Sources, contamination pathways, and monitoring of pathogens in urban estuaries
作者:Jingming Hu, Yanrong Zhou, Satoshi Ishii, Warish Ahmed, Michael J. Sadowsky, Xingchen Xia, Zhe Du, Eddie Cytryn, Eliezer Brown Mwakalapa, Windell L. Rivera, Yulin Zhou, Christopher Rensing, Qian Zhang · 发表于:Marine Pollution Bulletin · 年份:2026 · DOI:10.1016/j.marpolbul.2026.119415 · 被引用次数:1 · 研究领域:Fecal contamination and water quality、Vibrio bacteria research studies、Microbial Community Ecology and Physiology
Urban estuaries are critical ecological and socio-economic interfaces but are increasingly impacted by microbial pathogen contamination driven by anthropogenic activities such as wastewater discharge, stormwater runoff, agriculture, and wildlife inputs. Despite extensive documentation of estuarine pathogens, effective risk assessment and management remain constrained by key knowledge gaps related to source apportionment, environmental fate, and monitoring relevance. This review synthesizes current understanding of pathogen sources and transmission pathways in urban estuaries and critically examines the physicochemical, hydrodynamic, and sediment-mediated processes that regulate pathogen persistence, redistribution, and exposure risk. We identify three interconnected challenges: (i) limited resolution in differentiating human and non-human contamination sources due to overlapping microbial signatures; (ii) inadequate incorporation of estuarine hydrodynamics and sediment reservoirs into fate-and-transport frameworks; and (iii) misalignment between conventional monitoring indicators and actual pathogen and antimicrobial resistance risks. Emerging approaches, including microbial source tracking, sequencing-based surveillance, biosensors, and hybrid predictive modelling, are evaluated for their capacity to support risk-relevant decision-making. Framed within a One Health perspective, this review integrates microbial ecology, environmental processes, and surveillance technologies t...