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Current Opinion in Plant Biology|May 31, 2021
Metabolic regulation of systemic acquired resistanceJürgen ZeierPlant, Cell & Environment|April 25, 2013
New insights into the regulation of plant immunity by amino acid metabolic pathwaysJürgen ZeierThe Plant Journal : for Cell and Molecular Biology|May 7, 2010
A role for beta-sitosterol to stigmasterol conversion in plant-pathogen interactionsThomas Griebel, Jürgen ZeierThe Plant Journal : for Cell and Molecular Biology|July 24, 2018
l-lysine metabolism to N-hydroxypipecolic acid: an integral immune-activating pathway in plantsMichael Hartmann, Jürgen ZeierFrontiers in Plant Science|February 27, 2013
Long-distance communication and signal amplification in systemic acquired resistanceJyoti Shah, Jürgen ZeierPlant Physiology|April 25, 2008
Light regulation and daytime dependency of inducible plant defenses in Arabidopsis: phytochrome signaling controls systemic acquired resistance rather than local defenseThomas Griebel, Jürgen ZeierCurrent Opinion in Plant Biology|March 31, 2019
N-hydroxypipecolic acid and salicylic acid: a metabolic duo for systemic acquired resistanceMichael Hartmann, Jürgen ZeierPhysiologia Plantarum|February 7, 2008
Bacterial non-host resistance: interactions of Arabidopsis with non-adapted Pseudomonas syringae strainsTatiana E Mishina, Jürgen ZeierPlant Physiology|June 17, 2006
The Arabidopsis flavin-dependent monooxygenase FMO1 is an essential component of biologically induced systemic acquired resistanceTatiana E Mishina, Jürgen ZeierThe Plant Journal : for Cell and Molecular Biology|April 11, 2007
Pathogen-associated molecular pattern recognition rather than development of tissue necrosis contributes to bacterial induction of systemic acquired resistance in ArabidopsisTatiana E Mishina, Jürgen ZeierPageof 6