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Evolution; International Journal of Organic Evolution|May 21, 2009
The evolution of dominance in sporophytic self-incompatibility systems. II. Mate availability and recombinationDaniel J Schoen, Jeremiah W BuschTrends in Plant Science|February 26, 2008
The evolution of self-incompatibility when mates are limitingJeremiah W Busch, Daniel J SchoenEvolution; International Journal of Organic Evolution|December 18, 2009
Does mate limitation in self-incompatible species promote the evolution of selfing? The case of Leavenworthia alabamicaJeremiah W Busch, Simon Joly, Daniel J SchoenMolecular Biology and Evolution|January 5, 2011
Demographic signatures accompanying the evolution of selfing in Leavenworthia alabamicaJeremiah W Busch, Simon Joly, Daniel J SchoenGenetics|April 24, 2008
Molecular characterization of Lal2, an SRK-like gene linked to the S-locus in the wild mustard Leavenworthia alabamicaJeremiah W Busch, Julia Sharma, Daniel J SchoenEvolution; International Journal of Organic Evolution|June 8, 2012
Phylogeny of Leavenworthia S-alleles suggests unidirectional mating system evolution and enhanced positive selection following an ancient population bottleneckAdam C Herman, Jeremiah W Busch, Daniel J SchoenAmerican Journal of Botany|June 8, 2011
The evolution of self-compatibility in geographically peripheral populations of Leavenworthia alabamica (Brassicaceae)Jeremiah W BuschEvolution; International Journal of Organic Evolution|March 30, 2006
Heterosis in an isolated, effectively small, and self-fertilizing population of the flowering plant Leavenworthia alabamicaJeremiah W BuschEvolution; International Journal of Organic Evolution|April 28, 2011
Demography, pollination, and Baker's LawJeremiah W BuschThe New Phytologist|February 21, 2013
Is self-fertilization an evolutionary dead end?Boris Igic, Jeremiah W BuschPageof 8