Effects of acute hyperglycemia stress on plasma glucose, glycogen content, and expressions of glycogen synthase and phosphorylase in hybrid grouper (Epinephelus fuscoguttatus ♀ × E. lanceolatus ♂)

被引:0
作者
Songlin Li
Chunyan Sang
Jiacan Zhang
Naisong Chen
Ziqiang Li
Pengfei Jin
Xuxiong Huang
机构
[1] Shanghai Ocean University,National Demonstration Center on Experiment Teaching of Fisheries Science
[2] Qingdao National Laboratory for Marine Science and Technology,Laboratory for Marine Fisheries Science and Food Production Processes
[3] Shanghai Ocean University,Research Centre of the Agriculture Ministry on Environmental Ecology and Fish Nutrition
[4] Shanghai Ocean University,Shanghai Collaborative Innovation for Aquatic Animal Genetics and Breeding
来源
Fish Physiology and Biochemistry | 2018年 / 44卷
关键词
Glucose tolerant test; Glycogen content; Glycogen metabolism; Hybrid grouper;
D O I
暂无
中图分类号
学科分类号
摘要
In the present study, the hybrid grouper (Epinephelus fuscoguttatus ♀ × E. lanceolatus ♂), a typical carnivorous fish, was chosen as a model to investigate the regulation of glycogen metabolism owning to its characteristic of glucose intolerance. The variation of plasma glucose concentration, glycogen content, and expressions of glycogen metabolism-related genes under acute hyperglycemia stress were measured. Following glucose administration, plasma glucose concentration increased immediately, and the glucose level remained elevated for at least 12 h. The prolonged glucose clearance and hyperglycemia revealed glucose intolerance of this fish species. Meanwhile, the glycogen content in both liver and muscle changed significantly during the clearance of plasma glucose. However, the peak value of hepatic glycogen (1 and 12 h post injection) appeared much earlier than muscle (3 and 24 h post injection). To investigate the regulation of glycogen metabolism from molecular aspect, the complete coding sequence (CDS) of glycogen synthase (GS) and glycogen phosphorylase (GP) in both liver and muscle types were obtained, encoding a polypeptide of 704, 711, 853, and 842 amino acid residues, respectively. The results of gene expression analysis revealed that the expression of liver type and muscle type GS was significantly higher than other time points at 12 and 24 h post glucose injection, respectively. Meanwhile, the highest expressions of GP in both liver and muscle types occurred at 24 h post glucose injection. The response of GS and GP to glucose load may account for the variation of glycogen content at the transcriptional level to some extent.
引用
收藏
页码:1185 / 1196
页数:11
相关论文
共 148 条
[11]  
Médale F(1989)) quantified with stable isotopes Gen Comp Endocr. 73 374-381
[12]  
Navarro I(1990)Nutritional regulation of hepatic glucose metabolism in fish J Exp Zool Part A 254 55-62
[13]  
Panserat S(1981)Insulin and IGF-I response to a glucose load in European sea bass ( Bull Jpn Soc Sci Fish 47 761-764
[14]  
Vachot C(1996)) juveniles Aquac Nutr 2 117-120
[15]  
Kaushik S(2002)Glycemic and insulin responses in white sea bream J World Aquacult Soc 33 466-477
[16]  
Gutiérrez J(1991), after intraperitoneal administration of glucose Am J Physiol-Reg I 261 R609-R613
[17]  
Chen YJ(1995)Metabolic changes in Brycon cephalus ( Aquac Nutr 1 69-75
[18]  
Wang XY(2002)) during post-feeding and fasting Aquac Nutr 8 175-194
[19]  
Pi RR(2014)Insulin and the regulation of glycogen metabolism and gluconeogenesis in American eel hepatocytes PLoS One 9 e105548-59
[20]  
Feng JY(2001)Control of key carbohydrate-metabolizing enzymes by insulin and glucagon in freshly isolated hepatocytes of the Marine teleost Gen Comp Endocr 122 48-554