Molecular analysis of long-term biofilm formation on PVC and cast iron surfaces in drinking water distribution system  被引量:8

Molecular analysis of long-term biofilm formation on PVC and cast iron surfaces in drinking water distribution system

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作  者:Ruyin Liu Junge Zhu Zhisheng Yu DevRaj Joshi Hongxun Zhang Wenfang Lin Min Yang 

机构地区:[1]College of Environmental and Resource Sciences, University of Chinese Academy of Sciences [2]Institute of Microbiology,Chinese Academy of Sciences [3]Research Center for Eco-Environmental Sciences,Chinese Academy of Sciences

出  处:《Journal of Environmental Sciences》2014年第4期865-874,共10页环境科学学报(英文版)

基  金:supported by the National Natural Science Foundation of China(No.51208501);the Key Research Program of the Chinese Academy of Sciences(No.KZZD-EW-09-1);the Program of the Chinese Academy of Sciences(No.Y025014EA2)

摘  要:To understand the impacts of different plumbing materials on long-term biofilm formation in water supply system, we analyzed microbial community compositions in the bulk water and biofilms on faucets with two different materials-polyvinyl chloride (PVC) and cast iron, which have been frequently used for more thanlO years. Pyrosequencing was employed to describe both bacterial and eukaryotic microbial compositions. Bacterial communities in the bulk water and biofilm samples were significantly different from each other. Specific bacterial populations colonized on the surface of different materials. Hyphomicrobia and corrosion associated bacteria, such as Acidithiobacillus spp., Aquabacterium spp., Limnobacter thiooxidans, and Thiocapsa spp., were the most dominant bacteria identified in the PVC and cast iron biofilms, respectively, suggesting that bacterial colonization on the material surfaces was selective. Mycobacteria and Legionella spp. were common potential pathogenic bacteria occurred in the biofilm samples, but their abundance was different in the two biofilm bacterial communities. In contrast, the biofilm samples showed more similar eukaryotic communities than the bulk water. Notably, potential pathogenic fungi, i.e., Aspergillus spp. and Candida parapsilosis, occurred in similar abundance in both biofilms. These results indicated that microbial community, especially bacterial composition was remarkably affected by the different pipe materials (PVC and cast iron).To understand the impacts of different plumbing materials on long-term biofilm formation in water supply system, we analyzed microbial community compositions in the bulk water and biofilms on faucets with two different materials-polyvinyl chloride (PVC) and cast iron, which have been frequently used for more thanlO years. Pyrosequencing was employed to describe both bacterial and eukaryotic microbial compositions. Bacterial communities in the bulk water and biofilm samples were significantly different from each other. Specific bacterial populations colonized on the surface of different materials. Hyphomicrobia and corrosion associated bacteria, such as Acidithiobacillus spp., Aquabacterium spp., Limnobacter thiooxidans, and Thiocapsa spp., were the most dominant bacteria identified in the PVC and cast iron biofilms, respectively, suggesting that bacterial colonization on the material surfaces was selective. Mycobacteria and Legionella spp. were common potential pathogenic bacteria occurred in the biofilm samples, but their abundance was different in the two biofilm bacterial communities. In contrast, the biofilm samples showed more similar eukaryotic communities than the bulk water. Notably, potential pathogenic fungi, i.e., Aspergillus spp. and Candida parapsilosis, occurred in similar abundance in both biofilms. These results indicated that microbial community, especially bacterial composition was remarkably affected by the different pipe materials (PVC and cast iron).

关 键 词:drinking waterbiofilm surface material pyrosequencing microbial community 

分 类 号:TU991.2[建筑科学—市政工程]

 

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