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基于转录组和代谢组联合分析揭示的红鳍东方鲀仔鱼肝对不同温度的生理响应

Physiological responses to different temperature in the liver of Takifugu rubripes larvae revealed by integrated transcriptomic and metabolomic analyses.

作者信息

Zhou Huiting, Wang Jia, Hu Mingtao, Shen Xufang, Gao Rui, Yan Hongwei, Liu Qi, Liu Ying, Tian Yushun, Wang Heng, Wang Xiuli, Qu Shaodong, Fu Chuang

机构信息

College of Fisheries and Life Science, Dalian Ocean University, Dalian 116023, China; Key Laboratory of Environment Controlled Aquaculture, Ministry of Education (Dalian Ocean University), 116023, China.

Key Laboratory of Environment Controlled Aquaculture, Ministry of Education (Dalian Ocean University), 116023, China; College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou 310058, China.

出版信息

Comp Biochem Physiol Part D Genomics Proteomics. 2025 Jun;54:101371. doi: 10.1016/j.cbd.2024.101371. Epub 2024 Nov 28.

Abstract

Water temperature plays a vital role in shaping the physical conditions crucial for the growth, development and reproduction of fish species. Since limited comprehensive multi-omics analyses exploring the molecular mechanisms of temperature influences on the early life stages of fish. Here, the effects of temperature variations on the growth of Takifugu rubripes, a commercial teleost farmed in Asia were investigated. Nineteen-days-old fugu larvae were subjected to different temperature (15 °C-T15, 20 °C-T20, 25 °C-T25) for 30 days. Liver tissues were harvested at the end of the study for transcriptomic and metabolomic assessments. The T. rubripes larvae in the T15 group showed a significant decrease in total length and body weight compared to the T20 and T25 groups (p < 0.05). 1344, 416, and 2080 differentially expressed genes (DEGs) were identified in T15-vs-T20, T20-vs-T25, and T15-vs-T25 comparisons, respectively. Those DEGs were mainly enriched in metabolic, protein digestion and absorption, steroid biosynthesis, and glycerophospholipid metabolism pathways. 15 DEGs were randomly selected for RNA-seq validation, and the transcriptome results were consistent with the qPCR validation results, illustrating the accuracy of transcriptome sequencing. 340, 238, and 330 significantly different metabolites (SDMs) were identified in positive modes when comparing in T15-vs-T20, T20-vs-T25, and T15-vs-T25, respectively. Additionally, 145, 137, and 159 SDMs were identified in negative modes within the three comparisons. Those SDMs enriched in biosynthesis of secondary metabolites, glycerophospholipid metabolism, linoleic acid metabolism, and metabolic pathways. The integration of transcriptomic and metabolomic analyses indicated that DEGs and SDMs mainly enriched in metabolic pathways. These discoveries provide valuable insights into the effects of temperature on fish larvae in aquaculture, laying a foundation for future breeding approaches aimed at improving the growth of T. rubripes.

摘要

水温在塑造对鱼类生长、发育和繁殖至关重要的物理条件方面起着至关重要的作用。由于探索温度对鱼类早期生命阶段影响的分子机制的综合多组学分析有限。在此,研究了温度变化对亚洲养殖的商业硬骨鱼红鳍东方鲀生长的影响。将19日龄的河豚幼体在不同温度(15℃-T15、20℃-T20、25℃-T25)下处理30天。在研究结束时采集肝脏组织进行转录组学和代谢组学评估。与T20和T25组相比,T15组的红鳍东方鲀幼体全长和体重显著下降(p<0.05)。在T15与T20、T20与T25、T15与T25的比较中,分别鉴定出1344、416和2080个差异表达基因(DEG)。这些DEG主要富集在代谢、蛋白质消化和吸收、类固醇生物合成和甘油磷脂代谢途径中。随机选择15个DEG进行RNA-seq验证,转录组结果与qPCR验证结果一致,说明了转录组测序的准确性。在T15与T20、T20与T25、T15与T25的比较中,分别在正模式下鉴定出340、238和330种显著不同的代谢物(SDM)。此外,在三次比较中,分别在负模式下鉴定出145、137和159种SDM。这些SDM富集在次生代谢物生物合成、甘油磷脂代谢、亚油酸代谢和代谢途径中。转录组学和代谢组学分析的整合表明,DEG和SDM主要富集在代谢途径中。这些发现为温度对水产养殖中鱼类幼体的影响提供了有价值的见解,为未来旨在改善红鳍东方鲀生长的育种方法奠定了基础。

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