首页> 外文期刊>Fish & Shellfish Immunology >Screening of intestinal probiotics and the effects of feeding probiotics on the growth, immune, digestive enzyme activity and intestinal flora of Litopenaeus vannamei
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Screening of intestinal probiotics and the effects of feeding probiotics on the growth, immune, digestive enzyme activity and intestinal flora of Litopenaeus vannamei

机译:肠道益生菌的筛选以及饲料益生菌对Litopenaeus Vannamei的生长,免疫,消化酶活性和肠菌群的影响

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In this experiment, 426 strains were isolated from the intestinal tract of Litopenaeus vannamei, and 11 strains showed strong digestive enzyme production activity and antagonistic effect against common bacterial pathogens of shrimp. After hemolysis activity test and drug sensitivity test, 2 candidate probiotics with good bacteriostatic activity, strong enzyme production ability and relatively sensitive to antibiotics were screened out, and were identified by 16s rDNA molecular identification and Biolog-System as Enterobacter hominis (E3) and lactobacillus (L3). First, the biological characteristics of 2 candidate probiotics were studied. The optimum growth conditions of E3: temperature, 30 degrees C; pH, 8.0; NaCl, 2.5%; bovine bile salt, 0.15%; and the optimum growth conditions of L3: temperature, 40 degrees C; pH, 6.0; NaCl, 0.5%; bovine bile salt, 0.0015%. Secondly, a 28-day feeding experiment was conducted using probiotic concentration of 10(7) CFU g(-1) to determine the changes of the activities of blood related immune enzymes (SOD, PPO, ACP, POD, CAT, LZM) and intestinal digestive enzymes (NP, AL, LPS) during the feeding process of shrimp, the results showed that during the course of feeding, the activities of immune enzyme and digestive enzyme of shrimp fed with probiotics showed an increasing trend, and the growth rate of body weight of shrimp was higher than that of control group. After feeding, the cumulative mortality of probiotics groups were significantly lower than that of the control group after WSSV infection. And the mid-gut of L. vannamei was observed by electron microscope, the results showed that the intestinal mucosa was tight and the epithelium cells showed an active secretory state in probiotics group. Finally, the intestinal microbial communities of shrimp were compared and analyzed by using Biolog-ECO method in the later period of feeding, the results showed: compared with the control group, the average color change rate of the experimental group fed with probiotics increased significantly, indicating that probiotics enhanced the intestinal microorganism activity; The ability of intestinal microorganism to utilize carbon source was significantly enhanced in the experimental group, which indicated that the digestive enzyme secreted by probiotics could improve the digestion and absorption rate of prawn feed, thus promoting the rapid growth of shrimp; The Shannon index, Simpson index and McIntosh index of probiotics groups showed significant difference in 1st and 5th days, but tended to be the same in the 10th day, the results showed that probiotics could maintain in L. vannamei intestines at least 5 days.
机译:在该实验中,从Litopenaeus vannamei的肠道中分离了426株,11株菌向虾常见的细菌病原体显示出强烈的消化酶产生活性和拮抗作用。在溶血活性测试和药物敏感性试验后,筛选出具有良好抑菌活性的候选益生菌,筛选出强烈的酶生产能力和对抗生素相对敏感的,并被16S rDNA分子鉴定和生物系统作为肠杆菌(E3)和乳酸杆菌鉴定(l3)。首先,研究了2个候选益生菌的生物学特征。 E3:温度,30摄氏度的最佳生长条件; pH,8.0; NaCl,2.5%;牛胆汁,0.15%;和L3:温度,40℃的最佳生长条件; pH,6.0; NaCl,0.5%;牛胆汁盐,0.0015%。其次,使用10(7)CFU G(-1)的益生菌浓度进行了28天的饲养实验,以确定血液相关免疫酶活性(SOD,PPO,ACP,POD,CAT,LZM)活性的变化肠消化酶(NP,Al,LPS)在虾的进料过程中,结果表明,在喂养过程中,用益生菌饲喂的虾的免疫酶和消化酶的活性表现出越来越大的趋势和生长速率虾的体重高于对照组。喂养后,益生菌组的累积死亡率明显低于WSSV感染后对照组的累积死亡率。通过电子显微镜观察到L.Vannamei的半肠道,结果表明,肠粘膜紧密,上皮细胞在益生菌组中显示出活性分泌状态。最后,通过使用Biolog-Eco方法在饲养后进行比较和分析虾的肠道微生物群落,结果表明:与对照组相比,益生菌喂养的实验组的平均颜色变化率显着增加,表明益生菌增强了肠道微生物活动;在实验组中,利用碳源的肠道微生物的能力显着增强,这表明益生菌分泌的消化酶可以改善虾饲料的消化和吸收率,从而促进虾的快速生长;益生菌组的香农指数,辛普森指数和麦金托斯指数在第1和第5天显示出显着差异,但在第10天往往是相同的,结果表明,益生菌可以在L.Vannamei肠中保持至少5天。

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