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Nontoxic Strains of Cyanobacteria Are the Result of Major Gene Deletion Events Induced by a Transposable Element

Overview
Journal Mol Biol Evol
Specialty Biology
Date 2008 May 27
PMID 18502770
Citations 53
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Abstract

Blooms that are formed by cyanobacteria consist of toxic and nontoxic strains. The mechanisms that result in the occurrence of nontoxic strains are enigmatic. All the nontoxic strains of the filamentous cyanobacterium Planktothrix that were isolated from 9 European countries were found to have lost 90% of a large microcystin synthetase (mcy) gene cluster that encoded the synthesis of the toxic peptide microcystin (MC). Those strains still contain the flanking regions of the mcy gene cluster along with remnants of the transposable elements that are found in between. The majority of the strains still contain a gene coding for a distinct thioesterase type II (mcyT), which is putatively involved in MC synthesis. The insertional inactivation of mcyT in an MC-producing strain resulted in the reduction of MC synthesis by 94 +/- 2% (1 standard deviation). Nontoxic strains that occur in shallow lakes throughout Europe form a monophyletic lineage. A second lineage consists of strains that contain the mcy gene cluster but differ in their photosynthetic pigment composition, which is due to the occurrence of strains that contain phycocyanin or large amounts of phycoerythrin in addition to phycocyanin. Strains containing phycoerythrin typically occur in deep-stratified lakes. The rare occurrence of gene cluster deletion, paired with the evolutionary diversification of the lineages of strains that lost or still contain the mcy gene cluster, needs to be invoked in order to explain the absence or dominance of toxic cyanobacteria in various habitats.

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References
1.
Rouhiainen L, Vakkilainen T, Siemer B, Buikema W, Haselkorn R, Sivonen K . Genes coding for hepatotoxic heptapeptides (microcystins) in the cyanobacterium Anabaena strain 90. Appl Environ Microbiol. 2004; 70(2):686-92. PMC: 348879. DOI: 10.1128/AEM.70.2.686-692.2004. View

2.
Davis P, Walsby A . Comparison of measured growth rates with those calculated from rates of photosynthesis in Planktothrix spp. isolated from Blelham Tarn, English Lake District. New Phytol. 2021; 156(2):225-239. DOI: 10.1046/j.1469-8137.2002.00495.x. View

3.
Kurmayer R, Gumpenberger M . Diversity of microcystin genotypes among populations of the filamentous cyanobacteria Planktothrix rubescens and Planktothrix agardhii. Mol Ecol. 2006; 15(12):3849-61. PMC: 3044883. DOI: 10.1111/j.1365-294X.2006.03044.x. View

4.
Cohan F . What are bacterial species?. Annu Rev Microbiol. 2002; 56:457-87. DOI: 10.1146/annurev.micro.56.012302.160634. View

5.
Cary J, Ehrlich K . Aflatoxigenicity in Aspergillus: molecular genetics, phylogenetic relationships and evolutionary implications. Mycopathologia. 2006; 162(3):167-77. DOI: 10.1007/s11046-006-0051-8. View