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    Microbes in beach sands : integrating environment, ecology and public health

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    2_Whitman_et_al_changes_accepted.pdf (480.0Kb)
    Date
    2014-05
    Author
    Whitman, Richard L.  Concept link
    Harwood, Valerie J.  Concept link
    Edge, Thomas A.  Concept link
    Nevers, Meredith B.  Concept link
    Byappanahalli, Muruleedhara  Concept link
    Vijayavel, Kannappan  Concept link
    Brandao, Joao  Concept link
    Sadowsky, Michael J.  Concept link
    Alm, Elizabeth Wheeler  Concept link
    Crowe, Allan  Concept link
    Ferguson, Donna  Concept link
    Ge, Zhongfu  Concept link
    Halliday, Elizabeth  Concept link
    Kinzelman, Julie  Concept link
    Kleinheinz, Greg  Concept link
    Przybyla-Kelly, Kasia  Concept link
    Staley, Christopher  Concept link
    Staley, Zachery  Concept link
    Solo-Gabriele, Helena M.  Concept link
    Metadata
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    Citable URI
    https://hdl.handle.net/1912/6842
    As published
    https://doi.org/10.1007/s11157-014-9340-8
    Abstract
    Beach sand is a habitat that supports many microbes, including viruses, bacteria, fungi and protozoa (micropsammon). The apparently inhospitable conditions of beach sand environments belie the thriving communities found there. Physical factors, such as water availability and protection from insolation; biological factors, such as competition, predation, and biofilm formation; and nutrient availability all contribute to the characteristics of the micropsammon. Sand microbial communities include autochthonous species/phylotypes indigenous to the environment. Allochthonous microbes, including fecal indicator bacteria (FIB) and waterborne pathogens, are deposited via waves, runoff, air, or animals. The fate of these microbes ranges from death, to transient persistence and/or replication, to establishment of thriving populations (naturalization) and integration in the autochthonous community. Transport of the micropsammon within the habitat occurs both horizontally across the beach, and vertically from the sand surface and ground water table, as well as at various scales including interstitial flow within sand pores, sediment transport for particle-associated microbes, and the large-scale processes of wave action and terrestrial runoff. The concept of beach sand as a microbial habitat and reservoir of FIB and pathogens has begun to influence our thinking about human health effects associated with sand exposure and recreational water use. A variety of pathogens have been reported from beach sands, and recent epidemiology studies have found some evidence of health risks associated with sand exposure. Persistent or replicating populations of FIB and enteric pathogens have consequences for watershed/beach management strategies and regulatory standards for safe beaches. This review summarizes our understanding of the community structure, ecology, fate, transport, and public health implications of microbes in beach sand. It concludes with recommendations for future work in this vastly under-studied area.
    Description
    Author Posting. © The Author(s), 2014. This is the author's version of the work. It is posted here by permission of Springer for personal use, not for redistribution. The definitive version was published in Reviews in Environmental Science and Bio/Technology 13 (2014): 329-368, doi:10.1007/s11157-014-9340-8.
    Collections
    • Biology
    Suggested Citation
    Preprint: Whitman, Richard L., Harwood, Valerie J., Edge, Thomas A., Nevers, Meredith B., Byappanahalli, Muruleedhara, Vijayavel, Kannappan, Brandao, Joao, Sadowsky, Michael J., Alm, Elizabeth Wheeler, Crowe, Allan, Ferguson, Donna, Ge, Zhongfu, Halliday, Elizabeth, Kinzelman, Julie, Kleinheinz, Greg, Przybyla-Kelly, Kasia, Staley, Christopher, Staley, Zachery, Solo-Gabriele, Helena M., "Microbes in beach sands : integrating environment, ecology and public health", 2014-05, https://doi.org/10.1007/s11157-014-9340-8, https://hdl.handle.net/1912/6842
     

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