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Modulation of key enzymes of glycolysis, gluconeogenesis, amino acid catabolism, and TCA cycle of the tropical freshwater fish Labeo rohita fed gelatinized and non-gelatinized starch diet

  • Vikas Kumar
  • , N. P. Sahu
  • , A. K. Pal
  • , Shivendra Kumar
  • , Amit Kumar Sinha
  • , Jayant Ranjan
  • , Kartik Baruah

Publication: Contribution to journalJournal articlepeer-review

Abstract

A 60-day experiment was conducted to study the effect of dietary gelatinized (G) and non-gelatinized (NG) starch on the key metabolic enzymes of glycolysis (hexokinase, glucokinase, pyruvate kinase, and lactate dehydrogenase), gluconeogenesis (glucose-6 phosphatase and fructose-1,6 bisphosphatase), protein metabolism (aspartate amino transferase and alanine amino transferase), and TCA cycle (malate dehydrogenase) in Labeo rohita juveniles. In the analysis, 234 juveniles (2.53 +/- A 0.04 g) were randomly distributed into six treatment groups each with three replicates. Six semi-purified diets containing NG and G cornstarch, each at six levels of inclusion (0, 20, 40, 60, 80, and 100) were prepared viz., T1 (100% NG, 0% G starch), T2 (80% NG, 20% G starch), T3 (60% NG, 40% G starch), T4 (40% NG, 60% G starch), T5 (20% NG, 80% G starch), and T6 (0% NG, 100% G starch). Dietary G:NG starch ratio had a significant (P 0.05) influenced by the type of dietary starch. The alanine amino transferase activity in both liver and muscle showed an increasing trend with the decrease in the dietary G level. The liver and muscle malate dehydrogenase activities were lowest in the T6 group and highest in the T1 group. Results suggest that NG (100%) starch diet significantly induced more the enzyme activities of amino acid metabolism, gluconeogenesis, and TCA cycle, whereas partial or total replacement of raw starch by gelatinized starch increased the glycolytic enzyme activity.
Original languageEnglish
Pages (from-to)491-499
Number of pages9
JournalFish Physiology and Biochemistry
Volume36
Issue number3
DOIs
Publication statusPublished - 2010
Externally publishedYes

Keywords

  • Starch
  • Labeo rohita
  • Hexokinase
  • Glucokinase
  • Pyruvate kinase
  • Lactate dehydrogenase
  • Glucose 6 phosphatase
  • Fructose-1,6 bisphosphatase
  • Aspartate amino transferase
  • Alanine amino transferase
  • Malate dehydrogenase

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