年龄核算:揭示哺乳动物体型对气候变化反应的微妙驱动因素。

IF 1.5 3区 生物学 Q2 ZOOLOGY Journal of Mammalogy Pub Date : 2024-03-07 eCollection Date: 2024-06-01 DOI:10.1093/jmammal/gyae005
Miranda K Theriot, Link E Olson, Hayley C Lanier
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引用次数: 0

摘要

在动物物种和种群中,平均体型随环境变化而发生的变化是有据可查的,它是气候变化反应的一个广泛而复杂的指标。在哺乳动物研究中,由于将成年体型视为固定不变,忽略了许多物种一生中都会发生的形态变化,因此难以确定和厘清这些趋势的潜在驱动因素(如体温调节、资源可用性等)。然而,观察到的种群水平的体型趋势可能反映了年龄结构的潜在变化(即种群中年龄较大、潜在体型较大个体的比例变化)。在这里,我们通过明确评估年龄对加拿大山猫(Lynx canadensis)和美国马滕(Martes americana)这两种食肉动物头骨大小(体型的代表)的时间变化的影响,来评估年龄结构的作用。利用一系列线性和非线性模型,我们测试了年龄(通过骨水泥层分析确定)与先前被认为是体型趋势重要驱动因素的其他因素(包括猞猁的种群密度和美洲貂的生长季节条件)一起作为头骨大小的预测因子。在这两个物种中,年龄都是预测头骨大小的重要因素,这表明幼年体型逐年快速增长,而成年后体型则逐渐减小。然而,年龄结构的时间变化本身并不能解释观察到的体型随时间的变化,这表明年龄结构与其他尚未确定的因素共同作用,推动了体型的变化。通过明确评估年龄的作用,我们既能完善体型趋势的时间模型,又能深入了解体型变化作为潜在人口结构变化(如特定年龄的存活率)的信号,从而更全面地了解哺乳动物如何应对气候变化。
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Accounting for age: uncovering the nuanced drivers of mammal body-size responses to climate change.

Shifts in mean body size coinciding with environmental change are well documented across animal species and populations, serving as a widespread and complex indicator of climate-change response. In mammal research, identifying and disentangling the potential drivers of these trends (e.g., thermoregulation, resource availability) is hindered by treating adult size as fixed, ignoring morphological changes that occur throughout life in many species. However, observed population-level size trends may reflect underlying shifts in age structure (i.e., change in the proportion of older, potentially larger individuals in the population). Here, we assessed the role of age structure by explicitly evaluating age as a contributor to temporal variation in skull size (a proxy for body size) in 2 carnivorans, Canadian Lynx (Lynx canadensis) and American Marten (Martes americana). Using a series of linear and nonlinear models, we tested age in years (determined by cementum-layer analysis) as a predictor of skull size alongside other factors previously proposed to be important drivers of body-size trends, including population density for lynx and growing season conditions for martens. In both species, age was a significant predictor of skull size indicating a rapid year-to-year increase in young adult size that diminished in later adulthood. However, temporal shifts in age structure alone did not explain the observed changes in size over time, indicating that age structure acts in concert with other as-yet unidentified factors to drive body-size change. By explicitly evaluating the role of age, we can both refine models of temporal body-size trends and gain insights into size change as a signal of underlying demographic shifts-such as age-specific survivorship-providing a more holistic understanding of how mammals are responding to climate change.

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来源期刊
Journal of Mammalogy
Journal of Mammalogy 生物-动物学
CiteScore
3.30
自引率
5.90%
发文量
106
审稿时长
4-8 weeks
期刊介绍: Papers are published on mammalian behavior, conservation, ecology, genetics, morphology, physiology, and taxonomy.
期刊最新文献
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