Enhanced pyrogallol toxicity to cyanobacterium Microcystis aeruginosa with increasing alkalinity

Author:

Gao YunniORCID,Fu Qinqin,Lu Jing,Yang Hui,Orr Philip T.,Zhang Fang,Dong Jing,Zhang Man,Gu Qianhong,Zhou Chuanjiang,Burford Michele A.

Funder

National Natural Science Foundation of China

Science and Technology Department of Henan Province

Henan Normal University

Centre of Excellence in Plant Energy Biology, Australian Research Council

Publisher

Springer Science and Business Media LLC

Subject

Plant Science,Aquatic Science

Reference49 articles.

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2. Bährs H, Laue P, Chakrabarti S, Steinberg CEW (2014) Plant polyphenols: do they control freshwater planktonic nuisance phototrophs? In: Watson R (ed) Polyphenols in plants: isolation, purification and extract preparation. Academic Press, Massachusetts, USA, pp 87–98

3. Bährs H, Putschew A, Steinberg CEW (2013) Toxicity of hydroquinone to different freshwater phototrophs is influenced by time of exposure and pH. Environ Sci Pollut Res 20:146–154

4. Bell TAS, Sen-Kilic E, Felföldi T, Vasas G, Fields MW, Peyton BM (2018) Microbial community changes during a toxic cyanobacterial bloom in an alkaline Hungarian lake. Antonie van Leeuwenhoek 111:2425–2440

5. Carvalho L, Miller CA, Scott EM, Codd GA, Davies PS, Tyler AN (2011) Cyanobacterial blooms: statistical models describing risk factors for national-scale lake assessment and lake management. Sci Total Environ 409:5353–5358

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