Regulation of glycogen metabolism in gills and liver of the euryhaline tilapia (Oreochromis mossambicus) during acclimation to seawater

Author:

Chang Joshua Chia-Hsi1,Wu Su-Mei2,Tseng Yung-Che3,Lee Yi-Chun2,Baba Otto4,Hwang Pung-Pung1

Affiliation:

1. Institute of Cellular and Organismic Biology, Academia Sinica, Nankang,Taipei, Taiwan, Republic of China

2. Department of Aquatic Biosciences, National Chiayi University, Chiayi,Taiwan, Republic of China

3. Institute of Zoology, National Taiwan University, Taipei, Taiwan, Republic of China

4. Department of Hard Tissue Engineering, Tokyo Medical and Dental University, Tokyo, Japan

Abstract

SUMMARY Glucose, which plays a central role in providing energy for metabolism, is primarily stored as glycogen. The synthesis and degradation of glycogen are mainly initialized by glycogen synthase (GS) and glycogen phosphorylase (GP),respectively. The present study aimed to examine the glycogen metabolism in fish liver and gills during acute exposure to seawater. In tilapia(Oreochromis mossambicus) gill, GP, GS and glycogen were immunocytochemically colocalized in a specific group of glycogen-rich (GR)cells, which are adjacent to the gill's main ionocytes, mitochondrion-rich(MR) cells. Na+/K+-ATPase activity in the gills, protein expression and/or activity of GP and GS and the glycogen content of the gills and liver were examined in tilapia after their acute transfer from freshwater(FW) to 25‰ seawater (SW). Gill Na+/K+-ATPase activity rapidly increased immediately after SW transfer. Glycogen content in both the gills and liver were significantly depleted after SW transfer, but the depletion occurred earlier in gills than in the liver. Gill GP activity and protein expression were upregulated 1–3 h post-transfer and eventually recovered to the normal level as determined in the control group. At the same time, GS protein expression was downregulated. Similar changes in liver GP and GS protein expression were also observed but they occurred later at 6–12 h post-transfer. In conclusion, GR cells are initially stimulated to provide prompt energy for neighboring MR cells that trigger ion-secretion mechanisms. Several hours later, the liver begins to degrade its glycogen stores for the subsequent energy supply.

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

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