Forschungsgruppe Pflanzliche Verteidigung
Zeitschriftenartikel (164)
2005
Zeitschriftenartikel
137 (3), S. 1160 - 1168 (2005)
Effects of feeding Spodoptera littoralis on lima bean leaves. II. Continuous mechanical wounding resembling insect feeding is sufficient to elicit herbivory-related volatile emission. Plant Physiology 2004
Zeitschriftenartikel
279 (2), S. 1132 - 1140 (2004)
An ancient enzyme domain hidden in the putative beta-glucan elicitor receptor of soybean may play an active part in the perception of pathogen-associated molecular patterns during broad host resistance. The Journal of Biological Chemistry
Zeitschriftenartikel
566 (1-3), S. 1 - 5 (2004)
Biotic and heavy metal stress response in plants: evidence for common signals. FEBS Letters 2003
Zeitschriftenartikel
384 (3), S. 437 - 446 (2003)
The role of octadecanoids and functional mimics in soybean defense responses. Biological Chemistry Buchkapitel (5)
2019
Buchkapitel
1875, S. 345 - 358 (Hg. Walker, J. M.). Humana Press, Clifton, N.J. (2019)
Quantification of phytohormones by HPLC-MS/MS including phytoplasma-infected plants. In: Methods in Molecular Biology, Bd. 2016
Buchkapitel
45, S. 39 - 48 (Hg. Bayer. Akademie der Wissenschaften). Pfeil, München (2016)
Chemische Signale bei Pflanzen-Herbivoren-Interaktionen. In: Die Sprache der Moleküle – Chemische Kommunikation in der Natur, Bd.
Buchkapitel
General mechanisms of plant defense and plant toxins. In: Plant Toxins, S. 1 - 22 (Hg. Gopalakrishnakone et al., P.). Springer, Dordrecht (2016)
2013
Buchkapitel
Electrical long distance signaling in plants. In: Long-Distance Systemic Signaling and Communication in Plants, S. 291 - 308 (Hg. Baluska, F.). Springer, Heidelberg (2013)
2009
Buchkapitel
Chemical ecology of plant-insect interactions. In: Plant Disease Resistance, S. 261 - 291 (Hg. Parker, J.). Wiley-Blackwell, Chichester (2009)