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红罗非鱼越冬期冷应激后大脑转录组和代谢组的综合分析

Integrated Analysis of Transcriptome and Metabolome in the Brain After Cold Stress of Red Tilapia During Overwintering.

作者信息

Zhu Chenxi, Yang Haoran, Zhu Wenbin, Jiang Qichen, Dong Zaijie, Wang Lanmei

机构信息

Freshwater Fisheries Research Centre of Chinese Academy of Fishery Sciences, Key Laboratory of Freshwater Fisheries and Germplasm Resources Utilization, Ministry of Agriculture and Rural Affairs, Wuxi 214081, China.

School of Humanities, Universiti Sains Malaysia, Minden 11800, Penang, Malaysia.

出版信息

Int J Mol Sci. 2024 Dec 13;25(24):13372. doi: 10.3390/ijms252413372.

Abstract

Cold stress during overwintering is considered a bottleneck problem limiting the development of the red tilapia ( spp.) industry, and the regulation mechanism is currently not well understood. In this study, the fish (initial weight: 72.71 ± 1.32 g) were divided into the cold stress group (cold) and the control (normal) group. In the control group, the water temperature was maintained at 20 °C, which is basically consistent with the overwintering water temperature in greenhouses of local areas. In the cold group, the water temperature decreased from 20 °C to 8 °C by 2 °C per day during the experiment. At the end of the experiment, the levels of fish serum urea nitrogen, glucose, norepinephrine, alkaline phosphatase, total bilirubin, and total cholesterol in the cold group changed significantly compared with that in the control group ( < 0.05). Then transcriptome sequencing and LC-MS metabolome of brain tissue were further employed to obtain the mRNA and metabolite datasets. We found that the FoxO signaling pathway and ABC transporters played an important role by transcriptome-metabolome association analysis. In the FoxO signaling pathway, the differentially expressed genes were related to cell cycle regulation, apoptosis and immune-regulation, and oxidative stress resistance and DNA repair. In the ABC transporters pathway, the ATP-binding cassette (ABC) subfamily , , and gene expression levels, and the deoxycytidine, L-lysine, L-glutamic acid, L-threonine, ornithine, and uridine metabolite contents changed. Our results suggested that the cold stress may promote apoptosis through regulation of the FoxO signaling pathway. The ABC transporters may respond to cold stress by regulating amino acid metabolism. The results provided a comprehensive understanding of fish cold stress during overwintering, which will facilitate the breeding of new cold-resistant varieties of red tilapia in the future.

摘要

越冬期间的冷应激被认为是限制红罗非鱼(spp.)产业发展的一个瓶颈问题,目前其调控机制尚不清楚。在本研究中,将鱼(初始体重:72.71±1.32克)分为冷应激组(冷)和对照组(正常)。对照组水温维持在20℃,这与当地温室越冬水温基本一致。冷应激组在实验期间水温每天从20℃以2℃的幅度降至8℃。实验结束时,冷应激组鱼血清中尿素氮、葡萄糖、去甲肾上腺素、碱性磷酸酶、总胆红素和总胆固醇水平与对照组相比有显著变化(<0.05)。随后进一步对脑组织进行转录组测序和液相色谱-质谱代谢组学分析以获得mRNA和代谢物数据集。通过转录组-代谢组关联分析发现,FoxO信号通路和ABC转运蛋白发挥了重要作用。在FoxO信号通路中,差异表达基因与细胞周期调控、细胞凋亡和免疫调节以及抗氧化应激和DNA修复有关。在ABC转运蛋白通路中,ATP结合盒(ABC)亚家族、、和基因表达水平以及脱氧胞苷、L-赖氨酸、L-谷氨酸、L-苏氨酸、鸟氨酸和尿苷代谢物含量发生了变化。我们的结果表明,冷应激可能通过调节FoxO信号通路促进细胞凋亡。ABC转运蛋白可能通过调节氨基酸代谢来应对冷应激。这些结果为了解越冬期间鱼类冷应激提供了全面认识,将有助于未来培育新的抗寒红罗非鱼品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f3d/11676689/cd1d62e740c7/ijms-25-13372-g001.jpg

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