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复合益生菌可缓解镉诱导的肉鸡肠道功能障碍和微生物群紊乱。

Compound probiotics alleviate cadmium-induced intestinal dysfunction and microbiota disorders in broilers.

作者信息

Yang Shuqiu, Xiong Zhonghua, Xu Tianfang, Peng Chengcheng, Hu Aiming, Jiang Wenjuan, Xiong Zhiwei, Wu Yunhui, Yang Fan, Cao Huabin

机构信息

Jiangxi Provincial Key Laboratory for Animal Health, Institute of Animal Population Health, College of Animal Science and Technology, Jiangxi Agricultural University, No. 1101 Zhimin Avenue, Economic, and Technological Development District, Nanchang 330045, Jiangxi, PR China.

Jiangxi Agricultural Technology Extension Center, Nanchang 330096, Jiangxi, PR China.

出版信息

Ecotoxicol Environ Saf. 2022 Apr 1;234:113374. doi: 10.1016/j.ecoenv.2022.113374. Epub 2022 Mar 7.

Abstract

Cadmium (Cd), a common environmental pollutant, seriously threatens the health of intestine. This research aimed to investigate the effects of compound probiotics (CP) on intestinal dysfunction and cecal microbiota dysregulation induced by Cd in broilers. A total of 240 1-day-old Arbor Acre (AA) broilers were randomly assigned to four groups. After 120 days of feeding, the jejunum tissues and cecal contents were sampled for jejunum histopathological observation, the intestinal barrier and inflammatory factors related mRNA and proteins examinations, and intestinal microbiota analysis. The results showed that Cd could cause jejunal villus damage and inflammatory cells infiltration, down-regulate the mRNA levels of intestinal barrier related genes (ZO-1, ZO-2, ZO-3, Claudin1, Claudin3, Claudin4, Occludin, and E-cadherin) and inflammatory factor related genes (IL-1β, IL-18, IFN-γ, NF-κB), and the protein levels of Claudin1, ZO-1, Occludin, but up-regulate the Claudin2, IL-2, IL-4 and IL-10 mRNA levels. However, the addition of CP could effectively improve these changes. In addition, 16S rRNA gene sequencing analysis showed that compared with the Cd group, supplementation CP increased the abundance of Lactobacillales, Clostridiales, Firmicutes, together with regulations on the pathways responsible for energy metabolism, translation and amino acid metabolism. In conclusion, CP could improve intestinal barrier damage and intestinal microbiota disturbance induced by Cd.

摘要

镉(Cd)作为一种常见的环境污染物,严重威胁肠道健康。本研究旨在探究复合益生菌(CP)对镉诱导的肉鸡肠道功能障碍和盲肠微生物群失调的影响。总共240只1日龄的艾维茵(AA)肉鸡被随机分为四组。饲养120天后,采集空肠组织和盲肠内容物,用于空肠组织病理学观察、肠道屏障及炎症因子相关mRNA和蛋白检测以及肠道微生物群分析。结果表明,镉可导致空肠绒毛损伤和炎性细胞浸润,下调肠道屏障相关基因(ZO-1、ZO-2、ZO-3、Claudin1、Claudin3、Claudin4、Occludin和E-钙黏蛋白)和炎症因子相关基因(IL-1β、IL-18、IFN-γ、NF-κB)的mRNA水平,以及Claudin1、ZO-1、Occludin的蛋白水平,但上调Claudin2、IL-2、IL-4和IL-10的mRNA水平。然而,添加复合益生菌可有效改善这些变化。此外,16S rRNA基因测序分析表明,与镉组相比,添加复合益生菌增加了乳杆菌目、梭菌目、厚壁菌门的丰度,并对能量代谢、翻译和氨基酸代谢相关途径产生调控作用。总之,复合益生菌可改善镉诱导的肠道屏障损伤和肠道微生物群紊乱。

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