Long distance dispersal and the fate of a gene from the colonization front
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[1] M. Cain,et al. Long-distance seed dispersal in plant populations. , 2000, American journal of botany.
[2] George C. Hurtt,et al. Reid's Paradox of Rapid Plant Migration Dispersal theory and interpretation of paleoecological records , 1998 .
[3] S. Krone,et al. Spatial invasion by a mutant pathogen. , 2005, Journal of theoretical biology.
[4] James S. Clark,et al. Invasion by Extremes: Population Spread with Variation in Dispersal and Reproduction , 2001, The American Naturalist.
[5] R. Petit,et al. Ecology and genetics of tree invasions: from recent introductions to Quaternary migrations , 2004 .
[6] Oskar Hallatschek,et al. Gene surfing in expanding populations. , 2007, Theoretical population biology.
[7] R. Petit,et al. Colonization with long-distance seed dispersal and genetic structure of maternally inherited genes in forest trees: a simulation study , 1997 .
[8] Ran Nathan,et al. The importance of long‐distance dispersal in biodiversity conservation , 2005 .
[9] P. Driessche,et al. Dispersal data and the spread of invading organisms. , 1996 .
[10] S. Higgins,et al. Modeling invasive plant spread: the role of plant-environment interactions and model structure. , 1996 .
[11] Ran Nathan,et al. Effects of long‐distance dispersal for metapopulation survival and genetic structure at ecological time and spatial scales , 2005 .
[12] P. Gouyon,et al. Mixing of propagules from discrete sources at long distance: comparing a dispersal tail to an exponential , 2006, BMC Ecology.
[13] P. Stratta,et al. The effect of verbalization strategy on wisconsin card sorting test performance in schizophrenic patients receiving classical or atypical antipsychotics , 2006, BMC psychiatry.
[14] J. Lambrinos. HOW INTERACTIONS BETWEEN ECOLOGY AND EVOLUTION INFLUENCE CONTEMPORARY INVASION DYNAMICS , 2004 .
[15] Adam Arkin,et al. Response experiments for nonlinear systems with application to reaction kinetics and genetics. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[16] D. Ebert,et al. Founder events as determinants of within-island and among-island genetic structure of Daphnia metapopulations , 2006, Heredity.
[17] M. Shaw,et al. The Population Genetic Structure of Clonal Organisms Generated by Exponentially Bounded and Fat-Tailed Dispersal , 2007, Genetics.
[18] K. Ibrahim. Human Population Genetics: Simulations of human colonization history , 2004, Heredity.
[19] G. Hewitt. The genetic legacy of the Quaternary ice ages , 2000, Nature.
[20] F. Austerlitz,et al. Modelling the impact of colonisation on genetic diversity and differentiation of forest trees: interaction of life cycle, pollen flow and seed long-distance dispersal , 2003, Heredity.
[21] A. Lowe,et al. An investigation into effects of long-distance seed dispersal on organelle population genetic structure and colonization rate: a model analysis , 2004, Heredity.
[22] R. Bialozyt,et al. Contrasting effects of long distance seed dispersal on genetic diversity during range expansion , 2006, Journal of evolutionary biology.
[23] N. Shigesada,et al. Biological Invasions: Theory and Practice , 1997 .
[24] L. Excoffier,et al. Surfing during population expansions promotes genetic revolutions and structuration. , 2008, Trends in ecology & evolution.
[25] D. Nelson,et al. Genetic drift at expanding frontiers promotes gene segregation , 2007, Proceedings of the National Academy of Sciences.
[26] Seraina Klopfstein,et al. The fate of mutations surfing on the wave of a range expansion. , 2006, Molecular biology and evolution.
[27] J. Ross,et al. Enhanced (hydrodynamic) transport induced by population growth in reaction-diffusion systems with application to population genetics. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[28] J. Ross,et al. Fisher's theorems for multivariable, time- and space-dependent systems, with applications in population genetics and chemical kinetics. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[29] M. Cruzan,et al. Evidence for multiple sources of invasion and intraspecific hybridization in Brachypodium sylvaticum (Hudson) Beauv. in North America , 2008, Molecular ecology.
[30] James S. Clark,et al. MOLECULAR INDICATORS OF TREE MIGRATION CAPACITY UNDER RAPID CLIMATE CHANGE , 2005 .
[31] Ran Nathan,et al. Spatial patterns of seed dispersal, their determinants and consequences for recruitment. , 2000, Trends in ecology & evolution.
[32] M. Shaw,et al. Simulation of population expansion and spatial pattern when individual dispersal distributions do not decline exponentially with distance , 1995, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[33] R. Petit,et al. Some Evolutionary Consequences of Being a Tree , 2006 .
[34] Denis Mollison,et al. Spatial Contact Models for Ecological and Epidemic Spread , 1977 .
[35] O. Gaggiotti,et al. A Genome-Scan Method to Identify Selected Loci Appropriate for Both Dominant and Codominant Markers: A Bayesian Perspective , 2008, Genetics.
[36] R. Nichols,et al. Spatial patterns of genetic variation generated by different forms of dispersal during range expansion , 1996, Heredity.
[37] B. Pond,et al. Landscape modelling spatial bottlenecks: implications for raccoon rabies disease spread , 2009, Biology Letters.
[38] Christopher A. Edmonds,et al. Mutations arising in the wave front of an expanding population. , 2004, Proceedings of the National Academy of Sciences of the United States of America.