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Density dependence and population differentiation of genetic architecture in Impatiens capensis in natural environments.

Publication ,  Journal Article
Donohue, K; Pyle, EH; Messiqua, D; Heschel, MS; Schmitt, J
Published in: Evolution; international journal of organic evolution
December 2000

We identified environment-dependent constraints on the evolution of plasticity to density under natural conditions in two natural populations of Impatiens capensis. We also examined the expression of population divergence in genetic variance-covariance matrices in these natural environments. Inbred lines, originally collected from a sunny site with high seedling densities and a woodland site with low seedling densities, were planted in both original sites at natural high densities and at low density. Morphological and life-history characters were measured. More genetic variation for plastic responses to density was expressed in the sun site than in the woodland site, so the evolutionary potential of plasticity was greater in the sun site. Strong genetic correlations between the same character expressed at different densities and correlations among different characters could constrain the evolution of plasticity in both sites. Genetically based trade-offs in meristem allocation to vegetative growth and reproduction were apparent only in the high-resource environment with no overhead canopy and no intraspecific competition. Therefore, genetic constraints on the evolution of plasticity depended on the site and density in which plants were grown, and correlated responses to selection on plastic characters are also expected to differ between sites and densities. Population differentiation in genetic variance-covariance matrices was detected, but matrix structural differences, as opposed to proportional differences, were detected between populations only in the sun site at natural high density. Thus, population divergence in genetic architecture can occur rapidly and on a fine spatial scale, but the expression of such divergence may depend on the environment.

Duke Scholars

Published In

Evolution; international journal of organic evolution

DOI

EISSN

1558-5646

ISSN

0014-3820

Publication Date

December 2000

Volume

54

Issue

6

Start / End Page

1969 / 1981

Related Subject Headings

  • Population Density
  • Phenotype
  • Models, Genetic
  • Magnoliopsida
  • Light
  • Genotype
  • Genetic Variation
  • Evolutionary Biology
  • Evolution, Molecular
  • Environment
 

Citation

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Donohue, K., Pyle, E. H., Messiqua, D., Heschel, M. S., & Schmitt, J. (2000). Density dependence and population differentiation of genetic architecture in Impatiens capensis in natural environments. Evolution; International Journal of Organic Evolution, 54(6), 1969–1981. https://doi.org/10.1111/j.0014-3820.2000.tb01241.x
Donohue, K., E. H. Pyle, D. Messiqua, M. S. Heschel, and J. Schmitt. “Density dependence and population differentiation of genetic architecture in Impatiens capensis in natural environments.Evolution; International Journal of Organic Evolution 54, no. 6 (December 2000): 1969–81. https://doi.org/10.1111/j.0014-3820.2000.tb01241.x.
Donohue K, Pyle EH, Messiqua D, Heschel MS, Schmitt J. Density dependence and population differentiation of genetic architecture in Impatiens capensis in natural environments. Evolution; international journal of organic evolution. 2000 Dec;54(6):1969–81.
Donohue, K., et al. “Density dependence and population differentiation of genetic architecture in Impatiens capensis in natural environments.Evolution; International Journal of Organic Evolution, vol. 54, no. 6, Dec. 2000, pp. 1969–81. Epmc, doi:10.1111/j.0014-3820.2000.tb01241.x.
Donohue K, Pyle EH, Messiqua D, Heschel MS, Schmitt J. Density dependence and population differentiation of genetic architecture in Impatiens capensis in natural environments. Evolution; international journal of organic evolution. 2000 Dec;54(6):1969–1981.
Journal cover image

Published In

Evolution; international journal of organic evolution

DOI

EISSN

1558-5646

ISSN

0014-3820

Publication Date

December 2000

Volume

54

Issue

6

Start / End Page

1969 / 1981

Related Subject Headings

  • Population Density
  • Phenotype
  • Models, Genetic
  • Magnoliopsida
  • Light
  • Genotype
  • Genetic Variation
  • Evolutionary Biology
  • Evolution, Molecular
  • Environment