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首页> 外文期刊>Frontiers in neuroendocrinology >Annual gonadal cycles in birds: Modeling the effects of photoperiod on seasonal changes in GnRH-1 secretion
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Annual gonadal cycles in birds: Modeling the effects of photoperiod on seasonal changes in GnRH-1 secretion

机译:鸟类的年度性腺循环:模拟光周期对GnRH-1分泌季节变化的影响

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摘要

This paper reviews current knowledge of photoperiod control of GnRH-1 secretion and proposes a model in which two processes act together to regulate GnRH1 secretion. Photo-induction controls GnRH1 secretion and is directly related to prevailing photoperiod. Photo-inhibition, a longer term process, acts through GnRH1 synthesis. It progresses each day during daylight hours, but reverses during darkness. Thus, photo-inhibition gradually increases when photoperiods exceed 12 h, and reverses under shorter photoperiods. GnRH1 secretion on any particular day is the net result of these two processes acting in tandem. The only difference between species is their sensitivity to photo-inhibition. This can potentially explain differences in timing and duration of breeding seasons between species, why some species become absolutely photorefractory and others relatively photorefractory, why breeding seasons end at the same time at different latitudes within species, and why experimental protocols sometimes produce results that appear counter to what happens naturally. (C) 2014 The Author. Published by Elsevier Inc.
机译:本文审查了目前对GNRH-1分泌的光周期控制的目的知识,提出了一种模型,其中两种方法共同调节GNRH1分泌。光诱导控制GNRH1分泌,与普遍的光周期直接相关。照片抑制,长期过程,通过GNRH1合成作用。它在白天的时间里进行了每一天,但在黑暗期间逆转。因此,当光周期超过12小时时,光抑制逐渐增加,并且在较短的光周期下反转。 GNRH1在任何特定日内的分泌物是这两种过程的循环结果串联。物种之间的唯一区别是它们对照片抑制的敏感性。这可能会解释物种之间的繁殖季节的时序和持续时间的差异,为什么有些物种绝对是光灭火和其他相对的光反射论,为什么繁殖季节在物种内不同纬度的同时结束,以及为什么实验方案有时会产生出现计数器的结果自然会发生什么。 (c)2014提交人。 elsevier公司发布

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