伯克氏菌KK1质粒pkk5的基因岛赋予了江苏卡瓦洛菌抗砷性

IF 5.9 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Lijie Huang , Yuhan Yang , Yingxin Xue , Shilin Hu , Tian Liang , Jun Ye , Ximei Xue
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引用次数: 0

摘要

微生物在砷的生物转化及其在环境中的存在形式中起着关键作用。本研究利用从某废弃农药加工厂分离的甲基对硫磷降解菌江苏卡瓦洛菌对砷的积累和转化进行了分析。三价有机砷化合物在江杉体内积累的程度大于五价有机砷化合物。江南水杉染色体中含有一个砷基因岛,其GC含量明显低于基因组中砷基因岛的含量,表明该基因岛是通过水平基因转移获得的。基因岛编码的蛋白序列与伯克霍尔德氏菌KK1质粒pkk5对应序列的相似性约为90% ~ 99%。分析了不同砷种在江南蓟马体内的生物转化。结果表明,单甲基larsenic acid (MAs(V))在极少量的中间单甲基larsenic acid (MAs(III))的作用下迅速去甲基化为砷酸盐,而MAs(III)在很大程度上被氧化为MAs(V),尽管在江水c.s中存在可能导致MAs(III)有氧去甲基化的arsI基因。此外,二甲基拉森酸部分去甲基化为砷酸盐。操纵子从质粒向其他细菌的水平基因转移代表了对特定环境的适应。该研究为认识砷的生物地球化学循环提供了新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A gene island from plasmid pkk5 of Burkholderia sp. KK1 confers arsenic resistance to Caballeronia jiangsuensis

A gene island from plasmid pkk5 of Burkholderia sp. KK1 confers arsenic resistance to Caballeronia jiangsuensis
Microorganisms play a critical role in the biotransformation of arsenic and the form which it exists in the environment. In this study, a methyl parathion-degrading bacterium Caballeronia jiangsuensis, isolated from an abandoned pesticide manufacturing plant, was used to analyze arsenic accumulation and transformation. The accumulation of trivalent organoarsenic compounds in C. jiangsuensis occurred to a greater extent than that of their pentavalent counterparts. The chromosome of C. jiangsuensis contains an arsenic gene island whose GC content is significantly lower than that of the genome, suggesting that the island was acquired via horizontal gene transfer. There was approximately 90 %-99 % similarity between the proteins encoded by the gene island and the corresponding sequence of the plasmid pkk5 from Burkholderia sp. KK1. The biotransformation of different arsenic species by C. jiangsuensis was subsequently analyzed. The results revealed that monomethylarsenic acid (MAs(V)) was rapidly demethylated to arsenate with very small amounts of intermediate monomethylarsonous acid (MAs(III)), whereas MAs(III) was largely oxidized to MAs(V) despite the occurrence of the gene arsI probably responsible for aerobic demethylation of MAs(III) in C. jiangsuensis. In addition, dimethylarsenic acid was partly demethylated to arsenate. Horizontal gene transfer of ars operon from a plasmid to other bacteria represents an adaptation to a specific environment. This study provides a new perspective for understanding arsenic biogeochemical cycling.
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来源期刊
Journal of Environmental Sciences-china
Journal of Environmental Sciences-china 环境科学-环境科学
CiteScore
13.70
自引率
0.00%
发文量
6354
审稿时长
2.6 months
期刊介绍: The Journal of Environmental Sciences is an international journal started in 1989. The journal is devoted to publish original, peer-reviewed research papers on main aspects of environmental sciences, such as environmental chemistry, environmental biology, ecology, geosciences and environmental physics. Appropriate subjects include basic and applied research on atmospheric, terrestrial and aquatic environments, pollution control and abatement technology, conservation of natural resources, environmental health and toxicology. Announcements of international environmental science meetings and other recent information are also included.
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