Effects of water color on predation regimes and zooplankton assemblages in freshwater lakes

Влияние цвета воды на режимы хищничества и сообщества зоопланктона в пресноводных озёрах
B. Wissel, Wiebke J. Boeing, Charles W. Ramcharan
2003-09-01

Chaoborus predationdissolved organic carbonintraguild predationwater colorzooplankton assemblages
Northern temperate lakes often have high water color because of high concentrations of dissolved organic carbon (DOC). Altered light, temperature, and oxygen profiles in these brown‐water lakes should reduce the foraging abilities of planktivorous fish and reduce predation on zooplankton and invertebrate predators such as Chaoborus. Additionally, reduced diurnal vertical migration should limit exposure to cold temperatures and increase zooplankton growth rates. We hypothesized that, with increasing water color, Chaoborus would become more important, and this change would be followed by a shift in the zooplankton assemblage toward larger species. To test this hypothesis, we carried out a 2 x 2 x 2 factorial enclosure study to examine the effects of high and low color and the presence and absence of both fish and Chaoborus on zooplankton assemblages. We also analyzed the zooplankton community structure of two lakes with similar morphometry and fish composition but very different water color. Both studies showed that, in highly colored water, Chaoborus was more abundant and the zooplankton community shifted from small species, such as Bosmina and small copepods, to large species, such as Daphnia and Holopedium. Concurrently, the food web structure changed from top‐down control to intraguild predation. Because not only the physical habitat differs between clear‐ and brown‐water lakes, but also the predation regimes and food web structure, we conclude that brown‐water lakes are a distinct lake type.
1
Brown-water lakes differ from clear-water lakes not only in physical habitat but also in predation regimes and food-web structure, constituting a distinct lake type.
2
Enclosure experiments and comparisons of two morphometrically similar lakes with different water colors produced consistent evidence for this zooplankton shift.
3
High water color increases Chaoborus abundance and shifts zooplankton communities from small taxa, including Bosmina and small copepods, toward larger Daphnia and Holopedium.
4
In highly colored lakes, food-web regulation changes from fish-mediated top-down control to intraguild predation involving Chaoborus and zooplankton predators.

Freshwater lakes differing in water color, including their zooplankton communities and fish–Chaoborus food webs

Effects of water color on predation regimes, food-web structure, Chaoborus abundance, and shifts in zooplankton community size composition

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2003-09-01
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B. Wissel
Wiebke J. Boeing
Charles W. Ramcharan
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