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短篇通讯:光周期对西伯利亚仓鼠卵巢细胞外基质和代谢基因表达的影响。

Short communication: Photoperiod impacts ovarian extracellular matrix and metabolic gene expression in Siberian hamsters.

机构信息

Department of Biological Sciences, California State University Long Beach, Long Beach, CA 90840, United States of America.

Department of Biological Sciences, California State University Long Beach, Long Beach, CA 90840, United States of America.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2022 Dec;274:111302. doi: 10.1016/j.cbpa.2022.111302. Epub 2022 Aug 27.

Abstract

Ovarian cyclicity is variable in adult Siberian hamsters (Phodopus sungorus), who respond to long breeding season photoperiods with follicle development and ovulation, while short photoperiods typical of the non-breeding season induce gonadal atrophy. Recent RNAseq results identified ovarian matrix components and regulators of metabolism as differentially regulated by photoperiod; however, the impact of photoperiod across a full cycle of ovarian regression and recrudescence had not been explored for additional regulators of ovarian metabolism and extracellular matrix components. We hypothesized that matrix and metabolism-related genes would be expressed differentially across photoperiods that mimic breeding and non-breeding season daylengths. Hamsters were housed in one of four photoperiod groups: long day (16 h of light per day: 8 h of dark; LD, controls), short day regressed (8 L:16D; SD, regressed), and females exposed to SD then transferred to LD to stimulate return of ovarian function for 2 (early recrudescence), or 8 (late recrudescence) weeks. Plasma leptin concentrations along with expression of ovarian versican and liver-receptor homolog-1/Nr582 mRNA decreased in SD compared to LD and late recrudescence, while vimentin mRNA expression peaked in early and late recrudescence. Ovarian expression of fibronectin and extracellular matrix protein-1 was low in LD ovaries and increased in regressed and recrudescing groups. Expression of hyaluronidase-2, nectin-2, liver-X receptors-α and-β, and adiponectin mRNA peaked in late recrudescence, with no changes noted for adiponectin receptor-1 and -2. The results offer a first look at the parallels between expression of these genes and the dynamic remodeling that occurs during ovarian regression and recrudescence.

摘要

卵巢周期性在成年的西伯利亚仓鼠(Phodopus sungorus)中是可变的,它们对长繁殖季节光照周期做出反应,表现为卵泡发育和排卵,而短光照周期是非繁殖季节的典型特征,会诱导性腺萎缩。最近的 RNA 测序结果表明,卵巢基质成分和代谢调节剂受光照周期的差异调节;然而,尚未探讨光周期对卵巢代谢和细胞外基质成分的其他调节剂在整个卵巢退化和恢复周期中的影响。我们假设基质和代谢相关基因在模拟繁殖和非繁殖季节日照长度的光照周期中会表现出不同的表达。仓鼠被安置在四个光照周期组中的一个中:长日(每天 16 小时光照:8 小时黑暗;LD,对照组)、短日退化(8L:16D;SD,退化)和短日处理的雌性然后转移到 LD 以刺激卵巢功能恢复 2(早期恢复)或 8(晚期恢复)周。与 LD 和晚期恢复相比,SD 中血浆瘦素浓度以及卵巢 versican 和肝受体同源物-1/Nr582 mRNA 的表达降低,而 vimentin mRNA 的表达在早期和晚期恢复中达到峰值。在 LD 卵巢中,纤维连接蛋白和细胞外基质蛋白-1 的卵巢表达较低,在退化和恢复组中增加。透明质酸酶-2、神经细胞黏附分子-2、肝 X 受体-α和-β以及脂联素 mRNA 的表达在晚期恢复中达到峰值,而脂联素受体-1 和 -2 没有变化。这些结果首次揭示了这些基因的表达与卵巢退化和恢复过程中发生的动态重塑之间的相似性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99d5/11285357/ac95843c0852/nihms-2007954-f0001.jpg

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