Biogeography of the large intestinal mucosal and luminal microbiome in cynomolgus macaques with depressive-like behavior

毛螺菌科 微生物群 厚壁菌 生物 拟杆菌 医学 生理学 内科学 生物信息学 遗传学 细菌 16S核糖体RNA
作者
Teng Teng,Gerard Clarke,Michaël Maes,Yuanliang Jiang,Jun Wang,Xuemei Li,Bangmin Yin,Yajie Xiang,Li Fan,Xueer Liu,Jie Wang,Shouhuan Liu,Yunqing Huang,Júlio Licinio,Xinyu Zhou,Peng Xie
出处
期刊:Molecular Psychiatry [Springer Nature]
卷期号:27 (2): 1059-1067 被引量:30
标识
DOI:10.1038/s41380-021-01366-w
摘要

Abstract Most previous studies in the pathophysiology of major depressive disorder (MDD) focused on fecal samples, which limit the identification of the gut mucosal and luminal microbiome in depression. Here, we address this knowledge gap. Male cynomolgus macaques ( Macaca fascicularis ) were randomly assigned to a chronic unpredictable mild stress (CUMS) group, or to an unstressed control group. Behavioral tests were completed in both groups. At endpoint, microbe composition of paired mucosal and luminal samples from cecum, ascending, transverse, and descending colons were determined by 16S ribosomal RNA gene sequencing. The levels of 34 metabolites involved in carbohydrate or energy metabolism in luminal samples were measured by targeted metabolomics profiling. CUMS macaques demonstrated significantly more depressive-like behaviors than controls. We found differences in mucosal and luminal microbial composition between the two groups, which were characterized by Firmicutes and Bacteriodetes at the phylum level, as well as Prevotellaceae and Lachnospiraceae at the family level. The majority of discriminative microbes correlated with the depressive-like behavioral phenotype. In addition, we found 27 significantly different microbiome community functions between the two groups in mucosa, and one in lumen, which were mainly involved in carbohydrate and energy metabolism. A total of nine metabolites involved in these pathways were depleted in CUMS animals. Together, CUMS macaques with depressive-like behaviors associated with distinct alterations of covarying microbiota, carbohydrate and energy metabolism in mucosa and lumen. Further studies should focus on the mucosal and luminal microbiome to provide a deeper spatiotemporal perspective of microbial alterations in the pathogenesis of MDD.
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