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Transition probabilities help identify putative drivers of community change in complex systems
Scott L Morello1,2, Ron J Etter1
1Department of Biology, University of Massachusetts, Boston, Massachusetts, 02125, USA.
Ecology
|April 1, 2018
Summary
Ecological communities are shaped by complex interactions. This study used Markov chain models to reveal how regional differences in species transitions influence community structure in the Gulf of Maine intertidal zone.
Area of Science:
- Ecology
- Marine Biology
- Community Ecology
Background:
- Understanding large-scale ecological processes is vital for predicting climate change impacts and managing ecosystems.
- Species interactions are complex and dynamic, making comprehensive study challenging.
- Current research often focuses on limited interactions, potentially overlooking broader ecological drivers.
Purpose of the Study:
- To quantitatively identify ecological forces regulating communities without oversimplifying interactions.
- To apply multispecies Markov chain models to estimate transition probabilities in the Gulf of Maine intertidal zone.
- To investigate regional differences in community assembly pathways and their drivers.
Main Methods:
- Employed multispecies Markov chain models to estimate transition probabilities between species.
- Quantified faunal element transitions bimonthly over ~2.5 years at three replicate sites in the Gulf of Maine.
- Analyzed regional variations in transitions related to mortality, colonization, and replacement by key species (mussels, barnacles, algae).
Main Results:
- Transition probabilities for key intertidal species differed significantly across the Gulf of Maine.
- Observed regional variations suggest that consumer pressure and recruitment pathways shift with changing community structure.
- Identified specific ecological pathways driving regional community shifts in the Gulf of Maine.
Conclusions:
- Regional shifts in local species interactions can drive large-scale community changes.
- Incorporating interaction complexity is crucial for ecological hypothesis building, experimentation, and forecasting.
- This approach provides a framework for understanding how regional processes influence local community dynamics.
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