| 2013 | Giulia Furlan, Jörn Klinkenberg and Marco Trujillo*: Regulation of plant immune receptors by ubiquitination. In: Frontiers in Plant Science , 2013, |
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| 2012 | Martin Stegmann, Ryan G. Anderson, Kazuya Ichimura, Tamara Pecenkova, Patrick Reuter, Viktor árský, John M. McDowell, Ken Shirasu and Marco Trujillo*: The Ubiquitin Ligase PUB22 Targets a Subunit of the
Exocyst Complex Required for PAMP-Triggered
Responses in Arabidopsis. In: The Plant Cell, 2012, 4703-4716 |
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| 2011 | Sophie Jacob, Bernd Zechmann, Alexandra Molitor, Marco Trujillo, Elena Petutschnig, Volker Likpa, Karl-Heinz Kogel and Patrick Schäfer Broad Spectrum Suppression of Innate Immunity Is Required for Colonization of Arabidopsis thaliana Roots by the Fungus Piriformospora indica. In: Plant Physiology, 2011, 726-740 |
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| 2010 | Marco Trujillo* and Ken Shirasu*: Ubiquitination in Plant Immunity. In: Current Opinion in Plant Biology , 2010, 402-408 |
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| 2008 | Marco Trujillo, Kazuya Ichimura, Catarina Casais and Ken Shirasu: Negative regulation of PAMP-triggered immunity by E3 ubitquitin ligase triplet in Arabidopsis. . In: Current Biology , 2008, 1396-1401 |
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| 2006 | Marco Trujillo, Lother Altschmied, Patrick Schweizer, Karl-Heinz Kogel and Ralph Hückelhoven Respiratory Burst Oxidase Homologue A of barley contributes to penetration by the powdery mildew fungus Blumeria graminis f.sp. hordei. . In: Journal of Experimental Botany, 2006, 3781-3791 |
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| 2005 | Marco Trujillo, Karl-Heinz Kogel and Ralph Hückelhoven: Superoxide and hydrogen peroxide play different roles in the nonhost interaction of barley and wheat with inappropiate formae speciales of Blumeria graminis. In: Molecular Plant Microbe Interactions, 2005, 304-312 |
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| 2004 | Marco Trujillo, Markus Tröger, Rients E. Niks, Karl-Heinz Kogel and Ralph Hückelhoven Mechanistic and genetic overlap of barley host and non-host resistance to Blumeria graminis. In: Molecular Plant Pathology, 2004, 389-396 |
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| 2004 | Karl-Heinz Kogel, Ralph Hückelhoven and Marco Trujillo: Method for obtaining the pathogenic resistance in plants. The invention relates to a method for obtaining or increasing the pathogenic resistance in plants by reducing the expression, activity or the functioning of a NADPH oxidase. . In: Patent: WO 2004/009820 A1, 2004, |
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