Literature DB >> 16124289

Tidal forcing of enterococci at marine recreational beaches at fortnightly and semidiurnal frequencies.

Alexandria B Boehm1, Stephen B Weisberg.   

Abstract

Marine beach water quality is typically monitored in early morning once a week without respect to tidal condition. To assess the effect of tide on this public health warning system, we analyzed enterococci (ENT) data from 60 southern California marine beaches with differing geomorphology, orientation, and proximity to runoff sources. ENT concentrations during spring tides were significantly higher (p < 0.1) than those during neap tides at 50 of the beaches, and at the majority of these, water samples were also more than twice as likely to be out of compliance with the ENT single-sample standard during spring tides compared to neap tides. When tide range (spring/neap) and tide stage (ebb/flood) conditions were considered together, spring-ebb tides yielded the highest ENT concentrations and the greatest chance of exceeding the single-sample standard at the majority of beaches. The proximity to a terrestrial runoff source, the slope of the runoff source, the slope of the beach, and the orientation of the beach had minimal influence on the tidal modulation of ENT concentrations. The presence of spring and spring-ebb tide signals at such a great percentage of beaches suggests that tide should be considered in the design and interpretation of beach monitoring program data. It also suggests that ENT delivered by tidally forced sources other than terrestrial surficial runoff are widespread. Possibilities include ENT-laden groundwater (saline and fresh) from the beach aquifer as well as ENT-enriched sands, decaying wrack, and bird feces near the high water line.

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Mesh:

Year:  2005        PMID: 16124289     DOI: 10.1021/es048175m

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  14 in total

1.  Evaluation of conventional and alternative monitoring methods for a recreational marine beach with nonpoint source of fecal contamination.

Authors:  Tomoyuki Shibata; Helena M Solo-Gabriele; Christopher D Sinigalliano; Maribeth L Gidley; Lisa R W Plano; Jay M Fleisher; John D Wang; Samir M Elmir; Guoqing He; Mary E Wright; Amir M Abdelzaher; Cristina Ortega; David Wanless; Anna C Garza; Jonathan Kish; Troy Scott; Julie Hollenbeck; Lorraine C Backer; Lora E Fleming
Journal:  Environ Sci Technol       Date:  2010-11-01       Impact factor: 9.028

2.  Solar and tidal modulations of fecal indicator bacteria in coastal waters at Huntington Beach, California.

Authors:  Seo Jin Ki; Semsi Ensari; Joon Ha Kim
Journal:  Environ Manage       Date:  2007-04-19       Impact factor: 3.266

3.  A predictive model for microbial counts on beaches where intertidal sand is the primary source.

Authors:  Zhixuan Feng; Ad Reniers; Brian K Haus; Helena M Solo-Gabriele; John D Wang; Lora E Fleming
Journal:  Mar Pollut Bull       Date:  2015-04-01       Impact factor: 5.553

4.  Spatial and temporal variation in indicator microbe sampling is influential in beach management decisions.

Authors:  Amber A Enns; Laura J Vogel; Amir M Abdelzaher; Helena M Solo-Gabriele; Lisa R W Plano; Maribeth L Gidley; Matthew C Phillips; James S Klaus; Alan M Piggot; Zhixuan Feng; Ad J H M Reniers; Brian K Haus; Samir M Elmir; Yifan Zhang; Nasly H Jimenez; Noha Abdel-Mottaleb; Michael E Schoor; Alexis Brown; Sumbul Q Khan; Adrienne S Dameron; Norma C Salazar; Lora E Fleming
Journal:  Water Res       Date:  2012-02-04       Impact factor: 11.236

5.  Impact of erosion and accretion on the distribution of enterococci in beach sands.

Authors:  Rebecca J Gast; Levi Gorrell; Britt Raubenheimer; Steve Elgar
Journal:  Cont Shelf Res       Date:  2011-09-15       Impact factor: 2.391

6.  Sources and persistence of fecal indicator bacteria and Bacteroidales in sand as measured by culture-based and culture-independent methods: A case study at Santa Monica Pier, California.

Authors:  Kathryn B Mika; Karina A Chavarria; Greg Imamura; Chay Tang; Robert Torres; Jennifer A Jay
Journal:  Water Air Soil Pollut       Date:  2017-03-06       Impact factor: 2.520

7.  Microbial release from seeded beach sediments during wave conditions.

Authors:  Matthew C Phillips; Zhixuan Feng; Laura J Vogel; Ad J H M Reniers; Brian K Haus; Amber A Enns; Yifan Zhang; David B Hernandez; Helena M Solo-Gabriele
Journal:  Mar Pollut Bull       Date:  2014-01-04       Impact factor: 5.553

8.  Use of an exogenous plasmid standard and quantitative PCR to monitor spatial and temporal distribution of Enterococcus spp. in beach sands.

Authors:  Elizabeth Halliday; John F Griffith; Rebecca J Gast
Journal:  Limnol Oceanogr Methods       Date:  2010-04       Impact factor: 2.634

9.  Fecal indicators in sand, sand contact, and risk of enteric illness among beachgoers.

Authors:  Christopher D Heaney; Elizabeth Sams; Alfred P Dufour; Kristen P Brenner; Richard A Haugland; Eunice Chern; Steve Wing; Stephen Marshall; David C Love; Marc Serre; Rachel Noble; Timothy J Wade
Journal:  Epidemiology       Date:  2012-01       Impact factor: 4.822

Review 10.  Bacteria in beach sands: an emerging challenge in protecting coastal water quality and bather health.

Authors:  Elizabeth Halliday; Rebecca J Gast
Journal:  Environ Sci Technol       Date:  2010-12-16       Impact factor: 9.028

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