Variation in iron and its potential relevance to phytoplankton ecology in Oklahoma reservoirs
Author:
Publisher
Springer Science and Business Media LLC
Subject
Aquatic Science
Link
https://link.springer.com/content/pdf/10.1007/s10750-021-04592-z.pdf
Reference94 articles.
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2. Anderson D.M., Glibert P.M., & Burkholder J.M. (2002). Harmful algal blooms and eutrophication: nutrient sources, composition, and consequences coastal waters: global patterns of cause and effect. Estuaries 25, 704–726.
3. Andrews C. (2008). Predicting nitrogen and phosphorus concentrations using chlorophyll-a fluorescence and turbidity. In: Mississippi Water Resources Conference. pp. 155–159.
4. Anneville O., Gammeter S., & Straile D. (2005). Phosphorus decrease and climate variability: mediators of synchrony in phytoplankton changes among European peri-alpine lakes. Freshwater Biology 50, 1731–1746
5. Bauer C.C., Scappino L., & Haselkorn R. (1993). Growth of the cyanobacterium Anabaena on molecular nitrogen: NifJ is required when iron is limited. Proceedings of the National Academy of Sciences of the United States of America 90, 8812–8816
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1. Growth and ionomic responses of a freshwater cyanobacterium to supplies of nitrogen and iron;Harmful Algae;2021-08
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