Marine Fishery Institute of Zhejiang Province, Key Lab of Mariculture and Enhancement of Zhejiang Province, Zhoushan 316100, Zhejiang Province, PR China; National and Provincial Joint Laboratory of Exploration and Utilization of Marine Aquatic Genetic Resources, National Engineering Research Center of Marine Facilities Aquaculture, School of Marine Science and Technology, Zhejiang Ocean University, Zhoushan 316022, PR China.
National and Provincial Joint Laboratory of Exploration and Utilization of Marine Aquatic Genetic Resources, National Engineering Research Center of Marine Facilities Aquaculture, School of Marine Science and Technology, Zhejiang Ocean University, Zhoushan 316022, PR China.
Comp Biochem Physiol Part D Genomics Proteomics. 2018 Dec;28:80-89. doi: 10.1016/j.cbd.2018.07.003. Epub 2018 Jul 7.
The yellow drum (Nibea albiflora) is an economically important maricultured fish in China, but the aquaculture of this species is severely affected by overwinter mortality associated with cold stress. Characterization of the molecular mechanisms underlying the susceptibility of the yellow drum to cold might increase our understanding of how this fish adapts to environmental challenges. Here, the transcriptional response of the yellow drum to cold stress (7.5 °C) was investigated with RNA-Seq analysis. We compared brain and muscle transcriptomes among cold-tolerant (Tol) fish that survived the cold treatment, cold-sensitive (Sen) fish that were killed by the cold treatment, and control (Con) fish that were not subjected to cold. Our analysis recovered 233,245 unigenes. The genes (DEGs) differentially expressed in the brain and muscle of the Tol versus Con group, the Sen versus Con group, and the Tol versus Sen group had tissue-specific expression patterns. Gene ontology, enrichment, and pathway analyses indicated the most highly enriched pathways in the DEGs were signaling molecules and interaction, signal transduction, carbohydrate metabolism, lipid metabolism, digestive system, and endocrine system pathways. These pathways were all associated with biological functions relevant to cold adaptation in the yellow drum, including transduction of stress signals, energy metabolism, and stress-induced cell membrane changes. We identified genes likely to be involved in cold-susceptibility and -tolerance as those differentially expressed in the Tol group as compared to the Sen group. Further investigation and characterization of these candidate genes might improve our understanding of the mechanisms underlying cold adaptation in the yellow drum.
黄姑鱼(Nibea albiflora)是中国重要的海水养殖鱼类之一,但该品种的养殖业受到与冷应激相关的越冬死亡率的严重影响。研究黄姑鱼对冷胁迫易感性的分子机制特征,可能有助于增加我们对该鱼类适应环境挑战的机制的理解。本研究采用 RNA-Seq 分析方法,研究了黄姑鱼在冷胁迫(7.5°C)下的转录组反应。我们比较了耐受冷胁迫(Tol)鱼、不耐受冷胁迫(Sen)鱼和对照组(Con)鱼的大脑和肌肉转录组。我们共获得了 233,245 条 unigenes。Tol 组与 Con 组、Sen 组与 Con 组、Tol 组与 Sen 组的大脑和肌肉中差异表达的基因(DEGs)具有组织特异性表达模式。GO、富集和通路分析表明,DEGs 中最富集的通路是信号分子和相互作用、信号转导、碳水化合物代谢、脂质代谢、消化系统和内分泌系统途径。这些途径都与黄姑鱼适应寒冷的生物学功能有关,包括应激信号转导、能量代谢和应激诱导的细胞膜变化。我们鉴定了一些可能与冷敏感和冷耐受相关的基因,这些基因在 Tol 组与 Sen 组之间存在差异表达。进一步研究和表征这些候选基因可能有助于我们理解黄姑鱼适应寒冷的机制。