Mao Huiling, Ji Wenwen, Yun Yan, Zhang Yanfang, Li Zhefeng, Wang Chong
College of Animal Science and Technology, College of Veterinary Medicine, Zhejiang A & F University, Lin'an, China.
Key Laboratory of Applied Technology on Green-Eco-Healthy Animal Husbandry of Zhejiang Province, Hangzhou, China.
Front Microbiol. 2023 Jul 27;14:1216534. doi: 10.3389/fmicb.2023.1216534. eCollection 2023.
Growth-retarded lambs would reduce the economic incomes of sheep farming. Nutritional interventions are supposed to promote gastrointestinal health and the compensatory growth of growth-retarded lambs. This study evaluated the effects of probiotic supplementation on the growth performance, plasma characteristics and ruminal bacterial community of growth-retarded lambs.
Twenty-four 50-days old male Hu lambs, including 8 healthy lambs (13.2 ± 1.17 kg) and 16 growth-retarded lambs (9.46 ± 0.81 kg), were used in this study. The 8 healthy lambs were fed the basal diet and considered the positive control (GN), and the other 16 growth-retarded lambs were randomly assigned into 2 groups (basal diet without probiotic [negative control, GR] and basal diet supplementation with 1 g/kg concentrate feed probiotic [GRP]), with each group having 4 replicate pens. The feeding trial lasted for 60 days with 7 days for adaptation.
The results showed that dietary supplementation with probiotic increased ( < 0.05) the average daily gain and dry matter intake of growth-retarded lambs. For growth-retarded lambs, supplementation with probiotic increased ( < 0.05) the activities of superoxide dismutase and glutathione peroxidase, as well as the concentrations of growth hormone and immunoglobulin G. Furthermore, the highest ( < 0.05) concentrations of interleukin-6, interferon-gamma and tumor necrosis factor alpha were observed in the GR group. The concentrations of total volatile fatty acids and acetate in growth-retarded lambs were increased by probiotic supplementation ( < 0.05). The relative abundances of and were lower ( < 0.05) in growth-retarded lambs. However, probiotic supplementation increased ( < 0.05) the relative abundances of these three genera.
These results indicate that dietary supplementation with probiotic are promising strategies for improving the growth performance of growth-retarded lambs by enhancing immunity and altering the ruminal microbiota.
生长发育迟缓的羔羊会降低养羊业的经济收入。营养干预措施旨在促进胃肠道健康以及生长发育迟缓羔羊的补偿性生长。本研究评估了补充益生菌对生长发育迟缓羔羊生长性能、血浆特征和瘤胃细菌群落的影响。
本研究使用了24只50日龄的雄性湖羊羔羊,其中包括8只健康羔羊(13.2±1.17千克)和16只生长发育迟缓的羔羊(9.46±0.81千克)。8只健康羔羊饲喂基础日粮,作为阳性对照(GN),另外16只生长发育迟缓的羔羊随机分为2组(不添加益生菌的基础日粮组[阴性对照,GR]和每千克精饲料添加1克益生菌的基础日粮组[GRP]),每组有4个重复栏。饲养试验持续60天,其中7天为适应期。
结果表明,日粮中添加益生菌可提高(<0.05)生长发育迟缓羔羊的平均日增重和干物质摄入量。对于生长发育迟缓的羔羊,补充益生菌可提高(<0.05)超氧化物歧化酶和谷胱甘肽过氧化物酶的活性,以及生长激素和免疫球蛋白G的浓度。此外,GR组中白细胞介素-6、干扰素-γ和肿瘤坏死因子α的浓度最高(<0.05)。补充益生菌可提高(<0.05)生长发育迟缓羔羊的总挥发性脂肪酸和乙酸盐浓度。生长发育迟缓羔羊中 和 的相对丰度较低(<0.05)。然而,补充益生菌可提高(<0.05)这三个属的相对丰度。
这些结果表明,日粮中添加益生菌是通过增强免疫力和改变瘤胃微生物群来提高生长发育迟缓羔羊生长性能的有前景的策略。