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首页> 外文期刊>Brain research >Daily, circadian and seasonal changes of rhodopsin-like encephalic photoreceptor and its involvement in mediating photoperiodic responses of Gambel's white-crowned Sparrow, & IT;Zonotrichia leucophrys gambelii & IT;
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Daily, circadian and seasonal changes of rhodopsin-like encephalic photoreceptor and its involvement in mediating photoperiodic responses of Gambel's white-crowned Sparrow, & IT;Zonotrichia leucophrys gambelii & IT;

机译:日常,昼夜昼夜野生植物感光体的季节性变化及其参与介导冈白冠麻雀的光/周期反应,⁢ Zonotrichia Leucophrys Gambelii&It;

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摘要

Extra-retinal, non-pineal, encephalic photoreceptors (EP) play important roles in mediating development of the reproductive system by the annual change in day length (photoperiodic gonadal response - PGR) in birds. However, the distribution of rhodopsin-like EPs and their functional daily, circadian and seasonal changes are still unclear in the avian brain. This study identifies two novel groups of rhodopsin-immunoreactive cells in the nucleus paraventricularis magnocellularis (PVN) of the hypothalamus and in the medial basal hypothalamus (MBH) in a seasonally breeding species, Gambel's white-crowned sparrow (Zonotrichia leucophrys gambelii). In the PVN, rhodopsin-ir cell number showed both daily and circadian changes with more labeled cells apparent in the night phase in photosensitive birds, while only circadian changes were observed involving fewer labeled cells in the night phase in photorefractory birds. Single long day photo-stimulation significantly decreased the rhodopsin-ir cell number only in photosensitive birds, coincident with a rise in plasma levels of luteinizing hormone (LH). In the MBH, rhodopsin-ir cell number did not show daily, circadian or single long day induced changes in either photoperiodic states. But, overall these rhodopsin expressing neurons significantly increased from photosensitive to photorefractory states. In the median eminence (ME), more intense rhodopsin-ir was detected in photorefractory birds compared to photosensitive birds. For expression of GnRH and vasoactive intestinal polypeptide (VIP), seasonal differences were found with opposite relationships, consistent with previous studies. Our results suggest different roles of the two groups of rhodopsin-like EPs in the regulation of PGR in white-crowned sparrows. (C) 2018 Elsevier B.V. All rights reserved.
机译:超视网膜,非松果,脑膜感光感剂(EP)在鸟类中的年度变化(光周期性助剂 - PGR)中的年变化中介导生殖系统的发展中的重要作用。然而,禽脑中罗地素及其功能每日,昼夜节律和季节变化的分布仍不清楚。该研究鉴定了核心繁殖物种中丘脑中核细胞内甲壳素(PVN)中的两种新型罗多蛋白 - 免疫反应性细胞,在季节性繁殖物种中,Gambel的白冠的麻雀(Zonotrichia Leucophrys Gambelii)。在PVN中,罗多蛋白蛋白-RER细胞数显示每日和昼夜昼夜摄影鸟类中夜间相似的更明显的细胞,同时观察到昼夜变化,涉及较少的夜间相对常见鸟类的夜间标记细胞。单次漫长的一天光刺激仅在光敏鸟类中显着降低了罗多蛋白蛋白 - 红细胞数,同时随着血清素激素(LH)的血浆水平的升高而重合。在MBH中,罗多蛋白酶-RER细胞数未显示每天,昼夜节约或单漫长的一天诱导的光周期状态变化。但是,总体上这些表达神经元的罗地素从光敏性显着增加到光敏常规状态。与光敏鸟类相比,在中位数(ME)中,在光反常心鸟类中检测到更强烈的rhodopsin-IR。对于GNRH和血管活性肠多肽(VIP)的表达,发现与先前的研究一致的关系,季节性差异。我们的结果表明,在白冠麻雀的PGR调节中,两组罗地素样eps的不同作用。 (c)2018 Elsevier B.v.保留所有权利。

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