Effects of dietary Nisin on growth performance, immune function and gut health of broilers challenged by Clostridium perfringens

产气荚膜梭菌 乳酸链球菌素 空肠 免疫系统 封堵器 基础(医学) 地穴 生物 动物科学 回肠 肠绒毛 微生物学 肉鸡 肠粘膜 饲料转化率 乳酸 益生菌 梭菌 内科学 内分泌学 生物化学 体重 细菌 医学 免疫学 紧密连接 遗传学 抗菌剂 胰岛素
作者
Hua Yuan,Guangdong Bai,Yu Lin,Yu Xilong,Qinghui Yang,Renkai Dou,Hao Sun,Zeyu Zhao,Zhongyu Li,Zhihui Chen,Liangmei Xu
出处
期刊:Journal of Animal Science [Oxford University Press]
卷期号:102 被引量:2
标识
DOI:10.1093/jas/skae017
摘要

Abstract Nisin (Ni) is a polypeptide bacteriocin produced by lactic streptococci (probiotics) that can inhibit the majority of gram-positive bacteria, and improve the growth performance of broilers, and exert antioxidative and anti-inflammatory properties. The present study investigated the potential preventive effect of Nisin on necrotic enteritis induced by Clostridium perfringens (Cp) challenge. A total of 288 Arbor Acres broiler chickens of 1-d-olds were allocated using 2 × 2 factorial arrangement into four groups with six replicates (12 chickens per replicate), including: (1) control group (Con, basal diet), (2) Cp challenge group (Cp, basal diet + 1.0 × 108 CFU/mL Cp), (3) Ni group (Ni, basal diet + 100 mg/kg Ni), and (4) Ni + Cp group (Ni + Cp, basal diet + 100 mg/kg Ni + 1.0 × 108 CFU/mL Cp). The results showed that Cp challenge decreased the average daily gain (ADG) of days 15 to 21 (P<0.05) and increased interleukin-6 (IL-6) content in the serum (P < 0.05), as well as a significant reduction in villus height (VH) and the ratio of VH to crypt depth (VCR) (P<0.05) and a significant increase in crypt depth (CD) of jejunum (P<0.05). Furthermore, the mRNA expressions of Occludin and Claudin-1 were downregulated (P<0.05), while the mRNA expressions of Caspase3, Caspase9, Bax, and Bax/Bcl-2 were upregulated (P<0.05) in the jejunum. However, the inclusion of dietary Ni supplementation significantly improved body weight (BW) on days 21 and 28, ADG of days 15 to 21 (P<0.05), decreased CD in the jejunum, and reduced tumor necrosis factor-α (TNF-α) content in the serum (P<0.05). Ni addition upregulated the mRNA levels of Claudin-1 expression and downregulated the mRNA expression levels of Caspase9 in the jejunum (P<0.05). Moreover, Cp challenge and Ni altered the cecal microbiota composition, which manifested that Cp challenge decreased the relative abundance of phylum Fusobacteriota and increased Shannon index (P<0.05) and the trend of phylum Proteobacteria (0.05<P<0.10), while Ni addition increased the relative abundance of phylum Cyanobacteria (P<0.05). In conclusion, the results demonstrated that the addition of Ni effectively mitigated the negative impact of Cp challenge-induced the damage of growth performance and intestine in broilers via reducing inflammatory responses and intestinal apoptosis and modulating cecal microbial composition.
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