Your browser doesn't support javascript.
loading
The microbiome of urban waters
McLellan, Sandra L; Fisher, Jenny C; Newton, Ryan J.
Affiliation
  • McLellan, Sandra L; University of Wisconsin-Milwaukee. School of Freshwater Sciences. Milwaukee. USA
  • Fisher, Jenny C; University of Wisconsin-Milwaukee. School of Freshwater Sciences. Milwaukee. USA
  • Newton, Ryan J; University of Wisconsin-Milwaukee. School of Freshwater Sciences. Milwaukee. USA
Int. microbiol ; 18(3): 141-149, sept. 2015. ilus, tab, ^graf
Article in English | IBECS | ID: ibc-152254
Responsible library: ES1.1
Localization: BNCS
ABSTRACT
More than 50% of the world’s population lives in urban centers. As collection basins for landscape activity, urban waters are an interface between human activity and the natural environment. The microbiome of urban waters could provide insight into the impacts of pollution, the presence of human health risks, or the potential for long-term consequences for these ecosystems and the people who depend upon them. An integral part of the urban water cycle is sewer infrastructure. Thousands of miles of pipes line cities as part of wastewater and stormwater systems. As stormwater and sewage are released into natural waterways, traces of human and animal microbiomes reflect the sources and magnitude of fecal pollution and indicate the presence of pollutants, such as nutrients, pathogens, and chemicals. Non-fecal organisms are also released as part of these systems. Runoff from impervious surfaces delivers microbes from soils, plants and the built environment to stormwater systems. Further, urban sewer infrastructure contains its own unique microbial community seemingly adapted to this relatively new artificial habitat. High microbial densities are conveyed via pipes to waterways, and these organisms can be found as an urban microbial signature imprinted on the natural community of rivers and urban coastal waters. The potential consequences of mass releases of non-indigenous microorganisms into natural waters include creation of reservoirs for emerging human pathogens, altered nutrient flows into aquatic food webs, and increased genetic exchange between two distinct gene pools. This review highlights the recent characterization of the microbiome of urban sewer and stormwater infrastructure and its connection to and potential impact upon freshwater systems (AU)
RESUMEN
No disponible
Subject(s)

Full text: Available Collection: National databases / Spain Health context: SDG3 - Health and Well-Being Health problem: Target 3.3: End transmission of communicable diseases / Target 3.9: Reduce the amount of deaths produced by dangerous chemicals and the pollution of the air, water and soil Database: IBECS Main subject: Drinking Water / Water Characteristics / Microbiota Limits: Humans Language: English Journal: Int. microbiol Year: 2015 Document type: Article Institution/Affiliation country: University of Wisconsin-Milwaukee/USA

Full text: Available Collection: National databases / Spain Health context: SDG3 - Health and Well-Being Health problem: Target 3.3: End transmission of communicable diseases / Target 3.9: Reduce the amount of deaths produced by dangerous chemicals and the pollution of the air, water and soil Database: IBECS Main subject: Drinking Water / Water Characteristics / Microbiota Limits: Humans Language: English Journal: Int. microbiol Year: 2015 Document type: Article Institution/Affiliation country: University of Wisconsin-Milwaukee/USA
...