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Biochemistry, Biophysics, and Structural Biology Commons

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Great Lakes Institute for Environmental Research Publications

Cyanotoxins

Publication Year

Articles 1 - 2 of 2

Full-Text Articles in Biochemistry, Biophysics, and Structural Biology

Microcystin Aids In Cold Temperature Acclimation: Differences Between A Toxic Microcystis Wildtype And Non-Toxic Mutant, Gwendolyn F. Stark, Robbie M. Martin, Laura E. Smith, Bofan Wei, Ferdi L. Hellweger, George S. Bullerjahn, R. Michael L. Mckay, Gregory L. Boyer, Steven W. Wilhelm Nov 2023

Microcystin Aids In Cold Temperature Acclimation: Differences Between A Toxic Microcystis Wildtype And Non-Toxic Mutant, Gwendolyn F. Stark, Robbie M. Martin, Laura E. Smith, Bofan Wei, Ferdi L. Hellweger, George S. Bullerjahn, R. Michael L. Mckay, Gregory L. Boyer, Steven W. Wilhelm

Great Lakes Institute for Environmental Research Publications

For Microcystis aeruginosa PCC 7806, temperature decreases from 26 °C to 19 °C double the microcystin quota per cell during growth in continuous culture. Here we tested whether this increase in microcystin provided M. aeruginosa PCC 7806 with a fitness advantage during colder-temperature growth by comparing cell concentration, cellular physiology, reactive oxygen species damage, and the transcriptomics-inferred metabolism to a non-toxigenic mutant strain M. aeruginosa PCC 7806 ΔmcyB. Photo-physiological data combined with transcriptomic data revealed metabolic changes in the mutant strain during growth at 19 °C, which included increased electron sinks and non-photochemical quenching. Increased gene expression was observed for …


Insight Into The Molecular Mechanisms For Microcystin Biodegradation In Lake Erie And Lake Taihu, Lauren E. Krausfeldt, Morgan M. Steffen, Robert M. Mckay, George S. Bullerjahn, Gregory L. Boyer, Steven W. Wilhelm Dec 2019

Insight Into The Molecular Mechanisms For Microcystin Biodegradation In Lake Erie And Lake Taihu, Lauren E. Krausfeldt, Morgan M. Steffen, Robert M. Mckay, George S. Bullerjahn, Gregory L. Boyer, Steven W. Wilhelm

Great Lakes Institute for Environmental Research Publications

Microcystins are potent hepatotoxins that are frequently detected in fresh water lakes plagued by toxic cyanobacteria. Microbial biodegradation has been referred to as the most important avenue for removal of microcystin from aquatic environments. The biochemical pathway most commonly associated with the degradation of microcystin is encoded by the mlrABCD (mlr) cassette. The ecological significance of this pathway remains unclear as no studies have examined the expression of these genes in natural environments. Six metatranscriptomes were generated from microcystin-producing Microcystis blooms and analyzed to assess the activity of this pathway in environmental samples. Seventy-eight samples were collected from Lake Erie, …