UMR 6249 Chrono-environnement, CNRS, Université de Franche-Comté, 25000 Besançon, France.
Canada Research Chair in Polar and Boreal Ecology and Centre d'Études Nordiques, Université de Moncton, Moncton, New Brunswick, Canada.
Proc Biol Sci. 2024 Feb 28;291(2017):20232264. doi: 10.1098/rspb.2023.2264. Epub 2024 Feb 21.
Complex incubation strategies have evolved to solve the trade-off between parent survival and care for their eggs with often brief departures (recesses) that maximize egg survival, and infrequent extended recesses maximizing adult condition. Here we examined incubation behaviour of sanderlings (), a species that exhibits both biparental and uniparental incubation behaviour. During 11 breeding seasons in Greenland, we have quantified incubation variability with thermologgers placed in nests. We estimated the impact of environmental conditions and individual characteristics on the occurrence and the duration of recesses. We found that extended recesses are a unique feature of uniparentals, and their frequency and duration increased in colder temperatures. The relationship was mediated by body condition, with individuals in poor condition performing longer extended recesses in colder temperatures. This suggests that extended recesses may represent a shift towards self-maintenance at the expense of the egg care, allowing birds to continue incubating under unfavourable conditions. Our study illustrates how extended recesses may be a key breeding strategy to overcome high energetic costs associated with incubation. Quantifying such behavioural flexibility paves the way for tracking future behavioural responses of individuals in the face of changing environments.
沙锥鸟()是一种同时表现出双亲孵化和单亲孵化行为的物种,其进化出了复杂的孵化策略来解决亲代生存和照顾卵之间的权衡问题,通常是短暂的离开(休息)以最大限度地提高卵的存活率,以及不频繁的长时间休息以最大限度地提高成鸟的状态。在这里,我们研究了沙锥鸟的孵化行为。在格陵兰岛的 11 个繁殖季节中,我们使用置于巢中的热记录器来量化孵化的可变性。我们估计了环境条件和个体特征对休息发生和持续时间的影响。我们发现,长时间休息是单亲孵化的一个独特特征,其频率和持续时间随着温度的降低而增加。这种关系受到身体状况的调节,身体状况较差的个体在较冷的温度下会进行更长时间的长时间休息。这表明,长时间休息可能代表着一种以自我维持为代价来照顾卵的转变,使鸟类能够在不利的条件下继续孵化。我们的研究说明了长时间休息如何成为克服与孵化相关的高能量成本的关键繁殖策略。量化这种行为灵活性为跟踪个体在不断变化的环境面前的未来行为反应铺平了道路。