Aquaculture Research Group, Centre of Marine Sciences (CCMAR), 8005-139Faro, Portugal.
Universidade do Algarve, 8005-139Faro, Portugal.
Br J Nutr. 2022 Jan 28;127(2):202-213. doi: 10.1017/S0007114521001008. Epub 2021 Mar 22.
Commercial diets for tilapia juveniles contain high levels of plant protein sources. Soybean meal has been utilised due to its high protein content; however, soy-based diets are limited in methionine (Met) and require its supplementation to fulfil fish requirements. dl-Methinone (dl-Met) and Ca bis-methionine hydroxyl analogue (MHA-Ca) are synthetic Met sources supplemented in aquafeeds, which may differ in biological efficiency due to structural differences. The present study evaluated the effect of both methionine sources on metabolism and growth of Nile tilapia. A growth trial was performed using three isonitrogenous and isoenergetic diets, containing plant ingredients as protein sources: DLM and MHA diets were supplemented on equimolar levels of Met, while REF diet was not supplemented. Hepatic free Met and one-carbon metabolites were determined in fish fed for 57 d. Metabolism of dl-Met and MHA was analysed by an in vivo time-course trial using 14C-labelled tracers. Only dl-Met supplementation significantly increased final body weight and improved feed conversion and protein efficiency ratios compared with the REF diet. Our findings indicate that Met in DLM fed fish follows the transsulphuration pathway, while in fish fed MHA and REF diets it is remethylated. The in vivo trial revealed that 14C-dl-Met is absorbed faster and more retained than 14C-MHA, resulting in a greater availability of free Met in the tissues when fish is fed with DLM diet. Our study indicates that dietary dl-Met supplementation improves growth performance and N retention, and that Met absorption and utilisation are influenced by the dietary source in tilapia juveniles.
商业罗非鱼幼鱼饲料含有高水平的植物蛋白源。由于其高蛋白含量,豆粕已被用于饲料中;然而,基于大豆的饲料在蛋氨酸(Met)方面是有限的,需要补充以满足鱼类的需求。DL-蛋氨酸(dl-Met)和 Ca 双蛋氨酸羟基类似物(MHA-Ca)是补充在水产饲料中的合成 Met 来源,由于结构差异,其生物学效率可能不同。本研究评估了两种蛋氨酸来源对尼罗罗非鱼代谢和生长的影响。使用三种等氮和等能的饲料进行生长试验,其中植物成分作为蛋白质来源:DLM 和 MHA 饲料以等摩尔水平补充 Met,而 REF 饲料则没有补充。在饲喂 57 天后测定鱼体肝脏中的游离 Met 和一碳代谢物。通过使用 14C 标记示踪剂的体内时程试验分析了 dl-Met 和 MHA 的代谢。与 REF 饲料相比,只有 dl-Met 补充显著增加了终末体重,改善了饲料转化率和蛋白质效率比。我们的研究结果表明,在饲喂 DLM 的鱼中,Met 遵循转硫途径,而在饲喂 MHA 和 REF 饲料的鱼中,Met 被重新甲基化。体内试验表明,14C-dl-Met 比 14C-MHA 吸收更快,保留更多,当鱼饲喂 DLM 饲料时,组织中游离 Met 的可用性更大。本研究表明,日粮 dl-Met 补充可改善生长性能和氮保留,并且 Met 的吸收和利用受罗非鱼幼鱼日粮来源的影响。