Journal of Environmental Protection

Journal of Environmental Protection

ISSN Print: 2152-2197
ISSN Online: 2152-2219
www.scirp.org/journal/jep
E-mail: jep@scirp.org
"Growth and Toxin Production by Microcystis Aeruginosa PCC 7806 (Kutzing) Lemmerman at Elevated Salt Concentrations"
written by Ken Black, Mete Yilmaz, Edward J. Phlips,
published by Journal of Environmental Protection, Vol.2 No.6, 2011
has been cited by the following article(s):
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[1] Warming and Salt Intrusion Affect Microcystin Production in Tropical Bloom-Forming Microcystis
Toxins, 2022
[2] The Detrimental Effect of High Salinity on the Growth and Microcystins Contamination of Microcystis aeruginosa
Water, 2022
[3] The salt tolerance of the freshwater cyanobacterium Microcystis depends on nitrogen availability
2021
[4] Dynamics of metabolites production and application of hydrogen peroxide for the removal of noxious cyanobacteria from isolated cultures and wastewater
2021
[5] Dynamics of microcystins and saxitoxin in the Indian River Lagoon, Florida
2021
[6] Salt Shock Responses of Microcystis Revealed through Physiological, Transcript, and Metabolomic Analyses
2020
[7] The limit of resistance to salinity in the freshwater cyanobacterium Microcystis aeruginosa is modulated by the rate of salinity increase
2020
[8] Allelopathic effects of harmful algal extracts and exudates on biofilms on leaves of Vallisneria natans
2019
[9] Responses of leaf-associated biofilms on the submerged macrophyte Vallisneria natans during harmful algal blooms
2019
[10] Demonstrated transfer of cyanobacteria and cyanotoxins along a freshwater-marine continuum in France
2019
[11] Physiological and metabolic responses of freshwater and brackish strains of Microcystis aeruginosa acclimated to a salinity gradient: insight into salt tolerance
2019
[12] Persistence of microcystin production by Planktothrix agardhii (Cyanobacteria) exposed to different salinities
2019
[13] Variations de salinité chez la cyanobactérie toxique d'eau douce Microcystis aeruginosa dans un contexte de transfert en milieu estuarien: réponses physiologiques et …
2019
[14] Physiological and metabolic responses of freshwater and brackish-water strains of Microcystis aeruginosa acclimated to a salinity gradient: Insight into salt tolerance
2019
[15] Descripción y modelación de la presencia y crecimiento de Microcystis aeruginosa (Kützing) Kützing 1846 (cianobacteria) en función de variables ambientales …
2019
[16] Physiological and Metabolic Responses of Freshwater and Brackish-Water Strains of Microcystis aeruginosa Acclimated to a Salinity Gradient: Insight into Salt …
2019
[17] Persistence of microcystin production of Planktothrix agardhii exposed to different salinity concentrations
bioRxiv, 2018
[18] OCCURRENCE OF INTENSIVE BLOOMS OF CYANOBACTERIA
2018
[19] Persistence of microcystin production of Planktothrix agardhii exposed to different salinity concentrations.
2018
[20] Effects of multiple environmental factors on the growth and extracellular organic matter production of Microcystis aeruginosa: a central composite design response …
Environmental Science and Pollution Research, 2018
[21] Performance of Microcystis aeruginosa Removal from Water Using Moringa oleifera Seed Presscake Extract as Natural Coagulant
2018
[22] Analysis of the phytoplankton community emphasizing cyanobacteria in four cascade reservoirs system of the Iguazu River, Paraná, Brazil
2018
[23] A review of microcystin detections in Estuarine and Marine waters: Environmental implications and human health risk
Harmful Algae, 2017
[24] Effects of selenite on Microcystis aeruginosa: Growth, microcystin production and its relationship to toxicity under hypersalinity and copper sulfate stresses
Environmental Pollution, 2017
[25] Microalgal biomass cultivation
Algal Green Chemistry, 2017
[26] Bacterial Transcription Factors against Reactive Oxygen Species
2016
[27] An investigation on the effects of cyanopeptides on the growth and secondary metabolite production of Microcystis aeruginosa PCC7806.
2016
[28] BMAA et cyanotoxines: microalgues productrices et niveaux d'accumulation dans les organismes marins
2015
[29] Changes in metabolites, antioxidant system, and gene expression in Microcystis aeruginosa under sodium chloride stress
Ecotoxicology and environmental safety, 2015
[30] γ-Lindane Increases Microcystin Synthesis in Microcystis aeruginosa PCC7806
Marine drugs, 2015
[31] Effects of sulfate on microcystin production, photosynthesis, and oxidative stress in Microcystis aeruginosa
Environmental Science and Pollution Research, 2015
[32] Variation in the synthesis of microcystin in response to saline and osmotic stress in Microcystis aeruginosa PCC 7806
Limnetica, 2015
[33] Capacitive sensing of microcystin variants of Microcystis aeruginosa using a gold immunoelectrode modified with antibodies, gold nanoparticles and polytyramine
Microchimica Acta, 2014
[34] Phytoplankton Community Shifts and Harmful Algae Presence in a Diversion Influenced Estuary
Estuaries and Coasts, 2014
[35] Long-term trends and causal factors associated with Microcystis abundance and toxicity in San Francisco Estuary and implications for climate change impacts
Hydrobiologia, 2013
[36] PW Lehman, K. Marr, GL Boyer
Hydrobiologia, 2013
[37] Climatic influences on autochthonous and allochthonous phytoplankton blooms in a subtropical estuary, St. Lucie Estuary, Florida, USA
Estuaries and …, 2012
[38] Rapid removal of green algae by the magnetic method
Environmental Engineering Research (EER), 2012
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