Microbial source tracking: State of the science

被引:279
作者
Simpson, JM [1 ]
Santo Domingo, JW [1 ]
Reasoner, DJ [1 ]
机构
[1] US EPA, Off Res & Dev, Water Supply Water Resources Div, Cincinnati, OH 45268 USA
关键词
D O I
10.1021/es026000b
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Although water quality,of the Nation's lakes, rivers and streams has been monitored for many decades and especially since the passage of the Clean Water Act in 1972, many still do not meet the Act's goal of "fishable and swimmable". While waterways can be impaired in numerous ways, the protection from pathogenic microbe contamination is most important for waters used for human recreation, drinking water and aquaculture. Typically, monitoring methods used for detecting potential pathogenic microorganisms in environmental waters are based upon cultivation and enumeration of fecal indicator bacteria (i.e. fecal coliforms, E coli, and fecal enterococci). Currently, there is increasing interest in the potential for molecular fingerprinting methods to be used not only for detection but also for identification of fecal contamination sources. Molecular methods have been applied-to study the microbial ecology of environmental systems for years and are now being applied to help improve our waters by identifying problem sources and determining the effect of implemented remedial solutions. Management and remediation of water pollution would be more cost-effective if the correct sources could be identified. This review provides an outline of the,main methods that either have been used or have been suggested for use in microbial source tracking and some of the limitations associated with those methods.
引用
收藏
页码:5279 / 5288
页数:10
相关论文
共 87 条
[51]   COMPARATIVE SURVIVAL OF INDICATOR BACTERIA AND ENTERIC PATHOGENS IN WELL WATER [J].
MCFETERS, GA ;
BISSONNE.GK ;
JEZESKI, JJ ;
THOMSON, CA ;
STUART, DG .
APPLIED MICROBIOLOGY, 1974, 27 (05) :823-829
[52]   Water quality response to riparian restoration in an agricultural watershed in Vermont, USA [J].
Meals, DW .
WATER SCIENCE AND TECHNOLOGY, 2001, 43 (05) :175-182
[53]  
Muyzer G., 1996, MOL MICROBIAL ECOLOG
[54]  
Muyzer G., 1998, MOL MICROBIAL ECOLOG, P1
[55]  
NOVOTNY V, 1985, J WATER POLLUT CON F, V57, P339
[56]   BIOCHEMICAL AND MOLECULAR CHARACTERIZATION OF SALMONELLA-ENTERICA SEROVAR BERTA, AND COMPARISON OF METHODS FOR TYPING [J].
OLSEN, JE ;
BROWN, DJ ;
BAGGESEN, DL ;
BISGAARD, M .
EPIDEMIOLOGY AND INFECTION, 1992, 108 (02) :243-260
[57]   Association of multiple-antibiotic-resistance profiles with point and nonpoint sources of Escherichia coli in Apalachicola bay [J].
Parveen, S ;
Murphree, RL ;
Edmiston, L ;
Kaspar, CW ;
Portier, KM ;
Tamplin, ML .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1997, 63 (07) :2607-2612
[58]  
Parveen S, 1999, APPL ENVIRON MICROB, V65, P3142
[59]   EPIDEMIOLOGIC APPLICATION OF A STANDARDIZED RIBOTYPE SCHEME FOR VIBRIO-CHOLERAE 01 [J].
POPOVIC, T ;
BOPP, C ;
OLSVIK, O ;
WACHSMUTH, K .
JOURNAL OF CLINICAL MICROBIOLOGY, 1993, 31 (09) :2474-2482
[60]   Use of repetitive intergenic DNA sequences to classify pathogenic and disease-suppressive Streptomyces strains [J].
Sadowsky, MJ ;
Kinkel, LL ;
Bowers, JH ;
Schottel, JL .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1996, 62 (09) :3489-3493