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Plant Physiology|June 2, 2016
Ethylene Regulates the Physiology of the Cyanobacterium Synechocystis sp. PCC 6803 via an Ethylene ReceptorRandy F Lacey, Brad M BinderJournal of Inorganic Biochemistry|February 4, 2014
How plants sense ethylene gas--the ethylene receptorsRandy F Lacey, Brad M BinderApplied Microbiology and Biotechnology|January 16, 2019
Engineering and characterization of copper and gold sensors in Escherichia coli and Synechococcus sp. PCC 7002Randy F Lacey, Dongmei Ye, Anne M RuffingPlant Direct|June 28, 2019
Ethylene causes transcriptomic changes in Synechocystis during phototaxisRandy F Lacey, Cidney J Allen, Arkadipta Bakshi, et al.The New Phytologist|May 20, 2015
Dominant gain-of-function mutations in transmembrane domain III of ERS1 and ETR1 suggest a novel role for this domain in regulating the magnitude of ethylene response in ArabidopsisStephen D Deslauriers, Ashley A Alvarez, Randy F Lacey, et al.Plant Physiology|July 11, 2015
Identification of Regions in the Receiver Domain of the ETHYLENE RESPONSE1 Ethylene Receptor of Arabidopsis Important for Functional DivergenceArkadipta Bakshi, Rebecca L Wilson, Randy F Lacey, et al.FEMS Microbiology Letters|August 27, 2021
The Fatty Acid Methyl Ester (FAME) profile of Phytophthora agathidicida and its potential use as diagnostic toolRandy F Lacey, Blake A Sullivan-Hill, Julie R Deslippe, et al.Frontiers in Plant Science|August 17, 2019
Cyanobacteria Respond to Low Levels of EthyleneCidney J Allen, Randy F Lacey, Alixandri B Binder Bickford, et al.FEMS Microbes|June 19, 2023
Assessing the effectiveness of oxathiapiprolin toward Phytophthora agathidicida, the causal agent of kauri dieback diseaseRandy F Lacey, Michael J Fairhurst, Kaitlyn J Daley, et al.Plos Genetics|April 8, 2017
Triplin, a small molecule, reveals copper ion transport in ethylene signaling from ATX1 to RAN1Wenbo Li, Randy F Lacey, Yajin Ye, et al.Pageof 2