首页> 外文期刊>Aquaculture Reports >Effects of DL-methionyl-DL-methionine supplementation on growth performance, immune and antioxidative responses of white leg shrimp (Litopenaeus vannamei) fed low fishmeal diet
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Effects of DL-methionyl-DL-methionine supplementation on growth performance, immune and antioxidative responses of white leg shrimp (Litopenaeus vannamei) fed low fishmeal diet

机译:DL-METIONYL-DL-蛋氨酸对白腿虾(Litopenaeus Vannamei)生长性能,免疫和抗氧化反应的影响喂养低鱼粉饮食

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The study was conducted to investigate the effects of DL-Methionyl-DL-Methionine (Met-Met) (a dipeptide of two DL-methionine molecules) on growth performance, immune and antioxidative responses for Litopenaeus vannamei fed low fishmeal diet. Tested treatments consisted of positive control diet (PC) with 20 % fishmeal or 7 % fishmeal (basal diet) diets supplemented with different levels of Met-Met (0.00 %, 0.1 %, 0.15 %, 0.20 %, 0.25 % and 0.3 %). A total of 1680 shrimp (0.071 ± 0.001 g) were randomly distributed into 42 tanks (6 repetitions / each diet, 40 shrimp / tank) and fed for 91 days. Results showed that reduction of fishmeal from 20 % down to 7 % did not affect the survival rate of shrimp. Weight gain rate and feed efficiency were significantly decreased in the basal group compared to the PC group, while these were significantly increased with the increasing of Met-Met into the diets up to 0.15 % compared to the basal group. Malondialdehyde in 0.15 % Met-Met and PC groups were significantly lower than the basal group. Shrimp fed the diet with 0.15 % Met-Met had the highest phenol oxidase content and peroxidase and total antioxidant capacity. The highest values of intestinal wall thickness were observed in 0.15 % Met-Met and PC groups. The similar morphology of the hepatopancreas was observed between 0.15 % and PC groups. Overall, the present study indicated that Met-Met could improve adverse effects of Met deficiency on growth caused by low fishmeal. Low fishmeal diet with 0.15 % Met-Met (0.65 %–0.66 % Met and 1.14 % Met Cys) is beneficial to the health of intestine and hepatopancreas, improves immunity and antioxidative capacity and promotes the growth of L. Vannamei .
机译:进行该研究以研究DL-MET-氨基-DL-蛋氨酸(MET-MET)(二甲基氨基氨基分子的二肽)对Litopenaeus Vannamei喂养低鱼粉饮食的生长性能,免疫和抗氧化反应的影响。经测试的治疗组成,由阳性对照饮食(PC)组成,含有20%的鱼粉或7%鱼粉(基础饮食)饮食,其补充有不同的Met-Met水平(0.00%,0.1%,0.15%,0.20%,0.25%和0.3%) 。总共1680虾(0.071±0.001g)随机分布到42个罐中(6重复/每次饮食,40虾/罐),并喂91天。结果表明,减少5%降至7%的鱼炸弹不会影响虾的存活率。与PC组相比,基础组体重增加率和饲料效率显着降低,而与基团相比,这些达到饮食的达到饮食的增加显着增加。 0.15%Met-Met和PC组中的丙二醛显着低于基础组。饲喂饮食的虾含量为0.15%,具有最高的酚氧化酶含量和过氧化物酶和总抗氧化能力。在0.15%MET-MET和PC组中观察到肠壁厚度的最高值。在0.15%和PC组之间观察到肝癌的类似形态。总体而言,本研究表明,MET-MET可以提高患者缺陷对低鱼粉引起的增长的不利影响。低鱼粉饮食,达到0.15%欧足(0.65%-0.66%达到0.65%-0.66%和1.14%MET CYS)对肠和肝癌的健康有益,提高免疫力和抗氧化能力,促进L.Vannamei的生长。

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