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首页> 外文期刊>Fish Physiology and Biochemistry >Quantification of whole brain arginine vasotocin for two Syngnathus pipefishes: elevated concentrations correlated with paternal brooding
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Quantification of whole brain arginine vasotocin for two Syngnathus pipefishes: elevated concentrations correlated with paternal brooding

机译:定量两个Syngnathus fish鱼的全脑精氨酸血管收缩素:浓度升高与父亲育雏相关

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Arginine vasotocin (AVT) regulates many aspects of fish physiology and behavior including courtship and reproduction. This study begins to address whether paternal functions for AVT have independently evolved in species in which paternal behavior has evolved. We quantified AVT in the brains of Syngnathus fuscus and Syngnathus floridae which, like other pipefishes and seahorses of the family Syngnathidae, brood embryos within specialized structures of the male. For both species, we measured AVT concentrations seventeenfold higher for some males during brooding compared to post-brooding males. Comparable whole brain AVT concentrations between gravid females and males with broods at some embryonic development stages suggest physiological similarities that we hypothesize is related to nutrient provisioning but should be elucidated with further studies including a detailed anatomical analysis of AVT production. Earlier studies have identified differences in the brooding structures of these species. Here we documented interspecific differences in the variability and mean AVT concentration for non-brooding males, the brood stage showing a return to post-brooding concentrations, and the variability of AVT concentrations for brooding males with embryos in some development stages. Future investigations should use these data to investigate the potential for divergent AVT function between species, sexes, and brooding males with embryos of different developmental stages.
机译:精氨酸血管收缩素(AVT)调节鱼类生理和行为的许多方面,包括求爱和繁殖。这项研究开始探讨在父本行为已进化的物种中,AVT的父本功能是否已独立发展。我们对Syngnathus fuscus和Syngnathus floridae的大脑中的AVT进行了定量,与其他Syngnathidae的海豚和海马一样,它们的雄性胚胎位于男性的特殊结构内。对于这两个物种,我们测量了一些雄性在育雏期间的AVT浓度比育种后的雄性高出17倍。在某些胚胎发育阶段,妊娠雌雄之间的全脑AVT浓度相当,提示我们假设的生理相似性与养分供应有关,但应通过进一步的研究加以阐明,包括对AVT产生进行详细的解剖学分析。较早的研究已经确定了这些物种的育雏结构的差异。在这里,我们记录了非育成雄性的变异性和平均AVT浓度的种间差异,育成阶段显示出育成后浓度的回归,以及育成雄性与胚胎在某些发育阶段的AVT浓度变异性。未来的研究应使用这些数据来调查具有不同发育阶段胚胎的物种,性别和育雏雄性之间AVT功能差异的潜力。

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