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BMC Biology|January 29, 2016
Q&A: How do plants respond to ethylene and what is its importance?Caren ChangTrends in Plant Science|August 21, 2003
Ethylene signaling: the MAPK module has finally landedCaren ChangLife Science Alliance|September 29, 2025
Antioxidant properties of dihydroxy B-ring flavonoids modulate circadian amplitude in ArabidopsisEvan S Littleton, Sherry B Hildreth, Shihoko Kojima, et al.Aob PLANTS|November 3, 2012
Advances in ethylene signalling: protein complexes at the endoplasmic reticulum membraneChuanli Ju, Caren ChangPlant Physiology|August 7, 2015
Mechanistic Insights in Ethylene Perception and Signal TransductionChuanli Ju, Caren ChangThe Plant Cell|February 5, 2002
Arabidopsis RGL1 encodes a negative regulator of gibberellin responsesChi-Kuang Wen, Caren ChangCurrent Opinion in Plant Biology|August 12, 2008
Ethylene signaling: new levels of complexity and regulationMandy D Kendrick, Caren ChangPlant Science : an International Journal of Experimental Plant Biology|July 25, 2008
The role of protein turnover in ethylene biosynthesis and responseChristopher A McClellan, Caren ChangScientific Reports|December 15, 2020
Genome-wide correlation analysis to identify amplitude regulators of circadian transcriptome outputEvan S Littleton, Madison L Childress, Michaela L Gosting, et al.Plant & Cell Physiology|July 2, 2011
Accumulation of γ- rather than α-tocopherol alters ethylene signaling gene expression in the vte4 mutant of Arabidopsis thalianaJana Cela, Caren Chang, Sergi Munné-BoschPageof 5