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Frontiers in Microbiology|June 15, 2017
The Protein Disulfide Isomerase of Botrytis cinerea: An ER Protein Involved in Protein Folding and Redox Homeostasis Influences NADPH Oxidase Signaling ProcessesRobert Marschall, Paul TudzynskiSeminars in Cell & Developmental Biology|April 4, 2016
Reactive oxygen species in development and infection processesRobert Marschall, Paul TudzynskiMolecular Microbiology|April 11, 2016
BcIqg1, a fungal IQGAP homolog, interacts with NADPH oxidase, MAP kinase and calcium signaling proteins and regulates virulence and development in Botrytis cinereaRobert Marschall, Paul TudzynskiFungal Genetics and Biology : FG & B|September 16, 2014
A new and reliable method for live imaging and quantification of reactive oxygen species in Botrytis cinerea: technological advancementRobert Marschall, Paul TudzynskiMolecular Microbiology|November 18, 2014
BcNoxD, a putative ER protein, is a new component of the NADPH oxidase complex in Botrytis cinereaUlrike Siegmund, Robert Marschall, Paul TudzynskiFungal Biology and Biotechnology|September 29, 2017
Update on Nox function, site of action and regulation in Botrytis cinereaRobert Marschall, Ulrike Siegmund, Joachim Burbank, et al.Fungal Genetics and Biology : FG & B|March 19, 2016
Chasing stress signals - Exposure to extracellular stimuli differentially affects the redox state of cell compartments in the wild type and signaling mutants of Botrytis cinereaRobert Marschall, Julia Schumacher, Ulrike Siegmund, et al.Pageof 1