Dietary Bacillus spp. supplementation to both sow and progenies improved post-weaning growth rate, gut function, and reduce the pro-inflammatory cytokine production in weaners challenged with Escherichia coli K88.

IF 4.9 Q1 MICROBIOLOGY Animal microbiome Pub Date : 2024-01-24 DOI:10.1186/s42523-024-00290-y
Vetriselvi Sampath, Sungbo Cho, Jinuk Jeong, Seyoung Mun, Choon Han Lee, Rafael Gustavo Hermes, Apichaya Taechavasonyoo, Natasja Smeets, Susanne Kirwan, Kyudong Han, In Ho Kim
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Abstract

Background: The use of probiotics (PRO) in late gestation sow and their impact on progenies' performance during the post-weaning stage has received more attention from the researchers recently. This study aimed to analyze the effect of probiotic mixture (Bacillus subtilis and Bacillus licheniformis) on both sow and offspring's performance.

Methods: First experiment (Exp.1) was conducted from the 100th day of gestation through to post-weaning. A total of twenty sows and their litters were assigned to one of two dietary treatments, Control (CON) based diet and PRO- CON+ 0.05% probiotic mixture. Dietary treatments were arranged in a split-plot pattern with sow and weaner treatment (CON and PRO diet) as the main and sub plot. Exp.2. E. coli challenge study was carried out two weeks after weaning with 40 piglets. Dietary treatments remained same while all pigs were orally administered with a 1.5 ml suspension of 1010 CFU of K88 strain of E. coli per ml.

Result: PRO group sow showed significantly decreased backfat thickness difference and body weight difference after farrowing and at the end of weaning d21. The nutrient digestibility of PRO group sows was significantly higher at the end of weaning. Moreover, piglets born from PRO group sow showed higher weaning weight and tend to increase average daily gain at the end of d21. The addition of mixed probiotic in sow and weaner diet had suppressed the production of TNF-α and interleukin-6 in E. coli challenged pigs. The phyla Firmicutes and Bacteroidetes in E. coli -challenged pigs were highly abundant while, the relative abundance of clostridium_sensu_stricto_1 at genus level was significantly reduced by the inclusion of probiotic in both the sow and weaner diet. Also, taxonomic distribution analysis showed significantly lower prevalence of Clostridium and Brachyspira and higher prevalence of Lactobacilli in E. coli-challenged pigs that were born from PRO group sow and fed CON and PRO weaner diet.

Conclusion: This study reveals that the inclusion of 0.05% mixed probiotics (Bacillus spp.) to both sow and their progenies diet would be more beneficial to enhance the post-weaning growth rate, gut health, and immune status of E. coli challenged pigs.

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母猪和后代膳食中添加枯草芽孢杆菌可提高断奶后的生长速度和肠道功能,并减少断奶仔猪受到大肠杆菌 K88 挑战时产生的促炎细胞因子。
背景:妊娠晚期母猪使用益生菌(PRO)及其对断奶后后代生产性能的影响近年来越来越受到研究人员的关注。本研究旨在分析益生菌混合物(枯草芽孢杆菌和地衣芽孢杆菌)对母猪和后代生产性能的影响:第一项实验(Exp.1)从母猪妊娠第 100 天开始至断奶后结束。共有 20 头母猪及其产下的仔猪被分配到两种日粮处理中的一种,即基于对照(CON)的日粮和 PRO- CON+ 0.05% 益生菌混合物。日粮处理以母猪和断奶仔猪处理(CON 和 PRO 日粮)为主、副小区的分割小区模式进行。实验 2:在断奶两周后对 40 头仔猪进行大肠杆菌挑战研究。所有猪只均口服每毫升含 1010 CFU K88 大肠杆菌菌株的 1.5 毫升悬浮液:结果:PRO 组母猪的背膘厚度差和体重差在产后和断奶后 d21 均有明显下降。在断奶末期,PRO 组母猪的营养消化率明显提高。此外,PRO 组母猪产下的仔猪断奶重较高,断奶日龄末的平均日增重也呈上升趋势。在母猪和断奶仔猪日粮中添加混合益生菌可抑制大肠杆菌挑战猪的 TNF-α 和白细胞介素-6 的产生。在母猪和断奶仔猪日粮中添加益生菌后,受大肠杆菌挑战的猪体内的固有菌门和类杆菌门的含量很高,而梭状芽孢杆菌_sensu_stricto_1属的相对含量则显著降低。此外,分类学分布分析表明,在大肠杆菌感染的猪只中,PRO 组母猪所产、饲喂 CON 组和 PRO 组断奶仔猪日粮的梭状芽孢杆菌和 Brachyspira 的流行率明显较低,而乳酸杆菌的流行率较高:本研究表明,在母猪及其后代的日粮中添加 0.05% 的混合益生菌(芽孢杆菌)更有利于提高大肠杆菌感染猪断奶后的生长速度、肠道健康和免疫状态。
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