Body size, nutritional state and endocrine state are associated with calving probability in a long-lived marine species.

IF 3.5 1区 环境科学与生态学 Q1 ECOLOGY
Enrico Pirotta, Leslie New, Alejandro Fernandez Ajó, K C Bierlich, Clara N Bird, C Loren Buck, Lisa Hildebrand, Kathleen E Hunt, John Calambokidis, Leigh G Torres
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引用次数: 0

Abstract

Life-history performance of individuals in wildlife populations emerges from the interplay between the multiple processes that constitute an animal's health. Monitoring and modelling indicators of health can thus provide a way to assess and forecast the status of a population before its abundance changes. In this study, we develop a Bayesian state-space model that links multiple health indicators (representing energy, endocrine and morphometric status) and resulting female calving probability, using an 8-year dataset of repeated sightings, morphological measurements, faecal sampling and offspring observations of gray whales (Eschrichtius robustus) belonging to the Pacific Coast Feeding Group. Model results indicate that calving probability emerges from the combined effect of a female's structural body size and available energy reserves, while also showing a weak negative correlation with glucocorticoid levels prior to pregnancy. Assessment of population age structure suggests that the number of individuals in younger age classes is smaller than expected for a growing or a stable population, which, together with decreasing body size, could indicate an impending decline in this group. Model development was made possible by the collection of high-resolution, longitudinal data on individuals, although several mechanistic assumptions were imposed by the relatively short time series (8 years), influencing the results. Our modelling approach could inform similar efforts in other long-lived species where population dynamics cannot be easily monitored. Ultimately, models of wildlife health and vital rates can support assessments of the population-level consequences of multiple stressors, a key goal for management and conservation across systems and jurisdictions.

在一个长寿的海洋物种中,体型、营养状况和内分泌状况与产犊概率有关。
野生动物种群中个体的生活史表现来自构成动物健康的多个过程之间的相互作用。因此,监测和模拟健康指标可以提供一种方法,在人口丰度发生变化之前评估和预测人口的状况。在这项研究中,我们开发了一个贝叶斯状态空间模型,该模型将多个健康指标(代表能量、内分泌和形态测量状态)与由此产生的雌性产犊概率联系起来,使用8年的数据集,包括重复观察、形态测量、粪便采样和属于太平洋海岸喂养群的灰鲸(Eschrichtius robustus)的后代观察。模型结果表明,产犊概率受雌性体型结构和可用能量储备的综合影响,同时也与怀孕前的糖皮质激素水平呈弱负相关。对人口年龄结构的评估表明,在人口增长或稳定的情况下,较年轻年龄组的个体数量比预期的要少,再加上体型的缩小,可能表明这一群体的数量即将下降。虽然由于时间序列相对较短(8年),一些机制假设影响了结果,但由于收集了有关个体的高分辨率纵向数据,模型开发成为可能。我们的建模方法可以为其他长寿物种的类似努力提供信息,这些物种的种群动态不容易监测。最终,野生动物健康和生命率模型可以支持评估多种压力源对种群水平的影响,这是跨系统和司法管辖区管理和保护的关键目标。
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来源期刊
Journal of Animal Ecology
Journal of Animal Ecology 环境科学-动物学
CiteScore
9.10
自引率
4.20%
发文量
188
审稿时长
3 months
期刊介绍: Journal of Animal Ecology publishes the best original research on all aspects of animal ecology, ranging from the molecular to the ecosystem level. These may be field, laboratory and theoretical studies utilising terrestrial, freshwater or marine systems.
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