Responses of the antioxidative and biotransformation enzymes in the aquatic fungus Mucor hiemalis exposed to cyanotoxins

Author:

Balsano Evelyn,Esterhuizen-Londt Maranda,Hoque Enamul,Lima Stephan Pflugmacher

Funder

Elsa-Neumann PhD scholarship

Publisher

Springer Science and Business Media LLC

Subject

General Medicine,Biotechnology,Bioengineering,Applied Microbiology and Biotechnology

Reference28 articles.

1. Amado LL, Monserrat JM (2010) Oxidative stress generation by microcystins in aquatic animals: why and how. Environ Int 36:226–235

2. Balsano E, Esterhuizen-Londt M, Hoque E, Pflugmacher S (2015) Toxin resistance in aquatic fungi poses environmentally friendly remediation possibilities: a study on the growth responses and biosorption potential of Mucor hiemalis EH5 against cyanobacterial toxins. Int J Water Wastewater Treat 1:1–9

3. Balsano E, Esterhuizen-Londt M, Hoque E, Pflugmacher S (2016) Fungal pellets as potential tools to control water pollution: strategic approach for the pelletization and subsequent microcystin-LR uptake by Mucor hiemalis. J App Biol Biotechnol 4:031–041

4. Carvalho MB, Tavares S, Medeiros J, Núñez O, Gallart-Ayala H, Leitão MC, Galceran MT, Hursthouse A, Silva Pereira C (2011) Degradation pathway of pentachlorophenol by Mucor plumbeus involves phase II conjugation and oxidation–reduction reactions. J Hazard Mater 198:133–142

5. Claiborne A (1985) Catalase activity. In: Greenwald RA (ed) Handbook of methods for oxygen radical research. CRC Press, Boca Raton, pp 283–284

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