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综合转录组分析揭示了高温胁迫下罗非鱼心血管相关分子机制的紊乱。

Comprehensive transcriptome analysis unravels the perturbated cardiovascular-related molecular mechanisms of tilapia under high-temperature stress.

作者信息

Lu Jigang, Zhu Yihao, Wei Shicen, Huang Siqi, Zu Yao, Chen Liangbiao

机构信息

Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, Ministry of Education, Shanghai Ocean University, Shanghai 201306, PR China; International Research Center for Marine Biosciences, Ministry of Science and Technology, Shanghai Ocean University, Shanghai 201306, PR China; College of Fisheries and Life Science, Shanghai Ocean University, Shanghai 201306, PR China.

Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, Ministry of Education, Shanghai Ocean University, Shanghai 201306, PR China; International Research Center for Marine Biosciences, Ministry of Science and Technology, Shanghai Ocean University, Shanghai 201306, PR China; College of Fisheries and Life Science, Shanghai Ocean University, Shanghai 201306, PR China.

出版信息

Comp Biochem Physiol Part D Genomics Proteomics. 2024 Dec;52:101324. doi: 10.1016/j.cbd.2024.101324. Epub 2024 Sep 16.

DOI:10.1016/j.cbd.2024.101324
PMID:39298880
Abstract

With the ongoing intensification of global warming, thermal stress poses significant challenges to tilapia aquaculture. However, the molecular mechanisms underlying the cardiac response of tilapia to high temperatures remain largely unexplored. To address this knowledge gap, we investigated the effects of high-temperature stress on the transcriptomic landscape of the tilapia heart. RNA sequencing was performed on the hearts of Oreochromis aureus (AR), Oreochromis niloticus (NL), and hybrids (O. niloticus ♀ × O. aureus ♂, AN) under treatments of 28 °C, 36 °C, and 39 °C. Using a multi-method approach, including Differentially Expressed Genes analysis, Weighted Gene Co-expression Network Analysis, Fuzzy C-Means, Self-Organizing Map, and Support Vector Machine-Recursive Feature Elimination, we identified six marker genes at 39 °C (AR: ptges3, tuba1a; NL: ran, tcima; AN: slc16a1, fam184b). These genes exhibited strong positive correlations and increased expression under high-temperature conditions. Gene Set Enrichment Analysis and GENIE3 revealed that these marker genes closely regulate three cardiovascular-related pathways: adrenergic signaling in cardiomyocytes, vascular smooth muscle contraction, and cardiac muscle contraction. We hypothesize that the synergistic inhibition of these pathways by marker genes leads to the deterioration of cardiovascular function. In summary, thermal stress activates marker genes, which in turn inhibit cardiovascular pathways, impairing cardiac performance. We propose that these marker genes could serve as dynamic thermal indicators of cardiac performance in tilapia. Additionally, our findings provide theoretical support for improving the management of tilapia farming under high-temperature stress.

摘要

随着全球变暖的持续加剧,热应激给罗非鱼养殖带来了重大挑战。然而,罗非鱼心脏对高温的反应背后的分子机制在很大程度上仍未得到探索。为了填补这一知识空白,我们研究了高温胁迫对罗非鱼心脏转录组图谱的影响。对奥利亚罗非鱼(AR)、尼罗罗非鱼(NL)及其杂交种(尼罗罗非鱼♀×奥利亚罗非鱼♂,AN)在28℃、36℃和39℃处理下的心脏进行了RNA测序。使用多种方法,包括差异表达基因分析、加权基因共表达网络分析、模糊C均值、自组织映射和支持向量机递归特征消除,我们在39℃时鉴定出六个标记基因(AR:ptges3、tuba1a;NL:ran、tcima;AN:slc16a1、fam184b)。这些基因在高温条件下表现出强正相关且表达增加。基因集富集分析和GENIE3表明,这些标记基因紧密调节三个与心血管相关的途径:心肌细胞中的肾上腺素能信号传导、血管平滑肌收缩和心肌收缩。我们假设这些标记基因对这些途径的协同抑制导致心血管功能恶化。总之,热应激激活标记基因,进而抑制心血管途径,损害心脏性能。我们提出这些标记基因可作为罗非鱼心脏性能的动态热指标。此外,我们的研究结果为改善高温胁迫下罗非鱼养殖管理提供了理论支持。

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