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Have genetic targets for faecal pollution diagnostics and source tracking revolutionized water quality analysis yet?

Authors :
Demeter, Katalin
Linke, Rita
Ballesté, Elisenda
Reischer, Georg
Mayer, René E
Vierheilig, Julia
Kolm, Claudia
Stevenson, Margaret E
Derx, Julia
Kirschner, Alexander K T
Sommer, Regina
Shanks, Orin C
Blanch, Anicet R
Rose, Joan B
Ahmed, Warish
Farnleitner, Andreas H
Source :
FEMS Microbiology Reviews; Jul2023, Vol. 47 Issue 4, p1-36, 36p
Publication Year :
2023

Abstract

The impacts of nucleic acid-based methods - such as PCR and sequencing - to detect and analyze indicators, genetic markers or molecular signatures of microbial faecal pollution in health-related water quality research were assessed by rigorous literature analysis. A wide range of application areas and study designs has been identified since the first application more than 30 years ago (>1100 publications). Given the consistency of methods and assessment types, we suggest defining this emerging part of science as a new discipline: genetic faecal pollution diagnostics (GFPD) in health-related microbial water quality analysis. Undoubtedly, GFPD has already revolutionized faecal pollution detection (i.e. traditional or alternative general faecal indicator/marker analysis) and microbial source tracking (i.e. host-associated faecal indicator/marker analysis), the current core applications. GFPD is also expanding to many other research areas, including infection and health risk assessment, evaluation of microbial water treatment, and support of wastewater surveillance. In addition, storage of DNA extracts allows for biobanking, which opens up new perspectives. The tools of GFPD can be combined with cultivation-based standardized faecal indicator enumeration, pathogen detection, and various environmental data types, in an integrated data analysis approach. This comprehensive meta-analysis provides the scientific status quo of this field, including trend analyses and literature statistics, outlining identified application areas, and discusses the benefits and challenges of nucleic acid-based analysis in GFPD. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01686445
Volume :
47
Issue :
4
Database :
Complementary Index
Journal :
FEMS Microbiology Reviews
Publication Type :
Academic Journal
Accession number :
171389081
Full Text :
https://doi.org/10.1093/femsre/fuad028