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PloS one, ISSN 1932-6203, 2017, Volume 12, Issue 1, p. e0170637
[This corrects the article DOI: 10.1371/journal.pone.0156275.]. 
Microcystis
Journal Article
Water Research, ISSN 0043-1354, 04/2013, Volume 47, Issue 6, pp. 2005 - 2014
Investigations on the extracellular polymeric substances (EPS) are crucial for better understanding the growth and proliferation of cyanobacterium . In this... 
Microcystis aeruginosa | Extracellular polymeric substance | Excitation–emission matrix | Parallel factor analysis | Fractionation procedure | Excitation-emission matrix | DEWATERABILITY | EPS | WATER RESOURCES | ENVIRONMENTAL SCIENCES | ENGINEERING, ENVIRONMENTAL | ALGAE | SYSTEMS | DISSOLVED ORGANIC-MATTER | FLUORESCENCE EXCITATION | SPECTRA | 3-DIMENSIONAL EXCITATION | Polymers - analysis | Cell Fractionation | Cell Proliferation | Harmful Algal Bloom | Microcystis - chemistry | Species Specificity | Algal Proteins - analysis | Bacterial Proteins - chemistry | Microcystis - growth & development | Extracellular Matrix - metabolism | Tryptophan - chemistry | Bacterial Proteins - analysis | Tryptophan - metabolism | Extracellular Matrix - chemistry | Tryptophan - analogs & derivatives | China | Chemical Phenomena | Polysaccharides, Bacterial - chemistry | Microcystis - metabolism | Algal Proteins - chemistry | Polysaccharides, Bacterial - metabolism | Solubility | Spectrometry, Fluorescence | Factor Analysis, Statistical | Microcystis - isolation & purification | Humic Substances - analysis | Bacterial Proteins - metabolism | Polymers - chemistry | Algal Proteins - metabolism | Polymers - metabolism | Water Microbiology | Tryptophan - analysis | Proteins | Tryptophan | Fluorescence | Limnology | Analysis | Fractionation | Phases | Correlation analysis | Spectra | Excitation spectra | Microcystis
Journal Article
RSC Advances, ISSN 2046-2069, 11/2017, Volume 7, Issue 81, pp. 51373 - 51373
Correction for 'Physiological response of Microcystis aeruginosa to the extracellular substances from an Aeromonas sp.' by Xing Zhang, Tao Song et al. , RSC... 
Microcystis | Physiology
Journal Article
Journal Article
PLoS ONE, ISSN 1932-6203, 05/2015, Volume 10, Issue 5, pp. e0125353 - e0125353
Journal Article
Ecotoxicology and Environmental Safety, ISSN 0147-6513, 12/2015, Volume 122, pp. 126 - 135
Journal Article
Microbial Ecology, ISSN 0095-3628, 1/2018, Volume 75, Issue 1, pp. 163 - 173
Despite the importance of understanding the bloom mechanisms that influence cyanobacterial toxin production, the dynamics of toxic Microcystis subpopulations... 
Life Sciences | Microbial Ecology | Cyanobacterial bloom | Nature Conservation | Microbiology | Geoecology/Natural Processes | Water Quality/Water Pollution | Predation pressure | Ecology | Toxic Microcystis subpopulation | Environmental stress | DIFFERENT ENVIRONMENTAL-CONDITIONS | KUTZ EMEND ELENKIN | STRAINS | RECRUITMENT | AERUGINOSA KUTZ | POPULATIONS | MICROBIOLOGY | REAL-TIME PCR | SEDIMENT | MARINE & FRESHWATER BIOLOGY | SHALLOW LAKE | ECOLOGY | WATER | Temperature | Microcystis - metabolism | Marine Toxins - metabolism | Microcystis - growth & development | Microcystis - genetics | Lakes - chemistry | Phylogeny | Eutrophication | Microcystins - metabolism | Bacterial Toxins - metabolism | Lakes - microbiology | Ecosystem | Seasons | Microcystis - classification | Republic of Korea | Reservoirs | Ribosomal RNA | Ligases | Analysis | Sediments (Geology) | Water | Populations | rRNA 16S | RNA | Genes | Environmental changes | pH effects | Hydrogen ions | Dynamics | Temperature effects | Cyanobacteria | pH | Nutrients | Stresses | Subpopulations | Nutrients (mineral) | Composition | Water bodies | Tolerance | Abundance | Environmental factors | Nucleic acids | Sediments | Extracellular | Water temperature | Microcystis | Ribonucleic acids | Blooms | Resting stages | Ciliates | Dissolved oxygen | Zooplankton | Index Medicus
Journal Article