Vibrio vulnificus and V. parahaemolyticus are among the most significant marine pathogens and dominate seafood-related illness in temperate regions. Here, an integrated, interdisciplinary study is proposed using these vibrios as model organisms to (i) explore the environmental forcings (physical and chemical), which lead to abundance of pathogenic bacteria indigenous to the marine environment on different temporal and spatial scales (Aims 1 and 2), and (ii) determine bounds of genetic diversity, which define ecological and evolutionary units in co-existing populations of pathogenic bacteria (Aims 3 and 4). Mt Hope Bay, a partially-mixed, temperate estuary in Narragansett Bay, Massachusetts, is proposed as an excellent study site. It contains both anthropogenically influenced and more pdstJne locations, represents (due to extensive thermal pollution) a good model for exploration of the effect of climate change on pathogen populations, and allows effective integration with Project 3 and the University of Massachusetts Mt Hope Bay Natural Laboratory. The combined expertise of environmental physics, microbiology and genomics make the Project 4 team well-qualified for advancing our understanding of what drives the growth and emergence of pathogenic bacteria in the natural environment. The overall significance and broader impact of the proposed study lie in the establishment of a model for (i) pathogen ecology and evolution, (ii) risk assessment of pathogen emergence, and (iii) the extent to which observed genomic variants represent ecological and evolutionary units that can be seen as the bacterial equivalent to the eukaryotic sexual species.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Specialized Center (P50)
Project #
5P50ES012742-04
Application #
7348417
Study Section
Special Emphasis Panel (ZES1)
Project Start
Project End
Budget Start
2007-01-01
Budget End
2007-12-31
Support Year
4
Fiscal Year
2007
Total Cost
$86,522
Indirect Cost
Name
Woods Hole Oceanographic Institution
Department
Type
DUNS #
001766682
City
Woods Hole
State
MA
Country
United States
Zip Code
02543
Goldstone, Jared V; Sundaramoorthy, Munirathinam; Zhao, Bin et al. (2016) Genetic and structural analyses of cytochrome P450 hydroxylases in sex hormone biosynthesis: Sequential origin and subsequent coevolution. Mol Phylogenet Evol 94:676-687
Halliday, Elizabeth; Ralston, David K; Gast, Rebecca J (2015) Contribution of sand-associated enterococci to dry weather water quality. Environ Sci Technol 49:451-8
Anderson, Donald (2014) HABs in a changing world: a perspective on harmful algal blooms, their impacts, and research and management in a dynamic era of climactic and environmental change. Harmful Algae 2012 (2012) 2012:3-17
Kleindinst, Judith L; Anderson, Donald M; McGillicuddy Jr, Dennis J et al. (2014) Categorizing the severity of paralytic shellfish poisoning outbreaks in the Gulf of Maine for forecasting and management. Deep Sea Res Part 2 Top Stud Oceanogr 103:277-287
Anderson, Donald M; Keafer, Bruce A; Kleindinst, Judith L et al. (2014) Alexandrium fundyense cysts in the Gulf of Maine: long-term time series of abundance and distribution, and linkages to past and future blooms. Deep Sea Res Part 2 Top Stud Oceanogr 103:6-26
McGillicuddy Jr, D J; Townsend, D W; Keafer, B A et al. (2014) Georges Bank: a leaky incubator of Alexandrium fundyense blooms. Deep Sea Res Part 2 Top Stud Oceanogr 103:163-173
Pilskaln, C H; Anderson, D M; McGillicuddy, D J et al. (2014) Spatial and temporal variability of Alexandrium cyst fluxes in the Gulf of Maine: Relationship to seasonal particle export and resuspension. Deep Sea Res Part 2 Top Stud Oceanogr 103:40-54
McGillicuddy Jr, D J; Brosnahan, M L; Couture, D A et al. (2014) A red tide of Alexandrium fundyense in the Gulf of Maine. Deep Sea Res Part 2 Top Stud Oceanogr 103:174-184
Fernandes, Luciano F; Hubbard, Katherine A; Richlen, Mindy L et al. (2014) Diversity and toxicity of the diatom Pseudo-nitzschia Peragallo in the Gulf of Maine, Northwestern Atlantic Ocean. Deep Sea Res Part 2 Top Stud Oceanogr 103:139-162
Halliday, Elizabeth; McLellan, Sandra L; Amaral-Zettler, Linda A et al. (2014) Comparison of bacterial communities in sands and water at beaches with bacterial water quality violations. PLoS One 9:e90815

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