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非肽类血管加压素和催产素在雄性斑马鱼(Danio rerio)中的生殖作用。

A reproductive role for the nonapeptides vasotocin and isotocin in male zebrafish (Danio rerio).

机构信息

Department of Biology, University of Ottawa, 20 Marie-Curie, K1N 6N5 Ottawa, Ontario, Canada.

Department of Biology, University of Ottawa, 20 Marie-Curie, K1N 6N5 Ottawa, Ontario, Canada.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2019 Dec;238:110333. doi: 10.1016/j.cbpb.2019.110333. Epub 2019 Sep 6.

Abstract

Two distinct nonapeptide systems, vasotocin- and oxytocin-related peptides, evolved in vertebrates. Their role in male zebrafish reproduction has not been formally investigated. We hypothesized that the teleost nonapeptides vasotocin and isotocin stimulate male zebrafish reproductive physiology and success by affecting central neuronal and/or peripheral endocrine pathways. Pharmacological inhibition experiments revealed that both vasotocin and isotocin contribute significantly to male reproductive success, which in the case of vasotocin correlated significantly with indices of male courtship behavior. Interestingly, co-administration of vasotocin and isotocin antagonists completely abolished male reproductive success without affecting male courtship behavior and endocrine indices, possibly linked to a synergistic action of nonapeptides on male pheromone release. To further probe the nonapeptides' role in male zebrafish reproduction, we subsequently tested whether male zebrafish nonapeptide systems were acutely activated by the female releaser pheromone PGF, a strong chemoattractant and important reproductive cue in males which stimulates courtship behavior. Male zebrafish attracted to PGF in a choice assay exhibited acute increases in neuronal activation marker p-ERK immunoreactivity in the ventral glomerulus of the olfactory bulb and the preoptic area, however no co-localization with isotocin was observed. Conversely, PGF time-dependently stimulated whole brain isotocin mRNA abundance, suggesting secondary longer-term effects of PGF exposure on the central isotocinergic system. While the current lack of vasotocin-specific antibodies for zebrafish does not allow to probe acute activation of vasotocinergic neurons, whole brain vasotocin mRNA was not significantly affected by PGF exposure. Together, our results identify a role for nonapeptides in male zebrafish reproductive physiology and success.

摘要

两种不同的九肽系统,加压素和催产素相关肽,在脊椎动物中进化而来。它们在雄性斑马鱼生殖中的作用尚未得到正式研究。我们假设硬骨鱼的九肽加压素和等渗催产素通过影响中枢神经元和/或外周内分泌途径来刺激雄性斑马鱼的生殖生理和成功。药理抑制实验表明,加压素和等渗催产素都对雄性生殖成功有重要贡献,而在加压素的情况下,与雄性求偶行为的指标显著相关。有趣的是,同时给予加压素和等渗催产素拮抗剂完全消除了雄性生殖成功,而不影响雄性求偶行为和内分泌指标,这可能与九肽对雄性信息素释放的协同作用有关。为了进一步探究九肽在雄性斑马鱼生殖中的作用,我们随后测试了雄性斑马鱼九肽系统是否被雌性释放剂 PGF 急性激活,PGF 是一种强烈的趋化剂和雄性重要的生殖线索,刺激求偶行为。在选择试验中,被 PGF 吸引的雄性斑马鱼表现出嗅球腹侧肾小球和前脑区神经元激活标志物 p-ERK 免疫反应的急性增加,但没有观察到与等渗催产素的共定位。相反,PGF 时间依赖性地刺激全脑等渗催产素 mRNA 丰度,表明 PGF 暴露对中枢等渗催产素系统有继发的长期影响。虽然目前缺乏针对斑马鱼的加压素特异性抗体,无法探测加压素能神经元的急性激活,但全脑加压素 mRNA 不受 PGF 暴露的显著影响。总之,我们的研究结果表明,九肽在雄性斑马鱼生殖生理和成功中发挥作用。

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