Wang Qiaoxin, Li Xiaohui, Sha Hang, Luo Xiangzhong, Zou Guiwei, Liang Hongwei
College of Fisheries and Life Science, Shanghai Ocean University, Shanghai 201306, China.
Yangtze River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Wuhan 430223, China.
Animals (Basel). 2021 Oct 9;11(10):2917. doi: 10.3390/ani11102917.
Hypoxia is one of the serious stresses in fish culture, which can lead to physical and morphological changes, and cause injury and even death to fish. Silver carp ( is an important economic fish and widely distributed in China. MicroRNA is a kind of endogenous non-coding single-stranded small RNA, which is involved in cell development, and immune response and gene expression regulation. In this study, silver carp were kept in the closed containers for hypoxia treatment by spontaneous oxygen consumption. The samples of heart, brain, liver and gill were collected, and the total RNAs extracted separately from the four tissues were mixed in equal amounts according to the concentration. Afterwards, the RNA pool was constructed for high-throughput sequencing, and based on the small RNA sequencing, the differentially expressed microRNAs were identified. Furthermore, their target gene prediction and enrichment analyses were carried out. The results showed that a total of 229 known miRNAs and 391 putative novel miRNAs were identified, which provided valuable resources for further study on the regulatory mechanism of miRNAs in silver carp under hypoxia stress. The authors verified 16 differentially expressed miRNAs by qRT-PCR, and the results were consistent with small RNA sequencing (sRNA-seq). The predicted target genes number of differentially expressed miRNAs was 25,146. GO and KEGG functional enrichment analysis showed that these target genes were mainly involved in the adaption of hypoxia stress in silver carp through biological regulation, catalytic activity and apoptosis. This study provides references for further study of interaction between miRNAs and target genes, and the basic data for the response mechanism under hypoxia stress in silver carp.
缺氧是鱼类养殖中的严重应激之一,可导致鱼体发生生理和形态变化,对鱼造成损伤甚至死亡。鲢鱼是一种重要的经济鱼类,在中国分布广泛。微小RNA是一类内源性非编码单链小RNA,参与细胞发育、免疫反应及基因表达调控。本研究将鲢鱼置于密闭容器中通过自然耗氧进行缺氧处理。采集心脏、脑、肝脏和鳃的样本,分别从这四种组织中提取的总RNA按浓度等量混合。之后构建RNA池进行高通量测序,基于小RNA测序鉴定差异表达的微小RNA。此外,对其靶基因进行预测和富集分析。结果表明,共鉴定出229个已知微小RNA和391个假定的新微小RNA,为进一步研究缺氧胁迫下鲢鱼中微小RNA的调控机制提供了有价值的资源。作者通过qRT-PCR验证了16个差异表达的微小RNA,结果与小RNA测序(sRNA-seq)一致。差异表达微小RNA的预测靶基因数量为25,146个。GO和KEGG功能富集分析表明,这些靶基因主要通过生物调控、催化活性和细胞凋亡参与鲢鱼对缺氧胁迫的适应。本研究为进一步研究微小RNA与靶基因之间的相互作用提供了参考,也为鲢鱼缺氧胁迫响应机制提供了基础数据。