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Plant Signaling & Behavior|November 6, 2010
A model of Ustilago maydis leaf tumor metabolismRobin J Horst, Gunther Doehlemann, Ramon Wahl, et al.Microbiology (Reading, England)|December 13, 2006
Repellents have functionally replaced hydrophobins in mediating attachment to a hydrophobic surface and in formation of hydrophobic aerial hyphae in Ustilago maydisWieke R Teertstra, Heine J Deelstra, Miroslav Vranes, et al.Plos Pathogens|July 18, 2014
Plant surface cues prime Ustilago maydis for biotrophic developmentDaniel Lanver, Patrick Berndt, Marie Tollot, et al.Genome Biology and Evolution|February 14, 2016
A Tale of Genome Compartmentalization: The Evolution of Virulence Clusters in Smut FungiJulien Y Dutheil, Gertrud Mannhaupt, Gabriel Schweizer, et al.Molecular Microbiology|January 28, 2009
Physical-chemical plant-derived signals induce differentiation in Ustilago maydisArtemio Mendoza-Mendoza, Patrick Berndt, Armin Djamei, et al.Annual Review of Plant Biology|April 30, 2015
Fungal effectors and plant susceptibilityLibera Lo Presti, Daniel Lanver, Gabriel Schweizer, et al.Plant Physiology|November 20, 2009
Ustilago maydis infection strongly alters organic nitrogen allocation in maize and stimulates productivity of systemic source leavesRobin J Horst, Gunther Doehlemann, Ramon Wahl, et al.Elife|January 30, 2014
A secreted Ustilago maydis effector promotes virulence by targeting anthocyanin biosynthesis in maizeShigeyuki Tanaka, Thomas Brefort, Nina Neidig, et al.Mbio|March 3, 2021
Chitosan and Chitin Deacetylase Activity Are Necessary for Development and Virulence of Ustilago maydisYanina S Rizzi, Petra Happel, Sandra Lenz, et al.The Journal of Biological Chemistry|May 1, 2020
The two paralogous kiwellin proteins KWL1 and KWL1-b from maize are structurally related and have overlapping functions in plant defenseFlorian Altegoer, Paul Weiland, Pietro Ivan Giammarinaro, et al.Pageof 10