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屏息捕猎的能量学:模拟衰老对威德尔海豹觅食成功率的影响。

Energetics of breath-hold hunting: modeling the effects of aging on foraging success in the Weddell seal.

机构信息

Texas A&M University, College Station, TX 77843, USA.

出版信息

J Theor Biol. 2010 Jun 7;264(3):673-82. doi: 10.1016/j.jtbi.2010.03.045. Epub 2010 Apr 2.

Abstract

A simulation model was developed to predict age-related changes in foraging energetics of individual Weddell seals, Leptonychotes weddellii. Aging in diving animals is interesting because their characteristic cyclic sequence of apneustic hunting and eupnea should elevate oxidative stress, possibly accelerating aging. Such a hypothesis can be evaluated by modeling energetics of constrained, time-partitioned activities with well-defined costs. Three possible consequences of physiological aging in divers were specified and appraised. The model examined the potential impacts of age-related decline in muscle contractile ability, increased buoyancy, and reduced aerobic dive limit, alone and in combination, on a daily energy budget. A uniform age effect evident in model outputs is reduced foraging efficiency. The components of this net effect are exacerbated for sub-optimal behavioral-response settings or environmental conditions. The model predicts that with advancing age, efficiency declines increase for aging scenarios in the following order: simulated 'young' adults; 'old' seals with increased buoyancy; 'old' seals with reduced aerobic dive limit; 'old' seals having reduced muscle contractile efficiency; and, 'old' seals with all three conditions. The model indicates narrowed behavioral options to maintain positive energy balance in older animals, suggesting that behavioral plasticity may not allow older animals to compensate for age-related performance constraints.

摘要

我们开发了一个模拟模型,以预测威德尔海豹个体觅食能量的年龄相关变化。潜水动物的衰老很有趣,因为它们周期性的呼吸暂停狩猎和通气的特征序列应该会增加氧化应激,可能会加速衰老。通过对具有明确定义成本的受限、时间划分活动的能量进行建模,可以评估这种假说。我们指定并评估了潜水动物生理衰老的三种可能后果。该模型检查了肌肉收缩能力下降、浮力增加和有氧潜水极限降低等单一和组合因素对每日能量预算的潜在影响。模型输出中明显存在一致的年龄效应,即觅食效率降低。这种净效应的组成部分在次优行为反应设置或环境条件下会加剧。该模型预测,随着年龄的增长,在以下衰老情况下,效率下降会增加:模拟的“年轻”成年人;浮力增加的“老年”海豹;有氧潜水极限降低的“老年”海豹;肌肉收缩效率降低的“老年”海豹;以及,所有三种情况都有的“老年”海豹。该模型表明,在老年动物中维持正能量平衡的行为选择范围变窄,这表明行为可塑性可能不允许老年动物补偿与年龄相关的性能限制。

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