Journal of Fish Biology · 1995 · 97 citations · 30 references
NutritionFood DeprivationCaloric RestrictionAquatic Food SystemBody CompositionGolden PerchBioenergeticsBiochemical NutritionPublic HealthEndogeneous Energy StoresHealth SciencesAnimal PhysiologyMuscle LipidAnimal NutritionSomatic TissuesBiologyEnergy MetabolismForagingPhysiologyFeed IntakeMetabolismComparative Physiology
Adult golden perch Macquaria ambigua were fed to satiety, starved for up to 210 days, or starved for 150 days then fed to satiety for 60 days to investigate the utilization of energy stores in response to food deprivation and re‐feeding. Golden perch sequentially mobilize energy from hepatic tissue, extra‐hepatic lipid, and finally muscle components in response to food deprivation. The relative size of the liver was significantly reduced by 30 days after the onset of food deprivation due to the simultaneous mobilization of lipid, protein and glycogen reserves. These stores were renewed rapidly within 30 days by satiety feeding. Mobilization of lipid stores in perivisceral fat bodies occurred between 30 and 60 days of food deprivation. These deposits were also renewed upon re‐feeding, although not as rapidly as liver reserves. The glycogen content of the epaxial muscle was reduced by the 60th day of food deprivation but subsequently increased indicating the mobilization of other energy reserves. The concentration of muscle lipid decreased after 90 days of food deprivation. The only significant response in body composition observed in the fish fed to satiety throughout the study was an increase in the relative size of the perivisceral fat bodies. The results of this study suggest that golden perch are well adapted to cope with extended periods of food deprivation, storing energy as perivisceral fat when food is readily available and having a clearly sequential process for mobilizing energy when food is scarce which largely protects the integrity of the musculature.
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