Pinnipeds with proportionally wider aortic bulbs make longer dives

IF 2 3区 生物学 Q2 MARINE & FRESHWATER BIOLOGY
Rhea L. Storlund, David A. S. Rosen, Andrew W. Trites
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Abstract

The enlarged size of the aortic bulb is thought to enhance the ability of marine mammals to remain underwater for extended periods. However, a convincing link between aortic bulb size and diving capacity has not been established. Using new and existing data, we examined the relationships between body size, maximum and routine dive duration, and aortic bulb size of pinnipeds. Comparisons among seven species of pinnipeds showed that the diameter of the aortic bulb increases allometrically with body mass (aortic bulb diameter = 0.58 × body mass0.41). We also found a linear relationship between routine dive duration and relative aortic bulb diameter (routine dive duration = 0.20 × relative aortic bulb diameter − 3.30), but no apparent relationship with maximum dive duration. Our results indicate that relative aortic bulb diameter influences diving capacity, providing further evidence that the aortic bulb is an adaptation to diving. Specifically, the relative diameter of the aortic bulb partially determines how long pinnipeds can routinely remain underwater. This has implications for the ability of different species of marine mammals to adapt to projected environmental changes and effectively forage or evade threats in altered habitats.

Abstract Image

主动脉球按比例加宽的灵长类动物潜水时间更长
主动脉球的增大被认为能增强海洋哺乳动物在水下长时间停留的能力。然而,主动脉球的大小与潜水能力之间并没有令人信服的联系。利用新的和现有的数据,我们研究了松狮类动物的体型、最长和常规潜水持续时间以及主动脉球大小之间的关系。通过对七种有鳍动物的比较发现,主动脉球直径与体重呈等比级数增长(主动脉球直径 = 0.58 × 体重 0.41)。我们还发现,常规潜水持续时间与相对主动脉球直径之间存在线性关系(常规潜水持续时间 = 0.20 × 相对主动脉球直径 - 3.30),但与最长潜水持续时间没有明显关系。我们的研究结果表明,主动脉球相对直径影响潜水能力,进一步证明主动脉球是潜水的适应器官。具体地说,主动脉球的相对直径部分地决定了松狮在水下常规停留时间的长短。这对不同种类的海洋哺乳动物适应预计的环境变化以及在改变的栖息地中有效觅食或躲避威胁的能力具有影响。
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来源期刊
Marine Mammal Science
Marine Mammal Science 生物-动物学
CiteScore
4.80
自引率
8.70%
发文量
89
审稿时长
6-12 weeks
期刊介绍: Published for the Society for Marine Mammalogy, Marine Mammal Science is a source of significant new findings on marine mammals resulting from original research on their form and function, evolution, systematics, physiology, biochemistry, behavior, population biology, life history, genetics, ecology and conservation. The journal features both original and review articles, notes, opinions and letters. It serves as a vital resource for anyone studying marine mammals.
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