Citrobacter portucalensis Sb-2 contains a metalloid resistance determinant transmitted by Citrobacter phage Chris1

柠檬酸杆菌 亚砷酸盐 生物 基因 拉伤 微生物学 噬菌体 流动遗传元素 类金属 遗传学 基因组 大肠杆菌 化学 肠杆菌科 金属 无机化学 有机化学 解剖
作者
Yanshuang Yu,Zhenchen Xie,JiGang Yang,Ruixiang Yang,Yuanping Li,Yong-Guan Zhu,Yanlin Zhao,Qiue Yang,Jichen Chen,Hend A. Alwathnani,Renwei Feng,Christopher Rensing,Martin Herzberg
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:443 (Pt A): 130184-130184 被引量:12
标识
DOI:10.1016/j.jhazmat.2022.130184
摘要

Bacterial adaptation to extreme environments is often mediated by horizontal gene transfer (HGT) via genetic mobile elements. Nevertheless, phage-mediated HGT conferring bacterial arsenic resistance determinants has rarely been investigated. In this study, a highly arsenite and antimonite resistant bacterium, Citrobacter portucalensis strain Sb-2, was isolated, and genome analysis showed that several putative arsenite and antimonite resistance determinants were flanked or embedded in prophages. Furthermore, an active bacteriophage carrying one of the ars clusters (arsRDABC arsR-yraQ/arsP) was obtained and sequenced. These genes encoding putative arsenic resistance determinants were induced by arsenic and antimony as demonstrated by RT-qPCR, and one gene arsP/yraQ of the ars cluster was shown to give resistance to MAs(III) and Rox(III), thereby showing function. Here, we were able to directly show that these phage-mediated arsenic and antimony resistances play a significant role in adapting to As- and Sb-contaminated environments. In addition, we demonstrate that this phage is responsible for conferring arsenic and antimony resistances to C. portucalensis strain Sb-2.
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