Persistence of spatial populations depends on returning home
- 11 April 2006
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (15), 6067-6072
- https://doi.org/10.1073/pnas.0506651103
Abstract
There is a need for better description and heuristic understanding of the sustainability of populations connected over space by a dispersing stage, both for management purposes and to increase our basic knowledge of the dynamics of these populations. We show that persistence of such a population of connected subpopulations depends on whether the sum of the reproductive gains through all possible closed, between-patch reproductive paths through multiple generations, relative to the shortfall in self-persistence in each path, exceeds unity plus extra terms, which only appear if there are four or more patches. These extra terms have the heuristic explanation that they avoid double counting of reproductive paths that arise with four or more patches because there can be nonoverlapping subnetworks. Thus only those patterns of reproduction and connectivity which eventually lead to descendants returning to the patch from which they originate contribute to persistence. This result provides the basis for evaluating connectivity and habitat heterogeneity to understand reserve design, the effects of human fragmentation, the collapse of marine fisheries, and other conservation issues.Keywords
This publication has 44 references indexed in Scilit:
- Merging Spatial and Temporal Structure within a Metapopulation ModelThe American Naturalist, 2005
- Metapopulation Extinction Risk under Spatially Autocorrelated DisturbanceConservation Biology, 2005
- Dispersal patterns of endemic alpine butterflies with contrasting population structures:Erebia epiphronandE. sudeticaPopulation Ecology, 2003
- MOVEMENT AND SPATIAL POPULATION STRUCTURE OF A PRAIRIE PLANTHOPPEREcology, 2003
- Metapopulation theory and northern cod population structure: interdependency of subpopulations in recovery of a groundfish populationFisheries Research, 2002
- Marine protected areas for spatially structured exploited stocksMarine Ecology Progress Series, 2000
- No-take Reserve Networks: Sustaining Fishery Populations and Marine EcosystemsFisheries, 1999
- Warmwater Stream and River Fisheries in the Southeastern United States: Are We Managing Them in Proportion to Their Values?Fisheries, 1998
- The Problem of Pattern and Scale in Ecology: The Robert H. MacArthur Award LectureEcology, 1992
- An Alternative Perspective on Recruitment Overfishing and Biological Reference PointsCanadian Journal of Fisheries and Aquatic Sciences, 1987