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将瞬时能量预算模型和行为模式分析相结合,以估计最优觅食策略:以漂泊信天翁为例。

Coupling instantaneous energy-budget models and behavioural mode analysis to estimate optimal foraging strategy: an example with wandering albatrosses.

机构信息

UFZ-Helmholtz Centre for Environmental Research, Permoserstrasse 15, 04318 Leipzig, Germany ; Centre d'Etudes Biologiques de Chizé, UMR 7372 CNRS - Université de la Rochelle, 79369 Villiers en Bois, France ; Instituto Español de Oceanografía, CO Xixón, Camín de l'Arbeyal s/n, Xixón, 33212 Spain.

UFZ-Helmholtz Centre for Environmental Research, Permoserstrasse 15, 04318 Leipzig, Germany.

出版信息

Mov Ecol. 2014 Apr 23;2(1):8. doi: 10.1186/2051-3933-2-8. eCollection 2014.

Abstract

BACKGROUND

How foragers move across the landscape to search for resources and obtain energy is a central issue in ecology. Direct energetic quantification of animal movements allows for testing optimal foraging theory predictions which assumes that animals forage so as to maximise net energy gain. Thanks to biologging advances, we coupled instantaneous energy-budget models and behavioural mode analysis to test optimal foraging theory predictions on wandering albatross Diomedea exulans during the brooding period. Specifically, the instantaneous energy-budget model considered the energetic balance (i.e., the difference between empirical energy gain data and modelled energy expenditure via heart rate values) along the trajectory of a given individual. Four stereotypic instantaneous behavioural modes were identified based on trajectory properties (e.g., speed and turning angle) by applying a new algorithm called Expectation Maximization Binary Clustering. Previous studies on this species have shown that foraging-in-flight is the optimal foraging strategy during the incubation period when albatrosses undertake long-distance movements but no specific foraging strategy has been determined for shorter foraging movements (e.g., brooding period).

RESULTS

The output of our energy-budget model (measured as net energy gain) highlighted the potential optimality of alternative search strategies (e.g., sit-and-wait) during brooding, when birds may be subjected to specific energetic trade-offs and have to adapt their foraging strategies accordingly. However, not all birds showed this pattern, revealing the importance of considering individual variability in foraging strategies, as well as any switching among strategies, before drawing population-level generalizations. Finally, our study unveils the importance of considering fine scale activities to make realistic estimates of trip energy expenditure for flying birds at sea.

CONCLUSIONS

The up-scaling of accurately measured fine-scale energy patterns is essential to quantify energy balances, and their fluctuations by season of different activities among individuals or populations. In particular, we offer new insights for the energetic quantification of the effect of changing oceanic winds on the biology of pelagic predators in the southern oceans.

摘要

背景

觅食者如何在景观中移动以寻找资源并获取能量,这是生态学中的一个核心问题。通过直接对动物的运动进行能量量化,可以检验最优觅食理论的预测,该理论假设动物会觅食以最大限度地提高净能量收益。得益于生物遥测技术的进步,我们将瞬时能量预算模型和行为模式分析相结合,来检验游荡信天翁(Diomedea exulans)在育雏期的最优觅食理论预测。具体来说,瞬时能量预算模型考虑了个体轨迹上的能量平衡(即经验能量增益数据与通过心率值建模的能量消耗之间的差异)。基于轨迹特性(例如速度和转弯角度),我们应用了一种名为期望最大化二进制聚类的新算法,确定了四个典型的瞬时行为模式。之前对该物种的研究表明,在孵卵期,当信天翁进行长距离移动时,飞行觅食是最优的觅食策略,但对于较短的觅食移动(例如育雏期),尚未确定具体的觅食策略。

结果

我们的能量预算模型的输出(以净能量增益衡量)突出了替代搜索策略(例如,坐待)在育雏期间的潜在最优性,因为鸟类可能会受到特定的能量权衡的影响,需要相应地调整其觅食策略。然而,并非所有鸟类都表现出这种模式,这表明在得出种群水平的概括之前,考虑觅食策略中的个体变异性以及任何策略之间的转换非常重要。最后,我们的研究揭示了考虑精细活动对于对海上飞行鸟类的旅行能量消耗进行现实估计的重要性。

结论

精确测量精细尺度能量模式的放大对于量化个体或种群不同活动季节的能量平衡及其波动至关重要。特别是,我们为量化海洋风变化对南大洋浮游捕食者生物学的影响提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afc3/4267543/28f155f73a10/40462_2013_19_Fig1_HTML.jpg

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