From Greenland to green lakes: Cultural eutrophication and the loss of benthic pathways in lakes

От Гренландии к зелёным озёрам: антропогенная эвтрофикация и утрата бентосных путей в озёрах
Erik Jeppesen, Kirsten Christoffersen, David M. Lodge, Yvonne Vadeboncoeur, M. Jake Vander Zanden, Hans‐Henrik Schierup
2003-07-01

benthic primary productioncarbon stable isotope analysiscultural eutrophicationperiphyton productivityphytoplankton productivity
Benthic community responses to lake eutrophication are poorly understood relative to pelagic responses. We compared phytoplankton and periphyton productivity along a eutrophication gradient in Greenland, U.S., and Danish lakes. Phytoplankton productivity increased along the phosphorus gradient (total phosphorus [TP] = 2–430 mg m −3 ), but whole‐lake benthic algal productivity decreased, substantially depressing increases in primary productivity at the whole‐lake scale. In shallow, oligotrophic Greenland lakes, periphyton was responsible for 80–98% of primary production, whereas in Danish lakes with TP > 100 mg m −3 , phytoplankton were responsible for nearly 100% of primary production. Benthic contributions ranged from 5 to 80% depending on morphometry and littoral habitat composition in lakes with intermediate phosphorus concentrations. Thus, eutrophication was characterized by a switch from benthic to pelagic dominance of primary productivity. Carbon stable isotope analysis showed that the redistribution of primary production entailed a similar shift from periphyton to phytoplankton in the diets of zoobenthos. Benthic and pelagic habitats were energetically linked through food web interactions, but eutrophication eroded the benthic primary production pathway.
1
Although benthic and pelagic habitats were energetically connected through food-web interactions, eutrophication eroded the benthic primary-production pathway.
2
At intermediate phosphorus concentrations, benthic contributions ranged from 5–80%, depending on lake morphometry and littoral habitat composition.
3
Eutrophication switched lake primary productivity from benthic to pelagic dominance and shifted zoobenthos diets from periphyton toward phytoplankton.
4
In shallow oligotrophic Greenland lakes, periphyton supplied 80–98% of primary production; in Danish lakes with TP > 100 mg m−3, phytoplankton supplied nearly 100%.
5
Phytoplankton productivity increased across the phosphorus gradient, while whole-lake benthic algal productivity declined with eutrophication.

Lakes across Greenland, the United States, and Denmark spanning a phosphorus-based eutrophication gradient

The effects of eutrophication on benthic and pelagic primary productivity and the resulting shift in food-web carbon pathways from periphyton to phytoplankton

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2003-07-01
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Erik Jeppesen
Kirsten Christoffersen
David M. Lodge
Yvonne Vadeboncoeur
M. Jake Vander Zanden
Hans‐Henrik Schierup
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