首页> 外文期刊>General and comparative endocrinology >Behavioral and physiological effects of photoperiod-induced migratory state and leptin on a migratory bird, Zonotrichia albicollis: I. Anorectic effects of leptin administration.
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Behavioral and physiological effects of photoperiod-induced migratory state and leptin on a migratory bird, Zonotrichia albicollis: I. Anorectic effects of leptin administration.

机译:光周期诱导的迁徙状态和瘦素对候鸟Zonotrichia albicollis的行为和生理影响:I.施用瘦素的厌食作用。

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The hormone leptin is involved in the regulation of energy balance in mammals, mainly by reducing food intake and body adiposity and increasing energy expenditure. During energetically demanding periods, leptin's action is often altered to facilitate fat deposition and maintain high rates of food intake. Despite the present controversy over the existence of an avian leptin, there is evidence that a leptin receptor exists in birds and its activation influences energy intake and metabolism. However, it is unknown whether the effects of the activation of leptin receptor on energy balance are modulated during migration. We manipulated photoperiod to induce migratory behavior in captive white-throated sparrows (Zonotrichia albicollis) and injected migratory and wintering sparrows with either murine leptin or PBS for 7 days. We measured food intake, changes in body composition and foraging behavior to test if leptin's effects are altered during migratory state. Leptin decreased foraging behavior, food intake and fat mass in wintering sparrows, but had no effect on foraging behavior or food intake in migratory sparrows. Migratory sparrows injected with leptin maintained fat better than sparrows injected with PBS. Thus, sparrows' responses to leptin changed with migratory state, possibly to aid in the increase and maintenance of rates of food intake and fat deposition. We also found that long-form leptin receptor and SOCS3 were expressed in tissues of sparrows, including the hypothalamus, but their expression did not change with migratory state. Further study of the leptin receptor system and other regulators of energy balance in migratory birds will increase our understanding of the physiological mechanisms that are responsible for their ability to complete energetically demanding journeys.
机译:瘦素激素主要通过减少食物摄入和身体肥胖以及增加能量消耗来参与哺乳动物能量平衡的调节。在精力旺盛的时期,经常改变瘦素的作用以促进脂肪沉积并保持高食物摄取率。尽管目前对存在禽瘦素存在争议,但是有证据表明瘦素受体存在于鸟类中,其激活影响能量的摄取和代谢。然而,尚不清楚在迁移过程中是否调节了瘦素受体活化对能量平衡的影响。我们操纵光周期诱导圈养的白喉麻雀(Zonotrichia albicollis)的迁徙行为,并向迁徙和越冬的麻雀注射鼠瘦素或PBS 7天。我们测量了食物摄入量,身体成分的变化和觅食行为,以测试瘦素的作用在迁徙过程中是否发生了改变。瘦素降低了越冬麻雀的觅食行为,食物摄入和脂肪量,但对迁徙麻雀的觅食行为或食物摄入没有影响。注射瘦蛋白的迁徙麻雀比注射PBS的麻雀脂肪更好。因此,麻雀对瘦素的反应随迁徙状态而改变,可能有助于增加和维持食物摄入和脂肪沉积的速率。我们还发现,长形的瘦素受体和SOCS3在麻雀的组织中表达,包括下丘脑,但它们的表达不会随着迁徙状态而改变。瘦鸟受体系统和候鸟能量平衡的其他调节器的进一步研究将增进我们对生理机制的理解,这些生理机制负责其完成精力旺盛的旅程的能力。

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