Frank Van Breusegem
Frank Van Breusegem
Hoogleraar Plant Biotechnology, Ghent University
Verified email at
Cited by
Cited by
Reactive oxygen gene network of plants
R Mittler, S Vanderauwera, M Gollery, F Van Breusegem
Trends in plant science 9 (10), 490-498, 2004
Dual action of the active oxygen species during plant stress responses
J Dat, S Vandenabeele, E Vranova, M Van Montagu, D Inzé*, ...
Cellular and Molecular Life Sciences CMLS 57, 779-795, 2000
ROS signaling: the new wave?
R Mittler, S Vanderauwera, N Suzuki, GAD Miller, VB Tognetti, ...
Trends in plant science 16 (6), 300-309, 2011
Signal transduction during oxidative stress
E Vranová, D Inzé, F Van Breusegem
Journal of experimental botany 53 (372), 1227-1236, 2002
Reactive oxygen species as signals that modulate plant stress responses and programmed cell death
TS Gechev, F Van Breusegem, JM Stone, I Denev, C Laloi
Bioessays 28 (11), 1091-1101, 2006
Reactive oxygen species in plant cell death
F Van Breusegem, JF Dat
Plant physiology 141 (2), 384-390, 2006
The role of active oxygen species in plant signal transduction
F Van Breusegem, E Vranová, JF Dat, D Inzé
Plant science 161 (3), 405-414, 2001
Catalase function in plants: a focus on Arabidopsis mutants as stress-mimic models
A Mhamdi, G Queval, S Chaouch, S Vanderauwera, F Van Breusegem, ...
Journal of experimental botany 61 (15), 4197-4220, 2010
Transcriptomic footprints disclose specificity of reactive oxygen species signaling in Arabidopsis
I Gadjev, S Vanderauwera, TS Gechev, C Laloi, IN Minkov, V Shulaev, ...
Plant physiology 141 (2), 436-445, 2006
How relevant are flavonoids as antioxidants in plants?
I Hernández, L Alegre, F Van Breusegem, S Munné-Bosch
Trends in plant science 14 (3), 125-132, 2009
Reactive oxygen species signalling in plant stress responses
R Mittler, SI Zandalinas, Y Fichman, F Van Breusegem
Nature reviews Molecular cell biology 23 (10), 663-679, 2022
Singlet oxygen is the major reactive oxygen species involved in photooxidative damage to plants
C Triantaphylides, M Krischke, FA Hoeberichts, B Ksas, G Gresser, ...
Plant physiology 148 (2), 960-968, 2008
Morphological classification of plant cell deaths
WG van Doorn, EP Beers, JL Dangl, VE Franklin-Tong, P Gallois, ...
Cell Death & Differentiation 18 (8), 1241-1246, 2011
Genome-wide analysis of hydrogen peroxide-regulated gene expression in Arabidopsis reveals a high light-induced transcriptional cluster involved in anthocyanin biosynthesis
S Vanderauwera, P Zimmermann, S Rombauts, S Vandenabeele, ...
Plant physiology 139 (2), 806-821, 2005
Reactive oxygen species in plant development
A Mhamdi, F Van Breusegem
Development 145 (15), dev164376, 2018
Induction of systemic resistance in tomato by N‐acyl‐L‐homoserine lactone‐producing rhizosphere bacteria
R Schuhegger, A Ihring, S Gantner, G Bahnweg, C Knappe, G Vogg, ...
Plant, Cell & Environment 29 (5), 909-918, 2006
Hydrogen peroxide—a central hub for information flow in plant cells
VD Petrov, F Van Breusegem
AoB plants 2012, pls014, 2012
Conditional oxidative stress responses in the Arabidopsis photorespiratory mutant cat2 demonstrate that redox state is a key modulator of daylength‐dependent gene expression, and …
G Queval, E Issakidis‐Bourguet, FA Hoeberichts, M Vandorpe, B Gakičre, ...
The Plant Journal 52 (4), 640-657, 2007
Arabidopsis type I metacaspases control cell death
NS Coll, D Vercammen, A Smidler, C Clover, F Van Breusegem, JL Dangl, ...
Science 330 (6009), 1393-1397, 2010
Perturbation of Indole-3-Butyric Acid Homeostasis by the UDP-Glucosyltransferase UGT74E2 Modulates Arabidopsis Architecture and Water Stress Tolerance
VB Tognetti, O Van Aken, K Morreel, K Vandenbroucke, B Van De Cotte, ...
The Plant Cell 22 (8), 2660-2679, 2010
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