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首页> 外文期刊>Aquaculture Nutrition >Effects of dietary Bacillus natto supplementation on growth performance and the growth-related gene/microRNA expression in the skeletal muscle of grass carp (Ctenopharyngodon idella)
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Effects of dietary Bacillus natto supplementation on growth performance and the growth-related gene/microRNA expression in the skeletal muscle of grass carp (Ctenopharyngodon idella)

机译:膳食Bacillus Natto对草鲤鱼骨骼肌生长性能和生长相关基因/ microRNA表达的影响(Ctenopharyncodon Idella)

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摘要

In this study, Bacillus natto NT was evaluated for use as a probiotic supplement in the feeds on the growth performance and the growth-related genes' and microRNAs' (miRNAs) expression in the skeletal muscle of grass carp (Ctenopharyngodon idella). Grass carps (ave. wt. 43.96 +/- 0.27 g) were fed diets supplemented with 1.87 9 10 9 (Bn1), 3.73 +/- 10(9) (Bn2), 5.60 x 10(9) (Bn3), 7.47 x 10(9) (Bn4) and 9.33 x 10(9) (Bn5) B. natto NT cells per 100 g feed for 56 days. The control group (BnC) was not supplemented with the B. natto NT. The fish of Bn3, Bn4 and Bn5 groups displayed better growth performance and lower feed conversion ratio (FCR) than the other groups (P 0.05). Compared with the fish of BnC group, miR-1a, miR-181a, miR-23a and miR-206 expressions increased (P 0.05), and the myostatin and myocyte enhancer factor C (MEF2C) mRNAs were down-regulated (P 0.05) in the fish of Bn4 and Bn5 groups. The specific growth rate analysis and apparent expressional regulation of the growth-related miRNAs and genes stimulated by B. natto suggest the potential application of B. natto in improving the growth performance on the grass carps.
机译:在本研究中,评价芽孢杆菌NTTO NTO NT作为在草鲤(Ctenopharyncodon Idella)骨骼肌中生长性能和生长相关基因的饲料中的益生菌补充剂中的益生菌补充剂。草鲤鱼(AVE。WT。43.96 +/- 0.27g)喂食补充有1.87 9 10 9(BN1),3.73 +/- 10(9)(BN2),5.60×10(9)(BN3),7.47 X 10(9)(BN4)和9.33×10(9)(BN5)B.每100g纳豆NT细胞饲料56天。对照组(BNC)没有补充B. Natto NT。 BN3,BN4和BN5组的鱼​​比另一组显示出更好的生长性能和较低的饲料转化率(FCR)(P <0.05)。与BNC组的鱼类相比,miR-1a,miR-181a,miR-23a和miR-206表达增加(p <0.05),肌抑素和肌细胞增强子因子c(mef2c)mrnas被下调(p & 0.05)在BN4和BN5组的鱼​​中。 B. Natto刺激的生长相关miRNA和基因的特异性生长速率分析和表观表达调控提出了B.纳豆在提高草鲤鱼的生长性能方面的潜在应用。

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