Anatoxin-a Synthetase Gene Cluster of the Cyanobacterium Anabaena sp. Strain 37 and Molecular Methods To Detect Potential Producers

Author:

Rantala-Ylinen Anne1,Känä Suvi1,Wang Hao1,Rouhiainen Leo1,Wahlsten Matti1,Rizzi Ermanno2,Berg Katri13,Gugger Muriel45,Sivonen Kaarina1

Affiliation:

1. Department of Food and Environmental Sciences, Division of Microbiology, P.O. Box 56, FI-00014 University of Helsinki

2. Institute of Biomedical Technologies, Italian National Research Council, Via Fratelli Cervi 93, 20090 Segrate (Mi), Italy

3. Finnish Environment Institute, P.O. Box 140, FI-00251 Helsinki, Finland

4. Collection des Cyanobactéries, Department of Microbiology, Institut Pasteur

5. CNRS, URA2172, 28 Rue du Docteur Roux, 75724 Paris Cedex 15, France

Abstract

ABSTRACT Cyanobacterial mass occurrences are common in fresh and brackish waters. They pose a threat to water users due to toxins frequently produced by the cyanobacterial species present. Anatoxin-a and homoanatoxin-a are neurotoxins synthesized by various cyanobacteria, e.g., Anabaena , Oscillatoria , and Aphanizomenon . The biosynthesis of these toxins and the genes involved in anatoxin production were recently described for Oscillatoria sp. strain PCC 6506 (A. Méjean et al., J. Am. Chem. Soc. 131: 7512-7513, 2009). In this study, we identified the anatoxin synthetase gene cluster ( anaA to anaG and orf1 ; 29 kb) in Anabaena sp. strain 37. The gene (81.6% to 89.2%) and amino acid (78.8% to 86.9%) sequences were highly similar to those of Oscillatoria sp. PCC 6506, while the organization of the genes differed. Molecular detection methods for potential anatoxin-a and homoanatoxin-a producers of the genera Anabaena , Aphanizomenon , and Oscillatoria were developed by designing primers to recognize the anaC gene. Anabaena and Oscillatoria anaC genes were specifically identified in several cyanobacterial strains by PCR. Restriction fragment length polymorphism (RFLP) analysis of the anaC amplicons enabled simultaneous identification of three producer genera: Anabaena , Oscillatoria , and Aphanizomenon . The molecular methods developed in this study revealed the presence of both Anabaena and Oscillatoria as potential anatoxin producers in Finnish fresh waters and the Baltic Sea; they could be applied for surveys of these neurotoxin producers in other aquatic environments.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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