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Sodium butyrate reduces ammonia production in the cecum of laying hens by regulating ammonia-producing bacteria

盲肠 发酵 细菌 丁酸盐 食品科学 丁酸钠 化学 微生物学 大肠杆菌 微生物代谢 生物 动物科学 生物化学 生态学 基因 有机化学 遗传学
作者
Shuo Liu,Jiaxin Hu,Linfei Li,Si-Cheng Xing,Yiwen Yang,Xindi Liao
出处
期刊:Poultry Science [Elsevier]
卷期号:102 (5): 102241-102241
标识
DOI:10.1016/j.psj.2022.102241
摘要

Sodium butyrate is a commonly used feed additive and can reduce ammonia (NH3) emissions from laying hens, but the mechanism of this effect is unknown. In this study, the sodium butyrate and cecal content of Lohmann pink laying hens were measured, and in vitro fermentation experiments and NH3-producing bacteria coculture experiments were carried out to explore the relationship between NH3 emissions and its associated microbiota metabolism. Sodium butyrate was found to significantly reduce NH3 emission from the cecal microbial fermentation of Lohmann pink laying hens (P < 0.05). The concentration of NO3--N in the fermentation broth of the sodium butyrate-supplemented group increased significantly, and the concentration of NH4+-N decreased significantly (P < 0.05). Moreover, sodium butyrate significantly reduced the abundance of harmful bacteria and increased the abundance of beneficial bacteria in the cecum. The culturable NH3-producing bacteria consisted mainly of Escherichia and Shigella, such as Escherichia fergusonii, Escherichia marmotae and Shigella flexnerii. Among them, E. fergusonii had the highest potential for NH3 production. The coculture experiment showed that sodium butyrate can significantly downregulate the expression of the lpdA, sdaA, gcvP, gcvH and gcvT genes of E. fergusonii (P < 0.05), thus reducing the NH3 emission produced by the bacteria during metabolism. In general, sodium butyrate regulated NH3-producing bacteria to reduce NH3 production in the cecum of laying hens. These results are of great significance for NH3 emission reduction in the layer breeding industry and for future research.
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