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Solubility of nitrogen in marine mammal blubber depends on its lipid composition

机译:氮在海洋哺乳动物油脂中的溶解度取决于其脂质成分

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摘要

Understanding the solubility of nitrogen gas in tissues is a crucial aspect of diving physiology, especially for air-breathing tetrapods. Adipose tissue is of particular interest because of the high solubility of nitrogen in lipids. Surprisingly, nothing is known about nitrogen solubility in the blubber of any marine mammal. We tested the hypothesis that N2 solubility is dependent on the lipid composition of blubber; most blubber is composed of triacylglycerols, but some toothed whales deposit large amounts of waxes in blubber instead. The solubility of N2 in the blubber of 13 toothed whale species ranged from 0.062 to 0.107 ml N2 ml?1 oil. Blubber with high wax ester content had higher N2 solubility, observed in the beaked (Ziphiidae) and small sperm (Kogiidae) whales, animals that routinely make long, deep dives. We also measured nitrogen solubility in the specialized cranial acoustic fat bodies associated with echolocation in a Risso's dolphin; values (0.087 ml N2 ml?1 oil) were 16% higher here than in its blubber (0.074 ml N2 ml?1 oil). As the acoustic fats of all Odontocetes contain waxes, even if the blubber does not, these tissues may experience greater interaction with N2. These data have implications for our understanding and future modeling of diving physiology in Odontocetes, as our empirically derived values for nitrogen solubility in toothed whale adipose were up to 40% higher than the numbers traditionally assumed in marine mammal diving models.
机译:了解氮气在组织中的溶解度是潜水生理学的重要方面,尤其是对于呼吸四足动物而言。由于氮在脂质中的高度溶解性,脂肪组织特别受关注。令人惊讶的是,关于任何海洋哺乳动物的脂在氮中的溶解度一无所知。我们检验了N2溶解度取决于润滑脂的脂质组成的假说。大多数油脂由三酰基甘油组成,但一些齿鲸却在油脂中沉积了大量蜡。 N2在13种带齿鲸种的油脂中的溶解度范围为0.062至0.107 ml N2 ml?1油。在喙鲸(Ziphiidae)和小型抹香鲸(Kogiidae)(通常进行长时间深潜的动物)中观察到,蜡酯含量较高的橡胶具有较高的N2溶解度。我们还测量了与Risso海豚的回声定位相关的特殊颅骨声学脂肪体中的氮溶解度。值(0.087 ml N2 ml?1油)比其润滑脂(0.074 ml N2 ml?1油)高16%。由于所有牙形动物的脂肪中都含有蜡,即使油脂没有,这些组织也可能与N2发生更大的相互作用。这些数据对我们在齿齿鲸中的潜水生理学的理解和未来建模具有影响,因为我们根据经验得出的齿鲸脂肪中氮溶解度的值比海洋哺乳动物潜水模型中传统假设的数值高40%。

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