4.7 Article

Using unessential sulfur amino acids to overcome methionine deficient diets on rice field eel (Monopterus albus)

期刊

AQUACULTURE
卷 533, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.aquaculture.2020.736196

关键词

Methionine; Taurine; Cystine; Cysteamine hydrochloride; Monopterus albus

资金

  1. National Natural Science Foundation of China [31572626]

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The study showed that dietary methionine, taurine, cysteamine hydrochloride, and cystine can improve amino acid metabolism and muscle growth in rice field eel. Cysteamine hydrochloride and cystine partially overcome methionine deficiency.
An eight-week feeding trial was conducted using sulfur amino acids to overcome methionine deficient diets on rice field eel Monopterus albus (initial weight 25.12 +/- 0.51 g). Six isonitrogenous and isoenergetic experimental formulations included 55% fish meal group (FM, a reference), 22% fish meal group (D-0), and the rest four diets (22% fish meal) supplemented with 2 g/kg of taurine (D-Tau), methionine (D-Met), cysteamine hydrochloride (D-Csh) and cystine (D-Cys), respectively. Compared with FM, the growth performance of M. albus was markedly declined in D-0 (P < 0.05); while the growth performance of M. albus in D-Met, D-Csh and D-Cys were remarkably higher than D-0 (P < 0.05), and these groups were indifference with FM (P > 0.05). Compared with FM, the highest amount of hepatic vacuoles was observed in D o , while the proportions of vacuoles were lower in D-Met, D(Csh )and D-Cys groups than that in D-0, dietary sulfur amino acids also have improved hepatic transaminase and the ability of amino acid metabolism. Compared with FM, muscular texture, density and diameters of muscle fibres were significantly decreased in D-0 (P < 0.05); while muscular texture were significantly increased in D-Csh and D-Cys (P < 0.05). Compared with D-0, dietary sulfur amino acids improved diameters of the muscle fibres. Myocyte myogenic regulatory (Mrf4, MyoD2, Myog and Mrf4) and myocyte enhancer factors (MEF2b and MEF2c)( )mRNA expression in D-0 were markedly lower than that in FM (P < 0.05), compared with D-0, the expression of Mrf4 and MEF2b in D-Met were significantly up regulated (P < 0.05); the expressions of Mrf4, MyoD2 and MEF2b in D-Csh were markedly higher than that in D-0 (P < 0.05), MyoD2, Myog, MEF2b and MEF2c in D-Cys also were remarkably higher than that in D-0 (P < 0.05). Overall, our study indicated that dietary methionine, taurine, cysteamine hydrochloride and cystine in low fish meal diet could improve amino acids metabolism and muscle growth for M. albus, moreover, cysteamine hydrochloride and cystine overcame methionine deprivation partly.

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