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Plos One|June 16, 2022
PIF-independent regulation of growth by an evening complex in the liverwort Marchantia polymorphaUlf Lagercrantz, Anja Billhardt, Sabine N Rousku, et al.Phytochemistry|July 27, 2012
Sesquiterpenes from the conifer root rot pathogen Heterobasidion occidentaleDavid Hansson, Audrius Menkis, Kajsa Himmelstrand, et al.The New Phytologist|November 15, 2025
Chromatin-associated DEK proteins maintain H3K27me3 balance and coordinate developmental transitions in plantsMiyuki Nakamura, Heinrich Bente, Maria Derkacheva, et al.Plant Physiology|May 15, 2013
The MOSS Physcomitrella patens reproductive organ development is highly organized, affected by the two SHI/STY genes and by the level of active auxin in the SHI/STY expression domainKatarina Landberg, Eric R A Pederson, Tom Viaene, et al.Plant Molecular Biology|May 30, 2007
The moss genes PpSKI1 and PpSKI2 encode nuclear SnRK1 interacting proteins with homologues in vascular plantsMattias Thelander, Anders Nilsson, Tina Olsson, et al.Current Biology : CB|July 16, 2022
Apical dominance control by TAR-YUC-mediated auxin biosynthesis is a deep homology of land plantsMattias Thelander, Katarina Landberg, Arthur Muller, et al.The New Phytologist|May 21, 2009
Quickly-released peroxidase of moss in defense against fungal invadersMikko T Lehtonen, Motomu Akita, Nisse Kalkkinen, et al.The New Phytologist|December 23, 2021
The Physcomitrium patens egg cell expresses several distinct epigenetic components and utilizes homologues of BONOBO genes for cell specificationVictoria Sanchez-Vera, Katarina Landberg, Mauricio Lopez-Obando, et al.Autophagy|August 25, 2017
Autophagy is required for gamete differentiation in the moss Physcomitrella patensVictoria Sanchez-Vera, Chandra Shekar Kenchappa, Katarina Landberg, et al.The Plant Cell|February 16, 2010
The Arabidopsis thaliana STYLISH1 protein acts as a transcriptional activator regulating auxin biosynthesisD Magnus Eklund, Veronika Ståldal, Isabel Valsecchi, et al.Pageof 3