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首页> 外文期刊>Brain structure & function >Concurrent changes in photoperiod-induced seasonal phenotypes and hypothalamic CART peptide-containing systems in night-migratory redheaded buntings
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Concurrent changes in photoperiod-induced seasonal phenotypes and hypothalamic CART peptide-containing systems in night-migratory redheaded buntings

机译:在夜间迁徙的红发的Buntings中,光周期诱导的季节性表型和露丘蛋白肽肽系统的同时变化

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This study tested the hypothesis whether hypothalamic cocaine-and amphetamine-regulated transcript (CART)-containing systems were involved in photoperiod-induced responses associated with spring migration (hyperphagia and weight gain) and reproduction (gonadal maturation) in migratory songbirds. We specifically chose CART to examine neural mechanism(s) underlying photoperiod-induced responses, since it is a potent anorectic neuropeptide and involved in the regulation of changes in the body mass and reproduction in mammals. We first studied the distribution of CART-immunoreactivity in the hypothalamus of migratory redheaded buntings (Emberiza bruniceps). CART-immunoreactive neurons were found extensively distributed in the preoptic, lateral hypothalamic (LHN), anterior hypothalamic (AN), suprachiasmatic (SCN), paraventricular (PVN), dorsomedialis hypothalami (DMN), inferior hypothalamic (IH), and infundibular (IN) nuclei. Then, we correlated hypothalamic CART-immunoreactivity in buntings with photostimulated seasonal states, particularly winter non-migratory/non-breeding (NMB) state under short days, and spring premigratory/pre-breeding (PMB) and migratory/breeding (MB) states under long days. There were significantly increased CART-immunoreactive cells, and percent fluorescent area of CART-immunoreactivity was significantly increased in all mapped hypothalamic areas, except the SCN, PVN, AN, and DMN in photostimulated PMB and MB states, as compared to the non-stimulated NMB state. In particular, CART was richly expressed in the medial preoptic nucleus, LHN, IH and IN during MB state in which buntings showed reduced food intake and increased night-time activity. These results suggest that changes in the activity of the CART-containing system in different brain regions were associated with heightened energy needs of the photoperiod-induced seasonal responses during spring migration and reproduction in migratory songbirds.
机译:该研究检测了假设丘脑可卡因 - 和安非他明调节的转录物(推车) - 涉及与迁移鸣禽中的春季迁移(Hyperphagia和体重增加)和繁殖(Gonadal成熟)相关的光周期诱导的响应。我们专门选择推车来检查神经机制潜在的光周期诱导的反应,因为它是一种有效的肛肠神经肽,并参与体重和哺乳动物繁殖的调节。我们首先研究了迁移红发障碍(Emberiza Bruniceps)的下丘脑中的推车 - 免疫反应性分布。发现购物车免疫反应性神经元在偏压下,侧丘脑(LHN),前丘脑(AN),Suprachiasmatic(SCN),椎间盘(PVN),Dorsomedialis下丘脑(DMN),下丘脑(IH)和令人漏洞中( )核。然后,我们在短时间内与光刺激的季节性状态相关,特别是冬季非迁移/非育种(NMB)状态的丘脑中的下丘脑推车免疫反应性,以及弹簧预热/预育种(PMB)和迁移/育种(MB)国家在漫长的日子里。与非刺激相比,存在显着增加的推车 - 免疫反应细胞,在所有映射的下丘脑区域中,在所有映射的下丘脑区域中,在所有映射的下丘脑区域中荧光面积百分比显着增加,除了非刺激NMB状态。特别地,推车在内侧偏压核,LHN,IH和MB状态下含重,其中Buntings显示出食物摄入量和夜间活动增加。这些结果表明,在迁移鸣禽期间,不同脑区中含Cart系统的活性的变化与光周期诱导的季节性反应的能量需求有关。

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