瘤胃球菌
拟杆菌
厚壁菌
维管菌
拟杆菌
普雷沃菌属
阿克曼西亚
医学
肠道菌群
微生物学
梭杆菌门
生物
蔷薇花
双歧杆菌
食物过敏
梭菌
毛螺菌科
乳酸菌
微生物群
链球菌
蛋白质细菌
敏化
免疫学
过敏
失调
益生菌
免疫系统
免疫球蛋白E
细菌
遗传学
16S核糖体RNA
作者
Chien‐Chang Chen,Kun-Jei Chen,Man‐Shan Kong,Hao-Hsun Chang,Jing‐Long Huang
摘要
Abstract Background We hypothesized that food sensitization ( FS ) in children could be linked to specific gut microbiota. The aim of our study is to quantify and evaluate differences in gut microbiota composition between children with FS and healthy controls. Methods A case–control study of 23 children with FS and 22 healthy children was performed. Individual microbial diversity and composition were analyzed via parallel barcoded 454 pyrosequencing targeting the 16S rRNA gene hypervariable V3–V5 regions. Results The children with FS exhibited lower diversity of both the total microbiota (p = 0.01) and the bacterial phylum Bacteroidetes (p = 0.02). In these children, the number of Bacteroidetes bacteria was significantly decreased and that of Firmicutes were significantly increased compared with the healthy children. At the genus level, we observed significant increases in the numbers of Sphingomonas, Sutterella, Bifidobacterium, Collinsella, Clostridium sensu stricto, Clostridium IV , Enterococcus, Lactobacillus, Roseburia, Faecalibacterium, Ruminococcus, Subdoligranulum , and Akkermansia in the FS group. We also found significant decreases in the numbers of Bacteroides , Parabacteroides , Prevotella , Alistipes , Streptococcus , and Veillonella in this group. Furthermore, linear discriminant analysis ( LDA ) coupled with effect size measurements revealed the most differentially abundant taxa (increased abundances of Clostridium IV and Subdoligranulum and decreased abundances of Bacteroides and Veillonella ), which could be used to identify FS . Conclusions Our results showed that FS is associated with compositional changes in the gut microbiota. These findings could be useful for developing strategies to control the development of FS or atopy by modifying the gut microbiota.
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