual simultaneous flight-feather moult that renders them flightless for the duration of the regrowth of the flight feathers. In the wild, this period of flightlessness could restrict the capacity of moulting birds to forage and escape predation. Selection might therefore favour a short moult, but feather growth is constrained and presumably energetically demanding. We therefore tested the hypothesis that for birds that undergo a simultaneous flight-feather moult, this would be the period in the annual cycle with the highest minimum daily heart rates, reflecting these increased energetic demands. Implantable heart rate data loggers were used to record year-round heart rate in six wild barnacle geese (), a species that undergoes a simultaneous flight-feather moult. The mean minimum daily heart rate was calculated for each individual bird over an 11-month period, and the annual cycle was divided into seasons based on the life-history of the birds. Mean minimum daily heart rate varied significantly between seasons and was significantly elevated during wing moult, to 200 ± 32 beats min, compared to all other seasons of the annual cycle, including both the spring and autumn migrations. The increase in minimum daily heart rate during moult is likely due to feather synthesis, thermoregulation and the reallocation of minerals and protein.

摘要

水禽每年都会经历一次同时进行的飞行羽毛换羽,在此期间它们会失去飞行能力,直到新的飞行羽毛长出来。在野外,这种无法飞行的时期可能会限制换羽鸟类觅食和逃避捕食的能力。因此,选择可能有利于短时间的换羽,但羽毛的生长受到限制,并且可能需要大量的能量。我们因此测试了这样一个假设,即对于那些经历同时进行的飞行羽毛换羽的鸟类来说,这将是年度周期中最低日心率最高的时期,反映了这些增加的能量需求。我们使用可植入的心率数据记录器来记录六只野生斑头雁()全年的心率,这种鸟类会经历同时进行的飞行羽毛换羽。我们为每个个体鸟类计算了 11 个月的平均最低日心率,并根据鸟类的生活史将年度周期分为季节。平均最低日心率在不同季节之间存在显著差异,在换羽期间显著升高,达到 200±32 次/分钟,与年度周期的所有其他季节相比,包括春季和秋季迁徙。换羽期间最低日心率的增加可能是由于羽毛合成、体温调节以及矿物质和蛋白质的重新分配。

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