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Journal of Molecular Evolution|February 8, 2003
Broad-scale analysis contradicts the theory that generation time affects molecular evolutionary rates in plantsCarrie-Ann Whittle, Mark O Johnston
Evolution; International Journal of Organic Evolution|June 1, 2017
CORRELATED EVOLUTION OF SELF-FERTILIZATION AND INBREEDING DEPRESSION: AN EXPERIMENTAL STUDY OF NINE POPULATIONS OF AMSINCKIA (BORAGINACEAE)Mark O Johnston, Daniel J Schoen
Applications in Plant Sciences|April 3, 2019
Patterns and biases in an Arctic herbarium specimen collection: Implications for phenological researchZoe A Panchen, Jennifer Doubt, Heather M Kharouba, et al.
Evolution; International Journal of Organic Evolution|June 1, 2017
EVOLUTIONARY HISTORY OF THE MATING SYSTEM IN AMSINCKIA (BORAGINACEAE)Daniel J Schoen, Mark O Johnston, Anne-Marie L'Heureux, et al.
American Journal of Botany|June 2, 2011
Ovule number per flower in a world of unpredictable pollinationMartin Burd, Tia-Lynn Ashman, Diane R Campbell, et al.
The American Naturalist|December 6, 2008
Correlations among fertility components can maintain mixed mating in plantsMark O Johnston, Emmanuelle Porcher, Pierre-Olivier Cheptou, et al.
Evolution; International Journal of Organic Evolution|December 3, 2011
Analysis of inbreeding depression in mixed-mating plants provides evidence for selective interference and stable mixed matingAlice A Winn, Elizabeth Elle, Susan Kalisz, et al.
Trends in Ecology & Evolution|August 18, 2009
Plant mating systems in a changing worldChristopher G Eckert, Susan Kalisz, Monica A Geber, et al.
Ecology Letters|January 25, 2017
Global biogeography of mating system variation in seed plantsDavid A Moeller, Ryan D Briscoe Runquist, Annika M Moe, et al.
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