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Journal of Plant Research|February 26, 2020
Three-dimensional growth: a developmental innovation that facilitated plant terrestrializationLaura A MoodyEssays in Biochemistry|November 7, 2022
Unravelling 3D growth in the moss Physcomitrium patensLaura A MoodyCurrent Opinion in Plant Biology|November 7, 2018
The 2D to 3D growth transition in the moss Physcomitrella patensLaura A MoodyEvolution & Development|April 6, 2021
A fundamental developmental transition in Physcomitrium patens is regulated by evolutionarily conserved mechanismsRichard Jaeger, Laura A MoodyMicropublication Biology|May 5, 2023
CURLY LEAF is required for the auxin-dependent regulation of 3-dimensional growth specification in Physcomitrium patensRency J Raquid, Richard Jaeger, Laura A MoodyCurrent Biology : CB|February 4, 2018
Genetic Regulation of the 2D to 3D Growth Transition in the Moss Physcomitrella patensLaura A Moody, Steven Kelly, Ester Rabbinowitsch, et al.Development (Cambridge, England)|July 23, 2025
A FLOE-related protein regulates the two-dimensional to three-dimensional growth transition in the moss Physcomitrium patensZoe Weeks, Gargi Chaturvedi, Emily Day, et al.The New Phytologist|November 26, 2016
Nonreciprocal complementation of KNOX gene function in land plantsEftychios Frangedakis, Denis Saint-Marcoux, Laura A Moody, et al.Current Biology : CB|November 26, 2020
NO GAMETOPHORES 2 Is a Novel Regulator of the 2D to 3D Growth Transition in the Moss Physcomitrella patensLaura A Moody, Steven Kelly, Roxaana Clayton, et al.The New Phytologist|March 3, 2018
Somatic hybridization provides segregating populations for the identification of causative mutations in sterile mutants of the moss Physcomitrella patensLaura A Moody, Steven Kelly, Yoan Coudert, et al.Pageof 2