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Subchronic oral mercury caused intestinal injury and changed gut microbiota in mice

Mercury(编程语言) 失调 细胞凋亡 肠道菌群 生物 微生物学 基因 生理学 免疫学 生物化学 计算机科学 程序设计语言
作者
Yulan Zhao,Changming Zhou,Cong Wu,Xiaoquan Guo,Guoliang Hu,Qingpeng Wu,Zheng Xu,Guyue Li,Huabin Cao,Lin Li,Vincent Latigo,Pei Liu,Sufang Cheng,Ping Liu
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:721: 137639-137639 被引量:56
标识
DOI:10.1016/j.scitotenv.2020.137639
摘要

Mercury is a key global pollutant, yet the mechanism by which mercury-exposure causes intestinal injury is not clear, we aimed to investigate the mechanism of intestinal injury and gut microbiota changes caused by mercury-exposure. Twelve Kunming mice were divided into two groups (n = 6), and the two groups were treated with 0 mg/L and 80 mg/L HgCl2 in drinking water for 90 days respectively. Our results showed that mercury-exposure prominently effected body weight gain and glucose levels. The mercury-exposed mice showed intestinal injury, which was diagnosed by Histopathological Examination and Transmission Electron Microscopy. Meanwhile, RT-PCR indicated that mercury-exposure significantly increased the expression of pro-apoptotic genes including Bax, JNK, ASK1, caspase3 and TNF-α, and significantly decreased the expression of the anti-apoptotic gene Bcl-2. Furthermore, high-throughput sequencing analysis showed that at the genus level some microbial populations including Coprococcus, Oscillospira and Helicobacter were significantly increased whereas some microbial populations including Lgnatzschineria, Salinicoccus and Bacillus were significantly decreased. Moreover, PICRUSt analysis revealed potential metabolic changes. Correlation analysis indicated that microorganisms were significantly correlated with apoptotic gene expression. In summary, our results indicated that mercury-exposure affected the growth and development of mice, induced intestinal microbiota dysbiosis and metabolic disorder, and aggravated apoptosis in mice.
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