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

IF 10.1 2区 生物学 Q1 MICROBIOLOGY
Katalin Demeter, Rita Linke, Elisenda Ballesté, Georg Reischer, René E Mayer, Julia Vierheilig, Claudia Kolm, Margaret E Stevenson, Julia Derx, Alexander K T Kirschner, Regina Sommer, Orin C Shanks, Anicet R Blanch, Joan B Rose, Warish Ahmed, Andreas H Farnleitner
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引用次数: 3

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.

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粪便污染诊断和源头追踪的基因目标是否已经彻底改变了水质分析?
通过严格的文献分析,评估了基于核酸的方法(如PCR和测序)检测和分析微生物粪便污染的指标、遗传标记或分子特征在与健康相关的水质研究中的影响。自30多年前首次应用以来,广泛的应用领域和研究设计已被确定(>1100出版物)。鉴于方法和评估类型的一致性,我们建议将这一新兴科学部分定义为一门新学科:与健康相关的微生物水质分析中的遗传粪便污染诊断(GFPD)。毫无疑问,GFPD已经彻底改变了粪便污染检测(即传统或替代的一般粪便指标/标记物分析)和微生物源跟踪(即与宿主相关的粪便指标/标记物分析),这是当前的核心应用。GFPD还扩展到许多其他研究领域,包括感染和健康风险评估、微生物水处理评估以及支持废水监测。此外,DNA提取物的储存允许生物银行,这开辟了新的前景。GFPD工具可以与基于培养的标准化粪便指标枚举、病原体检测和各种环境数据类型相结合,形成综合数据分析方法。本综合荟萃分析提供了该领域的科学现状,包括趋势分析和文献统计,概述了确定的应用领域,并讨论了基于核酸的分析在GFPD中的好处和挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
FEMS microbiology reviews
FEMS microbiology reviews 生物-微生物学
CiteScore
17.50
自引率
0.90%
发文量
45
审稿时长
6-12 weeks
期刊介绍: Title: FEMS Microbiology Reviews Journal Focus: Publishes reviews covering all aspects of microbiology not recently surveyed Reviews topics of current interest Provides comprehensive, critical, and authoritative coverage Offers new perspectives and critical, detailed discussions of significant trends May contain speculative and selective elements Aimed at both specialists and general readers Reviews should be framed within the context of general microbiology and biology Submission Criteria: Manuscripts should not be unevaluated compilations of literature Lectures delivered at symposia must review the related field to be acceptable
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