The influence of fluctuating population densities on evolutionary dynamics.

Hanja Pisa, Joachim Hermisson, Jitka Polechová
Author Information
  1. Hanja Pisa: Department of Mathematics, University of Vienna, 1090 Vienna, Austria.
  2. Joachim Hermisson: Department of Mathematics, University of Vienna, 1090 Vienna, Austria.
  3. Jitka Polechová: Department of Mathematics, University of Vienna, 1090 Vienna, Austria.

Abstract

The causes and consequences of fluctuating population densities are an important topic in ecological literature. Yet, the effects of such fluctuations on maintenance of variation in spatially structured populations have received little analytic treatment. We analyze what happens when two habitats coupled by migration not only differ in their trade-offs in selection but also in their demographic stability-and show that equilibrium allele frequencies can change significantly due to ecological feedback arising from locally fluctuating population sizes. When an ecological niche exhibits such fluctuations, these drive an asymmetry in the relative impact of gene flow, and therefore, the equilibrium frequency of the locally adapted type decreases. Our results extend the classic conditions on maintenance of diversity under selection and migration by including the effect of fluctuating population densities. We find simple analytic conditions in terms of the strength of selection, immigration, and the extent of fluctuations between generations in a continent-island model. Although weak fluctuations hardly affect coexistence, strong recurrent fluctuations lead to extinction of the type better adapted to the fluctuating niche-even if the invader is locally maladapted. There is a disadvantage to specialization to an unstable habitat, as it makes the population vulnerable to swamping from more stable habitats.

Keywords

References

  1. Acta Biotheor. 1968;18(1):165-94 [PMID: 4984481]
  2. Theor Popul Biol. 1999 Jun;55(3):227-34 [PMID: 10366548]
  3. Genetics. 1931 Mar;16(2):97-159 [PMID: 17246615]
  4. Am Nat. 2013 Jun;181(6):725-36 [PMID: 23669536]
  5. Theor Popul Biol. 2003 Aug;64(1):119-27 [PMID: 12804876]
  6. Nature. 1993 Jul 15;364(6434):229-32 [PMID: 8321317]
  7. Evolution. 1975 Sep;29(3):465-473 [PMID: 28563194]
  8. Trends Ecol Evol. 2004 Jan;19(1):39-45 [PMID: 16701224]
  9. Theor Popul Biol. 2000 Nov;58(3):211-37 [PMID: 11120650]
  10. Nature. 2000 Dec 21-28;408(6815):961-4 [PMID: 11140680]
  11. Oecologia. 1970 Sep;5(3):240-284 [PMID: 28309822]
  12. Oecologia. 1986 Dec;71(1):156-158 [PMID: 28312099]
  13. Philos Trans R Soc Lond B Biol Sci. 2009 Jun 12;364(1523):1511-8 [PMID: 19414466]
  14. Oecologia. 1974 Sep;15(3):245-258 [PMID: 28308550]
  15. Proc Natl Acad Sci U S A. 2017 Oct 31;114(44):11582-11590 [PMID: 29078347]
  16. J Evol Biol. 2007 Jan;20(1):296-300 [PMID: 17210022]
  17. PLoS Biol. 2018 Jun 15;16(6):e2005372 [PMID: 29906294]
  18. Nature. 2000 Jun 1;405(6786):562-5 [PMID: 10850713]
  19. Science. 1972 Sep 8;177(4052):900-2 [PMID: 17780991]
  20. Science. 1974 Nov 15;186(4164):645-7 [PMID: 4412202]
  21. Science. 2001 May 25;292(5521):1528-31 [PMID: 11375487]
  22. Am Nat. 2011 Oct;178 Suppl 1:S6-25 [PMID: 21956092]
  23. Proc Natl Acad Sci U S A. 1980 Dec;77(12):7501-5 [PMID: 16592939]
  24. Trends Ecol Evol. 2000 Jun;15(6):243-247 [PMID: 10802550]
  25. Genetics. 1980 Apr;94(4):1065-84 [PMID: 17249019]
  26. Ecol Lett. 2007 Jul;10(7):574-85 [PMID: 17542936]

Grants

  1. V458-B25/Austrian Science Fund
  2. V458-B25/Austrian Science Fund

MeSH Term

Animal Distribution
Biological Evolution
Ecosystem
Gene Flow
Models, Biological
Plant Dispersal
Population Density

Word Cloud

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