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The controlled assembly of microcosmic communities: the selective extinction hypothesis
1Department of Biology, The University of Texas at Arlington, 76019, Arlington, TX, USA.
Oecologia
|March 18, 2017
Summary
Species richness in aquatic microcosms increased with invasion rates but declined in high-invasion scenarios. Small environments exhibited selective extinction, favoring smaller organisms, aligning with ecological equilibrium models.
Area of Science:
- Ecological dynamics
- Microcosm experiments
- Community assembly
Background:
- Understanding species richness and extinction is crucial for ecological theory.
- Microcosm experiments provide controlled environments to study ecological processes.
- The MacArthur-Wilson equilibrium model describes factors influencing species diversity.
Purpose of the Study:
- To investigate the impact of introduction schedules and microcosm size on species richness and extinction rates.
- To test the applicability of the MacArthur-Wilson equilibrium model in controlled aquatic communities.
Main Methods:
- Forty aquatic communities were established with algae, protozoans, and rotifers.
- Two distinct introduction schedules (6-week and 8-week intervals) were employed.
- Two microcosm volumes (100 ml and 300 ml) were used, with varying invasion rates.
Main Results:
- Species richness increased over time in low invasion rate microcosms.
- Species richness declined in high invasion rate microcosms after an initial increase.
- Extinction rates were disproportionately higher for larger organisms in smaller microcosms.
Conclusions:
- Introduction rates significantly influence species richness dynamics in ecological communities.
- Microcosm size affects extinction patterns, demonstrating selective extinction.
- Observed selective extinction supports predictions of the MacArthur-Wilson equilibrium model.
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