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首页> 外文期刊>Frontiers in Endocrinology >Functional Implications of RFRP-3 in the Central Control of Daily and Seasonal Rhythms in Reproduction
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Functional Implications of RFRP-3 in the Central Control of Daily and Seasonal Rhythms in Reproduction

机译:RFRP-3在生殖的每日和季节性节律的中央控制中的功能意义

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Adaptation of reproductive activity to environmental changes is essential for breeding success and offspring survival. In mammals, the reproductive system displays regular cycles of activation and inactivation which are synchronized with seasonal and/or daily rhythms in environmental factors, notably light intensity and duration. Thus, most species adapt their breeding activity along the year to ensure that birth and weaning of the offspring occur at a time when resources are optimal. Additionally, female reproductive activity is highest at the beginning of the active phase during the period of full oocyte maturation, in order to improve breeding success. In reproductive physiology, it is therefore fundamental to delineate how geophysical signals are integrated in the hypothalamo-pituitary-gonadal axis, notably by the neurons expressing gonadotropin releasing hormone (GnRH). Several neurochemicals have been reported to regulate GnRH neuronal activity, but recently two hypothalamic neuropeptides belonging to the superfamily of (Arg)(Phe)-amide peptides, RFRP-3 and kisspeptin, have emerged as critical for the integration of environmental cues within the reproductive axis. The goal of this review is to survey the current understanding of the role played by RFRP-3 in the temporal regulation of reproduction, and consider how its effect might combine with that of kisspeptin to improve the synchronization of reproduction to environmental challenges.
机译:使繁殖活动适应环境变化对于繁殖成功和后代生存至关重要。在哺乳动物中,生殖系统显示出规律的激活和失活周期,这些周期与环境因素(尤其是光照强度和持续时间)的季节性和/或每日节律同步。因此,大多数物种会在一年中适应其繁殖活动,以确保在资源最佳的时候进行后代的出生和断奶。另外,在卵母细胞完全成熟期间,在活动期开始时雌性生殖活性最高,以提高育种成功率。因此,在生殖生理学中,重要的是描述地球物理信号如何整合到下丘脑-垂体-性腺轴中,特别是通过表达促性腺激素释放激素(GnRH)的神经元。据报道有几种神经化学物质可调节GnRH神经元的活性,但最近有两种属于(Arg)(Phe)-酰胺肽超家族的下丘脑神经肽RFRP-3和Kisspeptin成为在生殖系统中整合环境线索的关键。轴。这篇综述的目的是调查当前对RFRP-3在生殖时间调控中所起作用的理解,并考虑其作用如何与kisseptin结合以改善生殖与环境挑战的同步性。

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