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日本鹌鹑在不同模拟光周期条件下摄食和能量调节的神经内分泌机制:下丘脑神经肽、AMPK、胰岛素和脂联素受体的参与。

Neuroendocrine mechanism of food intake and energy regulation in Japanese quail under differential simulated photoperiodic conditions: Involvement of hypothalamic neuropeptides, AMPK, insulin and adiponectin receptors.

机构信息

Department of Zoology, Banaras Hindu University, Varanasi 221005, India.

Department of Zoology, Banaras Hindu University, Varanasi 221005, India.

出版信息

J Photochem Photobiol B. 2018 Aug;185:10-23. doi: 10.1016/j.jphotobiol.2018.05.020. Epub 2018 May 26.

Abstract

Neuroendocrine coordination between the reproductive and energy regulatory hypothalamic circuitries not only tightly regulates food intake and energy expenditure but also maintains the body weight and reproduction. The effect of different simulated photoperiodic conditions on food intake and neuroendocrine mechanism of energy homeostasis in Japanese quail is not investigated till date. Hence, our present study is designed to elucidate the effect of different simulated photoperiodic conditions on food consumption and neuroendocrine mechanism(s) of energy regulation in this poultry species. The alterations in hypothalamic energy balancing neuropeptides (NPY/AgRP/CART), polypeptide hormone precursor (POMC), protein kinase (AMPK-p-AMPK) as well as receptors of insulin and adiponectin [Insulin Receptor (IR), Adiponectin Receptor 1 & 2] have been investigated in photosensitive (PS), scotorefractory (SR),photorefractory (PR) and scotosensitive (SS) quail. Immunofluorescence and western blotting were used to quantify the expression of these peptides and proteins. Results showed increased food consumption and body weight gain, along with increased expression of NPY, AgRP, IR, adiponectin receptors and p-AMPK, decreased CART and POMC in the hypothalamus of photosensitive and scotorefractory quail. While, opposite findings were observed in photorefractory and scotosensitive quail. Hence, this study may suggest the hypothalamic energy channelization towards reproductive axis in photosensitive and scotorefractory quail to support the full breeding conditions, while hypothalamic energy deprivation in photorefractory and scotosensitive quail leads to reproductive quiescence.

摘要

生殖和能量调节下丘脑回路之间的神经内分泌协调不仅紧密调节食物摄入和能量消耗,还维持体重和繁殖。目前为止,还没有研究不同模拟光周期条件对鹌鹑食物摄入和能量稳态神经内分泌机制的影响。因此,我们目前的研究旨在阐明不同模拟光周期条件对这种禽类能量调节的下丘脑神经内分泌平衡神经肽(NPY/AgRP/CART)、多肽激素前体(POMC)、蛋白激酶(AMPK-p-AMPK)以及胰岛素和脂联素受体(胰岛素受体(IR)、脂联素受体 1 和 2)的影响。在感光(PS)、暗光反应(SR)、光反应(PR)和暗光反应(SS)鹌鹑中研究了这些肽和蛋白的变化。免疫荧光和 Western blot 用于定量这些肽和蛋白的表达。结果表明,感光和暗光反应鹌鹑的食物消耗和体重增加增加,同时下丘脑 NPY、AgRP、IR、脂联素受体和 p-AMPK 的表达增加,CART 和 POMC 减少。而在光反应和暗光反应鹌鹑中则观察到相反的结果。因此,这项研究可能表明,感光和暗光反应鹌鹑的下丘脑能量向生殖轴转移以支持完全繁殖条件,而光反应和暗光反应鹌鹑的下丘脑能量剥夺导致生殖静止。

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