The ecology of Egeria densa Planchón (Liliopsida: Alismatales): A wetland ecosystem engineer?
Экология Egeria densa Planchón (Liliopsida: Alismatales): инженер экосистем водно-болотных угодий?
2009-06-01
SCID: 54.1/u6b3cvvd
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Egeria densaecosystem engineerinvasive aquatic plantphytoplankton controlsediment resuspension
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Abstract (AI)
Egeria densa Planchon is considered an invasive species in continental aquatic systems in Chile. Its original geographical distribution was limited to the subtropical regions of Brazil, Argentina and Uruguay. Its fast growth and dense canopy-forming habit are associated with the clear water state of shallow water continental ecosystems. As a dominant species in many of the systems in which it occurs, E. densa behaves as an ecosystem engineer by preventing the re-suspension of sediments and controlling the growth of phytoplankton by removing nutrients from the water column. At the same time, this invasive species produces unwanted effects such as: (1) clogging waterways and hydroelectric turbines, (2) out-competing native vegetation, and (3) negatively affecting the sediment seed bank. Given its importance in the recent ( We conclude by discussing the role of E. densa as an ecosystem engineer while cautioning against the impression that E. densa is always a highly competitive invader.
Key Findings
1
As an ecosystem engineer, Egeria densa limits sediment resuspension and suppresses phytoplankton by removing nutrients from the water column.
2
Egeria densa, originally restricted to subtropical Brazil, Argentina, and Uruguay, is invasive in continental aquatic systems in Chile.
3
Its rapid growth and dense canopy are associated with maintaining clear-water conditions in shallow aquatic ecosystems.
4
The abstract highlights Egeria densa’s ecosystem-engineering role while cautioning that it should not always be regarded as a highly competitive invader.
5
The species causes substantial impacts by clogging waterways and hydroelectric turbines, outcompeting native vegetation, and negatively affecting sediment seed banks.
Research Object
Egeria densa in shallow continental aquatic and wetland ecosystems
Research Subject
The ecological role, ecosystem-engineering effects, invasiveness, and impacts of Egeria densa on sediment resuspension, phytoplankton, waterways, native vegetation, and sediment seed banks
Publication Details
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2009-06-01
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