In situ analysis of variations of arsenicals, microbiome and transcriptome profiles along murine intestinal tract

盲肠 转录组 微生物群 粪便 生物 微生物学 代谢组 回肠 失调 肠道菌群 罗伊乳杆菌 戒毒(替代医学) 乳酸菌 基因表达 代谢组学 细菌 化学 基因 免疫学 生物化学 遗传学 生态学 生物信息学 医学 病理 有机化学 替代医学
作者
Xin Liu,Jiating Wang,Hongyu Deng,Xiaoting Zhong,Chengji Li,Yu Luo,Linkang Chen,Bin Zhang,Dongbin Wang,Yixiang Huang,Jingjing Zhang,Lianxian Guo
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:427: 127899-127899 被引量:15
标识
DOI:10.1016/j.jhazmat.2021.127899
摘要

In situ-based studies on microbiome-host interactions after arsenic exposure are few. In this study, the variations in arsenics, microbiota, and host genes along murine intestinal tracts were determined after arsenic exposure for two months. There was a gradual increase in the concentration of total As (CtAs) in feces from ileum to colon, whereas CtAs in the corresponding tissues were relatively stable. Differences in arsenic levels between feces and tissues were significantly different. The proportion of arsenite (iAsⅢ) in feces gradually decreased, however, it gradually increased in tissues. After arsenic exposure, the diversity and abundance of microbial community and networks in each segment were significantly dysregulated. Notably, 328, 579 and 90 differently expressed genes were detected in ileum, cecum, and colon, respectively. In addition, microbiome and transcriptome analyses showed a significant correlation between the abundance of Faecalibaculum and expressions of Plb1, Hspa1b, Areg and Duoxa2 genes. This implies that they may be involved in arsenic biotransformation. In vitro experiments using Biofidobactrium and Lactobacillus showed that probiotics have arsenic transformation abilities. Therefore, gut microbiome may modulate arsenic accumulation, excretion and detoxification along the digestive tract. Moreover, the abundance and diversity of gut microbiome may be related to the changes in host health.
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