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Beyond Thermoregulation: Metabolic Function of Cetacean Blubber in Migrating Bowhead and Beluga Whales

机译:超越体温调节:鲸类鲸脂的代谢功能在迁徙弓头鱼和白鲸时的作用

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摘要

The processes of lipid deposition and utilization, via the gene leptin (Lep), are poorly understood in taxa with varying degrees of adipose storage. This study examines how these systems may have adapted in marine aquatic environments inhabited by cetaceans. Bowhead (Balaena mysticetus) and beluga whales (Delphinapterus leucas) are ideal study animals- they possess large subcutaneous adipose stores (blubber) and undergo bi-annual migrations concurrent with variations in food availability. To answer long-standing questions regarding how (or if) energy and lipid utilization adapted to aquatic stressors, we quantified variations in gene transcripts critical to lipid metabolism related to season, age and blubber depth. We predicted Leptin tertiary structure conservation and assessed inter-specific variations in Lep transcript numbers between bowheads and other mammals. Our study is the first to identify seasonal and age-related variations in Lep and lipolysis in these cetaceans. While Lep transcripts and protein oscillate with season in adult bowheads reminiscent of hibernating mammals, transcript levels reach up to 10-times higher in bowheads than any other mammal. Data from immature bowheads are consistent with the hypothesis that short baleen inhibits efficient feeding. Lipolysis transcripts also indicate young Fall bowheads and those sampled during Spring months limit energy utilization. These novel data from rarely examined species expand existing knowledge and offer unique insight into how the regulation of Lep and lipolysis has adapted to permit seasonal deposition and maintain vital blubber stores.
机译:在不同程度的脂肪储存中,通过瘦素(Lep)基因进行脂质沉积和利用的过程知之甚少。这项研究研究了这些系统如何适应鲸类动物居住的海洋水生环境。弓头鱼(Balaena mysticetus)和白鲸(Delphinapterus leucas)是理想的研究动物-它们拥有较大的皮下脂肪库(脂肪),并且每两年迁徙一次,同时食物供应量也有所变化。为了回答关于能量和脂质利用如何(或是否)适应水生应激源的长期存在的问题,我们量化了与季节,年龄和脂肪深度有关的对脂质代谢至关重要的基因转录本的变化。我们预测了瘦蛋白的三级结构保守性,并评估了弓头和其他哺乳动物之间的Lep转录本数量的种间差异。我们的研究是首次发现这些鲸类的Lep和脂解的季节性和与年龄相关的变化。在成年弓head中,Lep转录物和蛋白质会随季节振荡,让人联想到冬眠的哺乳动物,而在弓head中,转录物水平比其他哺乳动物高出10倍。来自未成熟弓头的数据与假巴里恩会抑制有效进食的假设相一致。脂肪分解记录也表明年轻的秋季弓箭头,而在春季月份采样的弓箭头限制了能量的利用。来自很少检查的物种的这些新数据扩展了现有知识,并为Lep和脂解的调节如何适应季节性沉积和维持重要的油脂储存提供了独特的见解。

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