The cold stress during overwintering is considered the bottleneck of red tilapia industry. In this study, the water temperature (WT) was reduced by 2â°C per day from 20â°C to 8â°C in the cold (C) group. Then transcriptome of brain(B), gill(G), liver(L) and skin(S) tissues and proteome of G, L and S tissues were performed in C and Normal (N) (WT: 20â°C) group. 24 transcriptomes were completed, and 168.8âGb data were obtained, with more than 5.89âGb clean data of each sample. A total of 30499 annotation results were obtained with 3199, 4697, 4393, and 3382 differentially expressed mRNAs in NB_vs_CB, NG_vs_CG, NL_vs_CL, NS_vs_CS. 18 DIA proteomes were performed, and 6341 proteins were obtained with 178, 500 and 166 differentially expressed proteins in NG_vs_CG, NL_vs_CL, NS_vs_CS. Our datasets can be reused for key genes and proteins identification, omics joint analysis and regulatory mechanism analysis of low temperature or cold stress in fish, which will help understanding the regulatory mechanism and facilitate the molecular selective breeding of cold-resistant varieties of fish.
The mRNA and protein datasets after cold stress of red tilapia.
红罗非鱼在冷胁迫后的mRNA和蛋白质数据集
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作者:Wang Lanmei, Yang Haoran, Munyaradzia Herbert Brightmore, Zhu Wenbin, Dong Zai-Jie
| 期刊: | Scientific Data | 影响因子: | 6.900 |
| 时间: | 2024 | 起止号: | 2024 Oct 30; 11(1):1177 |
| doi: | 10.1038/s41597-024-04025-1 | 研究方向: | 其它 |
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