Author:
Engene Niclas,Gunasekera Sarath P.,Gerwick William H.,Paul Valerie J.
Abstract
ABSTRACTBenthic marine cyanobacteria are known for their prolific biosynthetic capacities to produce structurally diverse secondary metabolites with biomedical application and their ability to form cyanobacterial harmful algal blooms. In an effort to provide taxonomic clarity to better guide future natural product drug discovery investigations and harmful algal bloom monitoring, this study investigated the taxonomy of tropical and subtropical natural product-producing marine cyanobacteria on the basis of their evolutionary relatedness. Our phylogenetic inferences of marine cyanobacterial strains responsible for over 100 bioactive secondary metabolites revealed an uneven taxonomic distribution, with a few groups being responsible for the vast majority of these molecules. Our data also suggest a high degree of novel biodiversity among natural product-producing strains that was previously overlooked by traditional morphology-based taxonomic approaches. This unrecognized biodiversity is primarily due to a lack of proper classification systems since the taxonomy of tropical and subtropical, benthic marine cyanobacteria has only recently been analyzed by phylogenetic methods. This evolutionary study provides a framework for a more robust classification system to better understand the taxonomy of tropical and subtropical marine cyanobacteria and the distribution of natural products in marine cyanobacteria.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Reference52 articles.
1. Giant marine cyanobacteria produce exciting potential pharmaceuticals;Gerwick;Microbe,2008
2. Biologically active secondary metabolites from marine cyanobacteria;Nunnery;Curr. Opin. Biotechnol.,2010
3. The natural products chemistry of cyanobacteria;Tidgewell,2010
4. Filamentous tropical marine cyanobacteria: a rich source of natural products for anticancer drug discovery;Tan;J. Appl. Phycol.,2010
5. The toxins of Lyngbya majuscula and their human and ecological health effects;Osborne;Environ. Int.,2001