Zou Jianwei, Wei Lili, Mo Zhihua, Liang Yishan, Lu Jun, Zou Juhong, Wang Fan, Wu Shaoqiang, He Hai'en, Li Wenman, Huang Yanna, Jiang Qinyang
College of Animal Science and Technology, Guangxi University, Nanning 530004, China.
Guangxi Key Laboratory of Animal Breeding, Disease Control and Prevention, Guangxi University, Nanning 530004, China.
Animals (Basel). 2025 Jul 12;15(14):2063. doi: 10.3390/ani15142063.
Climate change poses an increasing threat to livestock reproduction, with heat stress (HS) known to significantly impair ovarian function. This study aimed to elucidate the impact of HS on ovarian function and circRNA expression profiles in Hu sheep. Twelve ewes were randomly assigned to a control (Con, = 6) or HS group ( = 6) and exposed to different temperatures for 68 days. Compared with the Con group, HS significantly increased the respiratory rate (108.33 ± 3.72 vs. 63.58 ± 2.42 breaths/min), pulse rate (121.17 ± 3.98 vs. 78.08 ± 3.31 beats/min), and rectal temperature (40.17 ± 0.14 °C vs. 39.02 ± 0.21 °C; < 0.05). Concurrently, serum antioxidant levels were markedly decreased, including total antioxidant capacity (T-AOC), total superoxide dismutase (T-SOD), and glutathione peroxidase (GSH-Px) ( < 0.05). Histological analysis revealed a significant reduction in the numbers of primordial, primary, secondary, and mature follicles, alongside an increase in antral follicles ( < 0.05). TUNEL staining demonstrated enhanced granulosa cell apoptosis ( < 0.05), accompanied by the upregulation of pro-apoptotic genes and and downregulation of the anti-apoptotic gene , as confirmed by qPCR ( < 0.05). CircRNA sequencing identified 152 differentially expressed circRNAs (120 upregulated, 32 downregulated), and enrichment analyses indicated their involvement in apoptosis, mitophagy, and the FoxO signaling pathway. Collectively, these findings demonstrate that HS impairs ovarian physiology and antioxidant defense, induces follicular damage and cell apoptosis, and alters circRNA expression profiles, providing new insights into the molecular mechanisms underlying HS-induced reproductive dysfunction in Hu sheep.
气候变化对家畜繁殖构成的威胁与日俱增,已知热应激(HS)会显著损害卵巢功能。本研究旨在阐明热应激对湖羊卵巢功能和circRNA表达谱的影响。将12只母羊随机分为对照组(Con,n = 6)或热应激组(n = 6),并在不同温度下暴露68天。与Con组相比,热应激显著提高了呼吸频率(108.33±3.72对63.58±2.42次/分钟)、脉搏率(121.17±3.98对78.08±3.31次/分钟)和直肠温度(40.17±0.14°C对39.02±0.21°C;P < 0.05)。同时,血清抗氧化水平显著降低,包括总抗氧化能力(T-AOC)、总超氧化物歧化酶(T-SOD)和谷胱甘肽过氧化物酶(GSH-Px)(P < 0.05)。组织学分析显示,原始卵泡、初级卵泡、次级卵泡和成熟卵泡数量显著减少,同时窦状卵泡数量增加(P < 0.05)。TUNEL染色显示颗粒细胞凋亡增强(P < 0.05),qPCR证实促凋亡基因BAX和CASP3上调,抗凋亡基因BCL2下调(P < 0.05)。circRNA测序鉴定出152个差异表达的circRNA(120个上调,32个下调),富集分析表明它们参与了凋亡、线粒体自噬和FoxO信号通路。总的来说,这些发现表明热应激会损害卵巢生理和抗氧化防御,诱导卵泡损伤和细胞凋亡,并改变circRNA表达谱,为热应激诱导湖羊繁殖功能障碍的分子机制提供了新的见解。