Revealing Biotic and Abiotic Controls of Harmful Algal Blooms in a Shallow Subtropical Lake through Statistical Machine Learning.
@article{Nelson2018RevealingBA,
title={Revealing Biotic and Abiotic Controls of Harmful Algal Blooms in a Shallow Subtropical Lake through Statistical Machine Learning.},
author={Natalie G. Nelson and Rafael Mu{\~n}oz‐Carpena and Edward J. Phlips and David A. Kaplan and Peter V. Sucsy and John C. Hendrickson},
journal={Environmental science \& technology},
year={2018},
volume={52 6},
pages={
3527-3535
}
}Harmful algal blooms are a growing human and environmental health hazard globally. Eco-physiological diversity of the cyanobacteria genera that make up these blooms creates challenges for water managers tasked with controlling the intensity and frequency of blooms, particularly of harmful taxa (e.g., toxin producers, N2 fixers). Compounding these challenges is the ongoing debate over the efficacy of nutrient management strategies (phosphorus-only versus nitrogen and phosphorus), which increases…
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References
SHOWING 1-10 OF 65 REFERENCES
Harmful Cyanobacterial Blooms: Causes, Consequences, and Controls
- Environmental ScienceMicrobial Ecology
- 2012
Cyanobacteria are the Earth’s oldest oxygenic photoautotrophs and have had major impacts on shaping its biosphere. Their long evolutionary history (∼3.5 by) has enabled them to adapt to geochemical…
Reducing Phosphorus to Curb Lake Eutrophication is a Success.
- Environmental ScienceEnvironmental science & technology
- 2016
It is found that numerous long-term studies of lake ecosystems in Europe and North America show that controlling algal blooms and other symptoms of eutrophication depends on reducing inputs of a single nutrient: phosphorus.
Climate change: links to global expansion of harmful cyanobacteria.
- Environmental ScienceWater research
- 2012
Climate change: a catalyst for global expansion of harmful cyanobacterial blooms.
- Environmental ScienceEnvironmental microbiology reports
- 2009
Recent studies revealing that regional and global climatic change may benefit various species of harmful cyanobacteria by increasing their growth rates, dominance, persistence, geographic distributions and activity are reviewed.
Understanding the key ecological traits of cyanobacteria as a basis for their management and control in changing lakes
- Environmental ScienceAquatic Ecology
- 2015
Despite looking for specific environmental sensitivities of individual groups, it is maintained that controlling nutrients remains the basis for managing blooms, no matter which functional type dominates.
Cyanobacteria as biological drivers of lake nitrogen and phosphorus cycling
- Environmental Science
- 2015
Here we draw attention to the potential for pelagic bloom-forming cyanobacteria to have substantial effects on nutrient cycling and ecosystem resilience across a wide range of lakes. Specifically, we…
Harmful Freshwater Algal Blooms, With an Emphasis on Cyanobacteria
- Environmental ScienceTheScientificWorldJournal
- 2001
The ecological impacts and environmental controls of harmful blooms are addressed, with an emphasis on the ecology, physiology, and management of cyanobacterial bloom taxa.
Nuisance phytoplankton blooms in coastal, estuarine, and inland waters1
- Environmental Science
- 1988
Multiple interacting physical, chemical, and biotic factors, in proper combination, lead to the development and persistence of nuisance algal blooms. Upon examining combinations of environmental…
Throwing fuel on the fire: synergistic effects of excessive nitrogen inputs and global warming on harmful algal blooms.
- Environmental ScienceEnvironmental science & technology
- 2010
While P reductions have been actively pursued, human population growth has been paralleled by accelerating N inputs, often at rates much higher than those of P.
Evolving Paradigms and Challenges in Estuarine and Coastal Eutrophication Dynamics in a Culturally and Climatically Stressed World
- Environmental ScienceEstuaries and Coasts
- 2014
Coastal watersheds support more than one half of the world’s human population and are experiencing unprecedented urban, agricultural, and industrial expansion. The freshwater–marine continua draining…



