School of Environmental Science and Engineering, Tianjin University, Tianjin 300350, China.
MOE Key Laboratory of Pollution Processes and Environmental Criteria, College of Environmental Science and Engineering, Nankai University, Tianjin 300350, China.
Chemosphere. 2018 Jun;200:201-208. doi: 10.1016/j.chemosphere.2018.02.119. Epub 2018 Feb 21.
The ocean is the final place where pollutants generated by human activities are deposited. As a result, the long-range transport of the ocean can facilitate the diffusion of terrestrial contaminants, including ARGs. However, to our knowledge, little research has been devoted to discussing the content change of terrestrial ARGs and the reason for the change in coastal area. This study established various microcosms, in which seawater and freshwater were mixed at different ratio to simulate the environmental conditions of different regions in coastal areas. Four ARGs were quantified, and 16S pyrosequencing was conducted. The results showed that the terrestrial ARGs influenced the concentration of the corresponding ARGs in coastal areas, and the content change pattern of each ARG was distinct. The influence of salinity on the ARG content was limited in most cases. Moreover, most dominant bacteria from freshwater had significant positive correlation (p < 0.05) with selected ARGs, except for bla. The dominant bacteria in freshwater diminished dramatically in microcosms with a high proportion of seawater. Freshwater may have a strong impact on the bacteria composition of seawater, and the materials from freshwater may prompt the growth of some bacteria (include potential hosts of ARGs) in coastal area.
海洋是人类活动产生的污染物最终沉积的地方。因此,海洋的长距离传输可以促进包括 ARGs 在内的陆地污染物的扩散。然而,据我们所知,很少有研究致力于讨论沿海地区陆地 ARGs 的含量变化及其变化的原因。本研究建立了各种微宇宙,其中海水和淡水以不同的比例混合,以模拟沿海地区不同区域的环境条件。定量检测了 4 种 ARGs,并进行了 16S 焦磷酸测序。结果表明,陆地 ARGs 影响了沿海地区相应 ARGs 的浓度,并且每个 ARG 的含量变化模式都不同。在大多数情况下,盐度对 ARG 含量的影响是有限的。此外,除了 bla 之外,来自淡水的大多数优势细菌与选定的 ARGs 呈显著正相关(p<0.05)。在高比例海水的微宇宙中,淡水的优势细菌急剧减少。淡水可能对海水的细菌组成有强烈影响,淡水的物质可能会促使沿海地区的一些细菌(包括 ARGs 的潜在宿主)生长。