Spatial, Temporal, and Matrix Variability of Clostridium botulinum Type E Toxin Gene Distribution at Great Lakes Beaches

Author:

Wijesinghe Rasanthi U.1,Oster Ryan J.1,Haack Sheridan K.1,Fogarty Lisa R.1,Tucker Taaja R.2,Riley Stephen C.3

Affiliation:

1. U.S. Geological Survey, Michigan Water Science Center, Lansing, Michigan, USA

2. CSS-Dynamac, Fairfax, Virginia, USA

3. U.S. Geological Survey, Great Lakes Science Center, Ann Arbor, Michigan, USA

Abstract

ABSTRACT Clostridium botulinum type E toxin is responsible for extensive mortality of birds and fish in the Great Lakes. The C. botulinum bontE gene that produces the type E toxin was amplified with quantitative PCR from 150 sloughed algal samples (primarily Cladophora species) collected during summer 2012 from 10 Great Lakes beaches in five states; concurrently, 74 sediment and 37 water samples from four sites were also analyzed. The bontE gene concentration in algae was significantly higher than in water and sediment ( P < 0.05), suggesting that algal mats provide a better microenvironment for C. botulinum . The bontE gene was detected most frequently in algae at Jeorse Park and Portage Lake Front beaches (Lake Michigan) and Bay City State Recreation Area beach on Saginaw Bay (Lake Huron), where 77, 100, and 83% of these algal samples contained the bontE gene, respectively. The highest concentration of bontE was detected at Bay City (1.98 × 10 5 gene copies/ml of algae or 5.21 × 10 6 g [dry weight]). This study revealed that the bontE gene is abundant in the Great Lakes but that it has spatial, temporal, and matrix variability. Further, embayed beaches, low wave height, low wind velocity, and greater average water temperature enhance the bontE occurrence.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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