An RNA thermoswitch regulates daytime growth in Arabidopsis BYW Chung, M Balcerowicz, M Di Antonio, KE Jaeger, F Geng, ... Nature plants 6 (5), 522-532, 2020 | 183 | 2020 |
Auxin represses stomatal development in dark-grown seedlings via Aux/IAA proteins M Balcerowicz, A Ranjan, L Rupprecht, G Fiene, U Hoecker Development 141 (16), 3165-3176, 2014 | 87 | 2014 |
Light exposure of Arabidopsis seedlings causes rapid de‐stabilization as well as selective post‐translational inactivation of the repressor of photomorphogenesis SPA2 M Balcerowicz, K Fittinghoff, L Wirthmueller, A Maier, P Fackendahl, ... The Plant Journal 65 (5), 712-723, 2011 | 62 | 2011 |
Developing a method for customized induction of flowering CC Yeoh, M Balcerowicz, R Laurie, R Macknight, J Putterill BMC biotechnology 11, 1-11, 2011 | 46 | 2011 |
FT genes and regulation of flowering in the legume Medicago truncatula J Putterill, L Zhang, CC Yeoh, M Balcerowicz, M Jaudal, EV Gasic Functional Plant Biology 40 (12), 1199-1207, 2013 | 45 | 2013 |
Phytochrome‐interacting factors at the interface of light and temperature signalling M Balcerowicz Physiologia plantarum 169 (3), 347-356, 2020 | 44 | 2020 |
SPA proteins affect the subcellular localization of COP1 in the COP1/SPA ubiquitin ligase complex during photomorphogenesis M Balcerowicz, K Kerner, C Schenkel, U Hoecker Plant Physiology 174 (3), 1314-1321, 2017 | 42 | 2017 |
Fine mapping links the FTa1 flowering time regulator to the dominant spring1 locus in Medicago CC Yeoh, M Balcerowicz, L Zhang, M Jaudal, L Brocard, P Ratet, ... PLoS One 8 (1), e53467, 2013 | 36 | 2013 |
Auxin–a novel regulator of stomata differentiation M Balcerowicz, U Hoecker Trends in Plant Science 19 (12), 747-749, 2014 | 33 | 2014 |
Fluorescent biosensors illuminating plant hormone research M Balcerowicz, KN Shetty, AM Jones Plant Physiology 187 (2), 590-602, 2021 | 24 | 2021 |
An early-morning gene network controlled by phytochromes and cryptochromes regulates photomorphogenesis pathways in Arabidopsis M Balcerowicz, M Mahjoub, D Nguyen, H Lan, D Stoeckle, S Conde, ... Molecular plant 14 (6), 983-996, 2021 | 24 | 2021 |
RNA structure mediated thermoregulation: What can we learn from plants? SE Thomas, M Balcerowicz, BYW Chung Frontiers in Plant Science 13, 938570, 2022 | 12 | 2022 |
Ancient sun protection: the evolutionary origin of plant UV-B signaling M Balcerowicz Plant Physiology 188 (1), 29-31, 2022 | 6 | 2022 |
DEK influences the trade-off between growth and arrest via H2A. Z-nucleosomes in Arabidopsis A Brestovitsky, D Ezer, S Waidmann, SL Maslen, M Balcerowicz, S Cortijo, ... BioRxiv, 829226, 2019 | 6 | 2019 |
25 Years of thermomorphogenesis research: milestones and perspectives M Quint, C Delker, S Balasubramanian, M Balcerowicz, JJ Casal, ... Trends in Plant Science, 2023 | 4 | 2023 |
Coming into bloom: a light-sensitive transcription factor complex tells roses when to flower M Balcerowicz Plant Physiology 186 (2), 812-813, 2021 | 3 | 2021 |
Filling the grain: transcription factor OsNF-YB1 triggers auxin biosynthesis to boost rice grain size M Balcerowicz Plant Physiology 185 (3), 757-758, 2021 | 3 | 2021 |
A new order through disorder: intrinsically disordered proteins reshape the cytoskeleton under drought stress M Balcerowicz Plant physiology 183 (2), 425-426, 2020 | 3 | 2020 |
Thermomorphogenesis goes like clockwork: how the circadian clock fine‐tunes temperature responses through competing transcriptional repressors. M Balcerowicz New Phytologist 237 (1), 2023 | 2 | 2023 |
Tomatoes turn pale in the heat: high temperature reduces red and green pigmentation via phytochromes M Balcerowicz Plant physiology 183 (3), 810-811, 2020 | 2 | 2020 |