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雄蛙鸣叫改变了 Microhyla nilphamariensis 脑中神经肽、可卡因和安非他命调节转录物(CART)的表达。

Mate calling alters expression of neuropeptide, cocaine- and amphetamine- regulated transcript (CART) in the brain of male frog Microhyla nilphamariensis.

机构信息

Department of Zoology, Savitribai Phule Pune University, Ganeshkhind, Pune 411 007, India.

Department of Zoology, Savitribai Phule Pune University, Ganeshkhind, Pune 411 007, India.

出版信息

Neuropeptides. 2023 Dec;102:102380. doi: 10.1016/j.npep.2023.102380. Epub 2023 Sep 9.

DOI:10.1016/j.npep.2023.102380
PMID:37690194
Abstract

Croaking is a unique component of reproductive behaviour in amphibians which plays a key role in intraspecies communication and mate evaluation. While gonadal hormones are known to induce croaking, central regulation of sound production is less studied. Croaking is a dramatic, transient activity that sets apart an animal from non-croaking individuals. Herein, we aim at examining the profile of the neuropeptide cocaine- and amphetamine-regulated transcript (CART) in actively croaking and non-croaking frog Microhyla nilphamariensis. In anurans, this peptide is widely expressed in the areas inclusive of acoustical nuclei as well as areas relevant to reproduction. CART immunoreactivity was far more in the preoptic area (POA), anteroventral tegmentum (AV), ventral hypothalamus (vHy), pineal (P) and pituitary gland of croaking frog compared to non-croaking animals. On similar lines, tissue fragments collected from the mid region of the brain inclusive of POA, vHy, AV, pineal and pituitary gland of croaking frog showed upregulation of CART mRNA. However, CART immunoreactivity in the neuronal perikarya of raphe (Ra) was completely abolished during croaking activity. The data suggest that CART signaling in the brain may be an important player in mediating croaking behaviour in the frog.

摘要

鸣叫是两栖动物繁殖行为中独特的组成部分,在种内交流和配偶评估中起着关键作用。虽然已知性腺激素会诱导鸣叫,但声音产生的中枢调节研究较少。鸣叫是一种剧烈的、短暂的活动,使动物与不鸣叫的个体区分开来。在此,我们旨在研究可卡因和安非他命调节转录物(CART)在活跃鸣叫和不鸣叫的青蛙 Microhyla nilphamariensis 中的特征。在无尾两栖动物中,这种肽广泛表达在包括声学核以及与繁殖相关的区域。与不鸣叫的动物相比,鸣叫青蛙的视前区(POA)、腹侧被盖区(AV)、下丘脑腹侧(vHy)、松果体(P)和垂体中的 CART 免疫反应性要强得多。类似地,从鸣叫青蛙的脑中部区域收集的包括 POA、vHy、AV、松果体和垂体的脑组织片段显示 CART mRNA 的上调。然而,在鸣叫活动期间,中缝核(Ra)神经元胞体中的 CART 免疫反应性完全消失。这些数据表明,大脑中的 CART 信号可能是介导青蛙鸣叫行为的重要因素。

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