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植物乳杆菌 15-1 和低聚果糖对肉鸡应对致病性大肠杆菌 O78 挑战的反应的影响。

Effects of Lactobacillus plantarum 15-1 and fructooligosaccharides on the response of broilers to pathogenic Escherichia coli O78 challenge.

机构信息

College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha, Hunan, China.

Academy of National Food and Strategic Reserves Administration, Beijing, China.

出版信息

PLoS One. 2019 Jun 13;14(6):e0212079. doi: 10.1371/journal.pone.0212079. eCollection 2019.

Abstract

One-day-old broilers were randomly allocated to five treatment groups: basal diet and orally administered sterile saline (negative control, n-control); basal diet challenged with E. coli O78 (positive control, p-control); basal diet supplemented with 1×108 CFU/kg L. plantarum 15-1 and challenged with E. coli O78 (LP); basal diet supplemented with 5 g/kg fructooligosaccharides (FOS) and challenged with E. coli O78 (FOS); and basal diet supplemented with both L. plantarum 15-1 and FOS and challenged with E. coli O78 (LP+FOS). The broilers in the LP, FOS, and LP+FOS groups displayed a decrease of crypt depth at day 14 compared with the control groups. Furthermore, at days 14 and 21, the broilers in the LP group exhibited reduced serum levels of diamine oxidase (DAO) compared with the p-control group (p<0.05), and the broilers in the LP+FOS group showed increased serum concentrations of IgA and IgG relative to both control groups and decreased DAO levels compared with the p-control group (p<0.05). Moreover, the LP group displayed higher levels of acetic acid and total short-chain fatty acids (SCFAs) compared with the p-control group at day 14 (p<0.05), and the FOS group showed higher levels of valeric acid and total SCFAs at day 21 (p<0.05). The LP+FOS group also displayed a higher level of butyric acid at day 14 (p<0.05). In conclusion, dietary supplementation with FOS improved the growth performance, while supplementation with L. plantarum 15-1 and FOS improved intestinal health by increasing the levels of SCFAs and mitigating the damage caused by E. coli O78, thus preventing intestinal damage and enhancing the immune response.

摘要

一日龄肉鸡被随机分配到五个处理组

基础日粮和口服无菌生理盐水(阴性对照,n 对照);基础日粮攻毒大肠杆菌 O78(阳性对照,p 对照);基础日粮添加 1×108CFU/kg 植物乳杆菌 15-1 并攻毒大肠杆菌 O78(LP);基础日粮添加 5g/kg 低聚果糖(FOS)并攻毒大肠杆菌 O78(FOS);以及基础日粮同时添加植物乳杆菌 15-1 和 FOS 并攻毒大肠杆菌 O78(LP+FOS)。与对照组相比,LP、FOS 和 LP+FOS 组的肉鸡在第 14 天的隐窝深度降低。此外,在第 14 天和第 21 天,LP 组的肉鸡血清二胺氧化酶(DAO)水平低于 p 对照组(p<0.05),LP+FOS 组的肉鸡血清 IgA 和 IgG 浓度均高于对照组,DAO 水平低于 p 对照组(p<0.05)。此外,与 p 对照组相比,LP 组在第 14 天的乙酸和总短链脂肪酸(SCFA)水平较高(p<0.05),FOS 组在第 21 天的戊酸和总 SCFA 水平较高(p<0.05)。LP+FOS 组在第 14 天的丁酸水平也较高(p<0.05)。综上所述,添加 FOS 可改善生长性能,而添加植物乳杆菌 15-1 和 FOS 可通过增加 SCFA 水平并减轻大肠杆菌 O78 的损害来改善肠道健康,从而防止肠道损伤并增强免疫反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbf6/6563962/2fdccc4a775b/pone.0212079.g001.jpg

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