Effect of Photoperiod and Illuminance on Daily Activity Patterns, Physiology, and NPY Peptide Expression in Migratory Redheaded Buntings (Emberiza bruniceps).

IF 3.2 2区 医学 Q2 ENDOCRINOLOGY & METABOLISM Neuroendocrinology Pub Date : 2024-07-25 DOI:10.1159/000540394
Preeti Gupta, Sayantan Sur, Asma Naseem, Shalie Malik
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Abstract

Introduction: Light is the primary source of energy and regulates seasonal changes in physiology and behavior. The role of photoperiod has been much investigated in several bird species, but the role of illumination in seasonal adaptations of passerine finches is less understood. We, therefore, investigated the effects of photoperiod and illuminance on migratory physiology in a Palearctic-Indian migratory finch, redheaded bunting (Emberiza bruncieps).

Methods: Photosensitive buntings maintained under short days (8L:16D) were divided into three groups receiving 5, 25, and 100 lux of white daytime illuminance, respectively. Thereafter, using photoperiodic manipulation three life history states, i.e., nonmigratory (NM), premigratory (PM), and migratory (MIG) states were induced in the buntings. The birds in the MIG state were consecutively perfused after seven nights of Zugunruhe (nighttime migratory restlessness) for neuropeptide Y (NPY)-immunohistochemistry, which is involved in a wide range of functions including energy homeostasis, vision, and fat deposition in birds.

Results: We found differential effects of illuminance on locomotor activity and physiology. Photostimulated birds showed intense nighttime activity in the MIG state. We observed premigratory hyperphagia in the birds, with increased food intake in the 100 lux group, which was reflected in the body mass gain in the MIG state. NPY expression on the periphery of the nucleus rotundus suggests its potential role in visual acuity, where the NPY-cell count significantly decreased under 25 lux illumination.

Conclusion: We demonstrate that migrating birds may also experience physiological effects from changes in daytime illumination. We observed illuminance-dependent variations in the quantity of food consumed by the birds. It indicates that the illuminance may also impact the encephalic centers that control food intake.

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光周期和光照度对迁徙红头鹀(Emberiza bruniceps)日常活动模式、生理机能和 NPY 肽表达的影响。
引言 光照是主要的能量来源,并调节生理和行为的季节性变化。光周期在多种鸟类中的作用已得到大量研究,但对光照在雀科鸟类季节性适应中的作用了解较少。因此,我们研究了光周期和光照度对古北-印度迁徙雀类红头鹀(Emberiza bruncieps)迁徙生理的影响。方法 将在短日照(8L:16D)条件下饲养的光敏鹀分为三组,分别接受 5、25 和 100 勒克斯的日间白色光照。然后,通过光周期控制诱导鹀进入三种生活史状态,即非迁徙(NM)、迁徙前(PM)和迁徙(MIG)状态。NPY参与鸟类能量平衡、视觉和脂肪沉积等多种功能。结果 我们发现光照对鸟类的运动活动和生理机能有不同的影响。受光照刺激的鸟类在 MIG 状态下表现出强烈的夜间活动。我们观察到鸟类在迁徙前食欲亢进,100 勒克斯组的食物摄入量增加,这反映在 MIG 状态下的体重增加上。在 25 勒克斯照明下,NPY 细胞数量显著减少。结论 我们证明迁徙鸟类也可能受到白天光照变化的生理影响。我们观察到鸟类摄入食物数量的变化与光照度有关。这表明光照度也可能影响控制食物摄入的大脑中枢。
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来源期刊
Neuroendocrinology
Neuroendocrinology 医学-内分泌学与代谢
CiteScore
8.30
自引率
2.40%
发文量
50
审稿时长
6-12 weeks
期刊介绍: ''Neuroendocrinology'' publishes papers reporting original research in basic and clinical neuroendocrinology. The journal explores the complex interactions between neuronal networks and endocrine glands (in some instances also immunecells) in both central and peripheral nervous systems. Original contributions cover all aspects of the field, from molecular and cellular neuroendocrinology, physiology, pharmacology, and the neuroanatomy of neuroendocrine systems to neuroendocrine correlates of behaviour, clinical neuroendocrinology and neuroendocrine cancers. Readers also benefit from reviews by noted experts, which highlight especially active areas of current research, and special focus editions of topical interest.
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