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Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|January 11, 2012
Morphological evolution in land plants: new designs with old genesNuno D Pires, Liam DolanThe New Phytologist|August 19, 2011
Root hair development involves asymmetric cell division in Brachypodium distachyon and symmetric division in Oryza sativaChul Min Kim, Liam DolanPhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|December 20, 2017
Bilaterally symmetric axes with rhizoids composed the rooting structure of the common ancestor of vascular plantsAlexander J Hetherington, Liam DolanThe New Phytologist|December 1, 2016
The evolution of lycopsid rooting structures: conservatism and disparityAlexander J Hetherington, Liam DolanCurrent Biology : CB|October 23, 2019
Evolution: Diversification of Angiosperm Rooting Systems in the Early CretaceousAlexander J Hetherington, Liam DolanCurrent Opinion in Plant Biology|December 19, 2018
Rhynie chert fossils demonstrate the independent origin and gradual evolution of lycophyte rootsAlexander J Hetherington, Liam DolanDevelopment (Cambridge, England)|October 16, 2004
New insights into plant development in New EnglandLiam Dolan, Jane A LangdalePlos Genetics|December 3, 2016
Correction: ROOT HAIR DEFECTIVE SIX-LIKE Class I Genes Promote Root Hair Development in the Grass Brachypodium distachyonChul Min Kim, Liam DolanPlos Genetics|August 6, 2016
ROOT HAIR DEFECTIVE SIX-LIKE Class I Genes Promote Root Hair Development in the Grass Brachypodium distachyonChul Min Kim, Liam DolanJournal of Experimental Botany|May 25, 2006
The role of reactive oxygen species in cell growth: lessons from root hairsRachel J Carol, Liam DolanPageof 15