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罗氏沼虾 Kisspeptin 系统、KISS 和 GPR54 基因的分子分离与鉴定。

Molecular isolation and characterization of the kisspeptin system, KISS and GPR54 genes in roach Rutilus rutilus.

机构信息

Akvaplan-Niva, Environmental and Petroleum Research Department, Framsenteret, Tromsø, Norway.

Laboratory of Ecotoxicology, UMR-I 02 SEBIO-Normandie University, Le Havre, France.

出版信息

Environ Sci Pollut Res Int. 2018 Dec;25(36):36759-36764. doi: 10.1007/s11356-018-3299-x. Epub 2018 Oct 6.

Abstract

The reproduction of vertebrates is regulated by endocrine and neuro-endocrine signaling molecules acting along the brain-pituitary-gonad (BPG) axis. The understanding of the neuroendocrine role played in reproductive function has been recently revolutionized since the KiSS1/GPR54 (KiSS1r) system was discovered in 2003 in human and mice. Kisspeptins, neuropeptides that are encoded by the KiSS genes, have been recognized as essential in the regulation of the gonadotropic axis. They have been shown to play key roles in puberty onset and reproduction by regulating the gonadotropin secretion in mammals while physiological roles in vertebrates are still poorly known. In order to provide new knowledge on basic reproductive physiology in fish as well as new tools to assess impacts of endocrine disrupting compounds (EDCs), the neurotransmitter system, i.e., gene/receptor, KISS/GPR54 might constitute an appropriate biomarker. This study provides new understandings on the neuroendocrine regulation of roach reproduction as well as new molecular tools to be used as biomarkers of endocrine disruption. This work completes the set of biomarkers already validated in this species.

摘要

脊椎动物的繁殖受内分泌和神经内分泌信号分子的调节,这些信号分子沿着脑垂体性腺(BPG)轴发挥作用。自 2003 年在人类和老鼠中发现 Kiss1/GPR54(KiSS1r)系统以来,人们对生殖功能中神经内分泌作用的理解最近发生了革命性的变化。Kisspeptins 是由 KiSS 基因编码的神经肽,被认为在调节促性腺激素轴方面是必不可少的。它们被证明通过调节哺乳动物的促性腺激素分泌在青春期和生殖中发挥关键作用,而在脊椎动物中的生理作用仍知之甚少。为了提供鱼类基本生殖生理学的新知识以及评估内分泌干扰化合物(EDCs)影响的新工具,神经递质系统,即基因/受体 Kiss/GPR54 可能构成适当的生物标志物。本研究提供了关于罗非鱼生殖的神经内分泌调节的新认识,并提供了新的分子工具,可作为内分泌干扰的生物标志物。这项工作完成了该物种已经验证的一组生物标志物。

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