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转录组分析揭示了山羊热应激下支持细胞通过氧化还原和代谢途径进行适应性调节。

Transcriptome Analysis Reveals Sertoli Cells Adapting Through Redox and Metabolic Pathways Under Heat Stress in Goats.

作者信息

Yang Guang, Wang Yiwei, Ji Pengyun, Wang Bingyuan, Liu Guoshi

机构信息

College of Animal Science and Technology, Sanya Institute of China Agricultural University, Sanya 572025, China.

State Key Laboratory of Farm Animal Biotech Breeding, Frontiers Science Center for Molecular Design Breeding, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.

出版信息

Genes (Basel). 2024 Dec 9;15(12):1582. doi: 10.3390/genes15121582.

Abstract

BACKGROUND/OBJECTIVES: Climate change-induced temperature elevations pose significant challenges to livestock reproduction, particularly affecting testicular function in small ruminants. This study investigates the acute heat-stress response in goat Sertoli cells (SCs), aiming to elucidate the molecular mechanisms underlying heat-induced damage to male reproductive tissues.

METHODS

SCs were isolated from testes of 4-month-old black goats and exposed to heat stress (44 °C for 2.5 h). We employed transcriptome sequencing, CCK-8 assay, electron microscopy, ROS measurement, autophagy detection, Western blot analysis, and lactate concentration measurement. Bioinformatics analyses including Gene Ontology (GO), Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway, and protein-protein interaction network analyses were performed on the transcriptome data.

RESULTS

Heat stress significantly reduced SC viability, induced oxidative stress and autophagy, and altered gene expression profiles. We identified 1231 significantly differentially expressed genes, with significant enrichment in membrane-related processes and metabolic pathways. Metabolism-related genes, including , , and , were significantly downregulated. Protein-protein interaction network analysis revealed ten hub genes potentially crucial in the heat-stress response: , , , , , , , , , and .

CONCLUSIONS

This study provides comprehensive insights into the molecular mechanisms underlying goat SC response to heat stress. The identified genes and pathways, particularly those related to metabolism and stress response, offer potential targets for developing strategies to mitigate heat-stress effects on livestock reproduction. These findings contribute to our understanding of climate change impacts on animal husbandry and may inform the development of heat-stress resistant livestock lines.

摘要

背景/目的:气候变化导致的气温升高给家畜繁殖带来了重大挑战,尤其影响小型反刍动物的睾丸功能。本研究调查了山羊支持细胞(SCs)的急性热应激反应,旨在阐明热诱导雄性生殖组织损伤的分子机制。

方法

从4月龄黑山羊的睾丸中分离出支持细胞,并使其暴露于热应激(44℃,持续2.5小时)。我们采用了转录组测序、CCK-8检测、电子显微镜、活性氧测量、自噬检测、蛋白质印迹分析和乳酸浓度测量。对转录组数据进行了包括基因本体论(GO)、京都基因与基因组百科全书(KEGG)通路以及蛋白质-蛋白质相互作用网络分析在内的生物信息学分析。

结果

热应激显著降低了支持细胞的活力,诱导了氧化应激和自噬,并改变了基因表达谱。我们鉴定出1231个显著差异表达的基因,在与膜相关的过程和代谢途径中显著富集。包括[具体基因1]、[具体基因2]和[具体基因3]在内的与代谢相关的基因显著下调。蛋白质-蛋白质相互作用网络分析揭示了十个在热应激反应中可能至关重要的枢纽基因:[具体基因4]、[具体基因5]、[具体基因6]、[具体基因7]、[具体基因8]、[具体基因9]、[具体基因10]、[具体基因11]、[具体基因12]和[具体基因13]。

结论

本研究全面深入地了解了山羊支持细胞对热应激反应的分子机制。所鉴定的基因和通路,特别是那些与代谢和应激反应相关的基因和通路,为制定减轻热应激对家畜繁殖影响的策略提供了潜在靶点。这些发现有助于我们理解气候变化对畜牧业的影响,并可能为培育抗热应激家畜品系提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a059/11675638/0611a207361d/genes-15-01582-g001.jpg

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