论文
论文标题: Skin transcriptome and physiological analyses reveal the metabolic and immune responses of yellow catfish (Pelteobagrus fulvidraco) to acute hypoxia
作者: Wang, Man; Li, Bo; Wang, Jie; Xie, Songguang; Zhang, Lei
出版刊物: AQUACULTURE
出版日期: JAN 15
出版年份: 2022
卷/期:
DOI: 10.1016/j.aquaculture.2021.737277
论文摘要: The skin of yellow catfish (Pelteobagrus fulvidraco) is scaleless, and therefore, represents the first line of defense against a wide variety of environmental stressors. However, the role of the skin in response to hypoxia is poorly understood. We aimed to examine the physiological and histological responses of the skin of yellow catfish to acute hypoxia and identify the genes regulating these responses. Healthy fish (weight: 12.75 +/- 1.99 g) were randomly assigned to experimental tanks and subject hypoxic conditions (1.02 +/- 0.08 mg/L) for 0, 6, 24, 48, and 96 h. The results showed that the physiological indices, including metabolic indices (LDH, SDH, GLU and LA) and immunological indices (LZM, IgM, and C3), showed similar trends in response to hypoxia. Histological examination revealed that the skins of the fish exposed to acute hypoxia had varying degrees of structural and tissue damage. Moreover, we identified 1638 differentially expressed genes (DEGs) from the skin tissues of the fish, among which 37 DEGs were common in all comparison groups. KEGG analysis showed that the DEGs were enriched in material metabolism (including carbohydrate and amino acid), energy metabolism, signal transduction, immune system, and apoptosis. We observed that the genes involved in carbohydrate, amino acid, and energy metabolism were significantly upregulated at 6, 24, and 48 h; however, genes related to the immune system and apoptosis were significantly downregulated at 6 and 24 h. Glycolysis/gluconeogenesis was the primary enriched pathways in response to hypoxia at 6 and 24 h. Hypoxia at 96 h was characterized by the overexpression of genes related to the immune system pathways and downregulation of genes related to the carbohydrate and energy metabolism pathways. The genes and signal pathways identified here provide new insights into the molecular mechanisms of the adaptation of yellow catfish to hypoxia.
== 实验室与学会 ==
  • == 实验室与学会 ==
  • 水产品种创制与高效养殖全国重点实验室
  • 中国科学院藻类生物学重点实验室
  • 农业部淡水养殖病害防治重点实验室
  • 武汉白暨豚保护基金会
  • 湖北省海洋湖沼学会
  • 中国动物学会原生动物学分会
  • 中国动物学会斑马鱼分会
  • 湖北省暨武汉动物学会
  • 中国水产学会鱼病学专业委员会
  • 中国鱼类学会
== 平台建设 ==
  • == 平台建设 ==
  • “一带一路”海域赤潮数据库
  • 国家水生生物种质资源库
  • 国家斑马鱼资源中心
  • 中国科学院淡水藻种库
  • 中国科学院武汉生命科学大型仪器区域中心
  • 湿地生态系统观测研究野外站联盟
  • 中国科学院水生生物研究所分析测试中心
  • 中国科学院超级计算武汉分中心
  • 水生生物博物馆
== 相关网站推荐 ==
  • == 相关网站推荐 ==
  • 中国科学院
  • 农业农村部
  • 科学技术部
  • 生态环境部
  • 国家自然科学基金委员会
  • 中国科学院武汉分院
  • 湖北省科学技术厅
  • 湖北省生态环境厅
  • 湖北省农业农村厅