ON THE DOMINANCE OF FILAMENTOUS CYANOBACTERIA IN SHALLOW, TURBID LAKES
О доминировании нитчатых цианобактерий в мелководных мутных озёрах
1997-01-01
SCID: 54.1/6gvfyrtm
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Oscillatoriaceaealternative stable statesfilamentous cyanobacteriahysteresisshallow eutrophic lakes
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Abstract (AI)
The phytoplankton community of eutrophic shallow lakes is often dominated by filamentous cyanobacteria of the family Oscillatoriaceae. In this paper we follow two independent approaches to show that this situation is likely to be one of two alternative stable states of the algal community. First we analyze patterns of cyanobacterial dominance observed in the field, and show that these patterns imply that the algal community is a hysteretic system with two alternative equilibria. Then, we construct a simple competition model to show that hysteresis should in fact be expected from differences in physiology between cyanobacteria and algae. The basic mechanism is that cyanobacteria are the superior competitors under conditions of low light, but also promote such conditions, as they can cause a higher turbidity per unit of phosphorus than other algae. This mechanism of hysteresis offers an explanation for the resistance of cyanobacteria dominance in shallow lakes to restoration efforts by means of nutrient reduction.
Key Findings
1
A competition model shows that hysteresis can arise because cyanobacteria outperform algae under low-light conditions while generating greater turbidity per unit phosphorus.
2
Cyanobacteria reinforce low-light conditions by increasing turbidity, creating a positive feedback that stabilizes their dominance.
3
Field observations indicate that cyanobacterial dominance follows hysteresis, implying two alternative equilibria in the algal community.
4
Filamentous cyanobacteria of the Oscillatoriaceae commonly dominate eutrophic shallow lakes, likely representing one of two alternative stable states.
5
This hysteresis mechanism explains why cyanobacterial dominance can persist despite restoration efforts based on nutrient reduction.
Research Object
Filamentous cyanobacterial dominance in eutrophic shallow, turbid lakes
Research Subject
Alternative stable states and hysteresis of the phytoplankton community driven by cyanobacterial competition, light limitation, and phosphorus-dependent turbidity, including resistance to nutrient-reduction restoration
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1997-01-01
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