Gut microbes consume host energy and reciprocally provide beneficial factors to sustain a symbiotic relationship with the host

肠道菌群 免疫系统 生物 代谢组 人口 炎症 寄主(生物学) 脾脏 新陈代谢 免疫 脂质代谢 微生物学 免疫学 生物化学 生态学 代谢物 医学 环境卫生
作者
Ying Wu,Liang Peng,Pengya Feng,Rong Han,Aman Khan,Sourabh Kulshreshtha,Zhenmin Ling,Pu Liu,Xiangkai Li
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:904: 166773-166773 被引量:10
标识
DOI:10.1016/j.scitotenv.2023.166773
摘要

The gut microbes thrive by utilizing host energy and, in return, provide valuable benefits, akin to the symbiotic relationship. To study the mutualistic association between the gut microbiota and host, a range of gut microbe populations (85 %, 66 %, 45 % and 38 % at the normal level) with comparable structures were constructed in broiler model. The results revealed that reductions in gut microbial population led to decreased energy consumption, resulting in increased host weight (10.26 %, 30.88 %, 17.65 % and - 12.77 %, respectively). Fecal metabolome revealed that among 85 % and 66 % of the normal population level, the gut microbes downregulated the immune-associated pathways of tryptophan metabolism and catecholamine biosynthesis, while the level of fatty acid oxidation was upregulated at 45 %. In the host, the concentration of gut microbes contributed to regulate functions related to lipid biosynthesis (from glycerophosphoserines to glycerophosphoethanolamines (9.63 %, 12.20 %, 6.66 % and 47.75 %) and glycerophosphocholines (10.78 %, 36.51 %, 2.00 % and 87.11 %)) and inflammation responses (methionine and betaine metabolism). From 85 % to 45 % of gut microbes, broiler showed an inhibited immunity (thymus gland, spleen, SIgG and IgA) and increased low-level inflammation response (ALT and T-SOD). However, at 38 %, the immune indexes exhibited an increase (thymus gland, spleen, SIgG, and IgA increased by 8.67 %, 8.50 %, 20.87 %, and 29.43 %, respectively), indicating the host lipid accumulation and inflammation response were negatively correlated with the immune reaction. Collectively, the gut microbiota maintains a symbiotic relationship with the host through the secretion of beneficial substances to interact with the host.
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