Yang Xue, Tai Yurong, Ma Yuhao, Xu Zihan, Hao Jiaqi, Han Deping, Li Junying, Deng Xuemei
Key Laboratory of Animal Genetics, Breeding and Reproduction of the Ministry of Agriculture, College of Animal Science and Technology, China Agricultural University, Beijing, China.
College of Veterinary Medicine, China Agricultural University, Beijing, China.
Front Microbiol. 2022 Oct 20;13:984654. doi: 10.3389/fmicb.2022.984654. eCollection 2022.
Cecal microflora plays a key role in the production performance and immune function of chickens. White Leghorn (WL) is a well-known commercial layer line chicken with high egg production rate. In contrast, Silky Fowl (SF), a Chinese native chicken variety, has a low egg production rate, but good immune performance. This study analyzed the composition of cecal microbiota, metabolism, and gene expression in intestinal tissue of these varieties and the correlations among them. Significant differences were observed in the cecal microbes: was significantly enriched in WL, whereas and were significantly enriched in SF. Carbohydrate biosynthesis and metabolism pathways were significantly upregulated in WL cecum, which might provide more energy to the host, leading to persistently high levels of egg production. The higher abundance in SF increased volicitin content, enhanced α-linolenic acid metabolism, and significantly negatively correlated with metabolites of propanoate metabolism and carbohydrate metabolism. Genes related to lipid metabolism, immunity, and melanogenesis were significantly upregulated in the SF cecum, regulating lipid metabolism, and participating in the immune response, while genes related to glucose metabolism and bile acid metabolism were expressed at higher levels in WL, benefiting energy support. This study provided a mechanism for intestinal microorganisms and metabolic pathways to regulate chicken egg-laying performance and immunity.
盲肠微生物群在鸡的生产性能和免疫功能中起着关键作用。白来航鸡(WL)是一种著名的商业蛋鸡品种,产蛋率高。相比之下,中国本土鸡品种丝羽乌骨鸡(SF)产蛋率低,但免疫性能良好。本研究分析了这些品种盲肠微生物群的组成、代谢以及肠道组织中的基因表达及其之间的相关性。在盲肠微生物中观察到显著差异: 在WL中显著富集,而 和 在SF中显著富集。WL盲肠中碳水化合物生物合成和代谢途径显著上调,这可能为宿主提供更多能量,从而导致产蛋水平持续较高。SF中较高的 丰度增加了挥发性脂肪酸含量,增强了α-亚麻酸代谢,并且与丙酸代谢和碳水化合物代谢的代谢产物显著负相关。与脂质代谢、免疫和黑色素生成相关的基因在SF盲肠中显著上调,调节脂质代谢并参与免疫反应,而与葡萄糖代谢和胆汁酸代谢相关的基因在WL中表达水平较高,有利于能量支持。本研究为肠道微生物和代谢途径调节鸡产蛋性能和免疫力提供了一种机制。