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斑点叉尾鮰脑内瘦素及其受体在生殖阶段和性别二态性表达的研究。

Reproductive phase-dependent and sexually dimorphic expression of leptin and its receptor in different parts of brain of spotted snakehead Channa punctata.

机构信息

Department of Zoology, Ramjas College, University of Delhi, Delhi, India.

University of Jammu, Jammu, India.

出版信息

J Fish Biol. 2023 Apr;102(4):904-912. doi: 10.1111/jfb.15334. Epub 2023 Feb 12.

Abstract

The reproductive phase-wise leptin (lep) and its receptor (lepr) expression in different parts of the brain of adult male and female spotted snakehead Channa punctata reveals sexual dimorphism in the brain leptin system. In anterior, middle and posterior parts of the brain of males, a maximum lep was observed in resting, spawning and postspawning reproductive phases, respectively. In females, a high level of lep was seen during the preparatory phase in the anterior brain, preparatory and postspawning phases in the middle brain and resting and postspawning phases in the posterior brain. Nonetheless, the transcript level of lepr was recorded highest during the spawning phase, irrespective of sex and region of the brain. Regardless of the reproductive state of fishes, lep and lepr were seen considerably high in middle and posterior parts of male brain than that of female, implying the involvement of factors other than sex steroids for sex-related variation in the leptin system in these regions of the brain. Nonetheless, no sex difference was evidenced in the expression of either ligand or its receptor in the anterior brain. In summary, the presence of lep and lepr in different regions of the brain and variation in their expression depending on sex and reproductive phases raise the possibility of pivotal actions of leptin in influencing neuronal circuitry and thereby reproductive functions.

摘要

在成年雄性和雌性斑点蛇头 Channa punctata 的大脑不同部位,生殖阶段的瘦素 (lep)及其受体 (lepr)表达揭示了大脑瘦素系统的性别二态性。在雄性的大脑前、中、后部分,休息、产卵和产卵后生殖阶段分别观察到最大的 lep。在雌性中,在前脑的预备阶段、中脑的预备和产卵后阶段以及后脑的休息和产卵后阶段,lep 水平较高。然而,无论性别和大脑区域如何,lepr 的转录水平在产卵阶段最高。无论鱼类的生殖状态如何,雄性中脑和后脑的 lep 和 lepr 水平都明显高于雌性,这表明在这些大脑区域的瘦素系统中存在除性激素以外的因素导致性别相关的变异。然而,在前脑,配体或其受体的表达没有性别差异。总之,lep 和 lepr 存在于大脑的不同区域,其表达随性别和生殖阶段而变化,这增加了瘦素在影响神经元回路从而影响生殖功能方面发挥关键作用的可能性。

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