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The Plant Journal : for Cell and Molecular Biology|December 21, 2018
ICE1 and ZOU determine the depth of primary seed dormancy in Arabidopsis independently of their role in endosperm developmentDana R MacGregor, Naichao Zhang, Mayumi Iwasaki, et al.Current Biology : CB|November 24, 2005
Cold and light control seed germination through the bHLH transcription factor SPATULASteven Penfield, Eve-Marie Josse, Rubini Kannangara, et al.The New Phytologist|July 31, 2019
Trait analysis reveals DOG1 determines initial depth of seed dormancy, but not changes during dormancy cycling that result in seedling emergence timingSteven Footitt, Peter G Walley, James R Lynn, et al.Entomologia Experimentalis Et Applicata|August 4, 2020
The potential of the solitary parasitoid <i>Microctonus brassicae</i> for the biological control of the adult cabbage stem flea beetle, <i>Psylliodes chrysocephala</i>Anna Jordan, Gavin R Broad, Julia Stigenberg, et al.Proceedings of the National Academy of Sciences of the United States of America|September 11, 2025
Adaptation of seed dormancy to maternal climate occurs via intergenerational transport of abscisic acidXiaochao Chen, William Bezodis, Pablo González-Suárez, et al.The New Phytologist|November 21, 2014
Seed production temperature regulation of primary dormancy occurs through control of seed coat phenylpropanoid metabolismDana R MacGregor, Sarah L Kendall, Hannah Florance, et al.Current Biology : CB|August 14, 2010
SPATULA links daytime temperature and plant growth rateKate Sidaway-Lee, Eve-Marie Josse, Alanna Brown, et al.The New Phytologist|July 19, 2011
Homeostasis of plasma membrane viscosity in fluctuating temperaturesAlexandre Martinière, Maria Shvedunova, Adrian J W Thomson, et al.Current Biology : CB|December 10, 2019
Vernalization and Floral Transition in Autumn Drive Winter Annual Life History in Oilseed RapeCarmel M O'Neill, Xiang Lu, Alexander Calderwood, et al.The Plant Journal : for Cell and Molecular Biology|October 20, 2011
Expression and manipulation of phosphoenolpyruvate carboxykinase 1 identifies a role for malate metabolism in stomatal closureSteven Penfield, Sarah Clements, Karen J Bailey, et al.Pageof 5