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« Previous AbstractHow plants handle multiple stresses: hormonal interactions underlying responses to abiotic stress and insect herbivory    Next AbstractFlow-mediated olfactory communication in honeybee swarms »

Int J Mol Sci


Title:Interactive Responses of Solanum Dulcamara to Drought and Insect Feeding are Herbivore Species-Specific
Author(s):Nguyen D; Poeschl Y; Lortzing T; Hoogveld R; Gogol-Doring A; Cristescu SM; Steppuhn A; Mariani C; Rieu I; van Dam NM;
Address:"Molecular Interaction Ecology, Institute of Water and Wetland Research, Radboud University, P.O. Box 9010, 6500 GL Nijmegen, The Netherlands. duy.nguyen@science.ru.nl. Molecular Plant Physiology, Institute for Water and Wetland Research, Radboud University, PO Box 9010, 6500 GL Nijmegen, The Netherlands. duy.nguyen@science.ru.nl. German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, Deutscher Platz 5e, 04103 Leipzig, Germany. yvonne.poeschl@informatik.uni-halle.de. Institute of Computer Science, Martin Luther University Halle-Wittenberg, Von-Seckendorff-Platz 1, 06108 Halle, Germany. yvonne.poeschl@informatik.uni-halle.de. Molecular Ecology, Institute of Biology, Dahlem Centre of Plant Sciences, Freie Universitat Berlin, Albrecht-Thaer-Weg 6, 14195 Berlin, Germany. tobias.lortzing@fu-berlin.de. Molecular Interaction Ecology, Institute of Water and Wetland Research, Radboud University, P.O. Box 9010, 6500 GL Nijmegen, The Netherlands. rickhoogveld1990@gmail.com. German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, Deutscher Platz 5e, 04103 Leipzig, Germany. andreas.gogol-doering@mni.thm.de. Institute of Computer Science, Martin Luther University Halle-Wittenberg, Von-Seckendorff-Platz 1, 06108 Halle, Germany. andreas.gogol-doering@mni.thm.de. Molecular and Laser Physics, Institute for Molecules and Materials, Radboud University, PO Box 9010, 6500 GL Nijmegen, The Netherlands. s.cristescu@science.ru.nl. Molecular Ecology, Institute of Biology, Dahlem Centre of Plant Sciences, Freie Universitat Berlin, Albrecht-Thaer-Weg 6, 14195 Berlin, Germany. a.steppuhn@fu-berlin.de. Molecular Plant Physiology, Institute for Water and Wetland Research, Radboud University, PO Box 9010, 6500 GL Nijmegen, The Netherlands. c.mariani@science.ru.nl. Molecular Plant Physiology, Institute for Water and Wetland Research, Radboud University, PO Box 9010, 6500 GL Nijmegen, The Netherlands. i.rieu@science.ru.nl. Molecular Interaction Ecology, Institute of Water and Wetland Research, Radboud University, P.O. Box 9010, 6500 GL Nijmegen, The Netherlands. nicole.vandam@idiv.de. German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, Deutscher Platz 5e, 04103 Leipzig, Germany. nicole.vandam@idiv.de. Institute of Biodiversity, Friedrich Schiller University Jena, Dornburger-Str. 159, 07743 Jena, Germany. nicole.vandam@idiv.de"
Journal Title:Int J Mol Sci
Year:2018
Volume:20181203
Issue:12
Page Number: -
DOI: 10.3390/ijms19123845
ISSN/ISBN:1422-0067 (Electronic) 1422-0067 (Linking)
Abstract:"In nature, plants are frequently subjected to multiple biotic and abiotic stresses, resulting in a convergence of adaptive responses. We hypothesised that hormonal signalling regulating defences to different herbivores may interact with drought responses, causing distinct resistance phenotypes. To test this, we studied the hormonal and transcriptomic responses of Solanum dulcamara subjected to drought and herbivory by the generalist Spodoptera exigua (beet armyworm; BAW) or the specialist Leptinotarsa decemlineata (Colorado potato beetle; CPB). Bioassays showed that the performance of BAW, but not CPB, decreased on plants under drought compared to controls. While drought did not alter BAW-induced hormonal responses, it enhanced the CPB-induced accumulation of jasmonic acid and salicylic acid (SA), and suppressed ethylene (ET) emission. Microarray analyses showed that under drought, BAW herbivory enhanced several herbivore-induced responses, including cell-wall remodelling and the metabolism of carbohydrates, lipids, and secondary metabolites. In contrast, CPB herbivory enhanced several photosynthesis-related and pathogen responses in drought-stressed plants. This may divert resources away from defence production and increase leaf nutritive value. In conclusion, while BAW suffers from the drought-enhanced defences, CPB may benefit from the effects of enhanced SA and reduced ET signalling. This suggests that the fine-tuned interaction between the plant and its specialist herbivore is sustained under drought"
Keywords:"Animals Cluster Analysis Coleoptera/drug effects/physiology *Droughts Gene Expression Regulation, Plant/drug effects Herbivory/drug effects/*physiology Plant Growth Regulators/pharmacology Solanum/drug effects/genetics/*physiology Species Specificity Spod;"
Notes:"MedlineNguyen, Duy Poeschl, Yvonne Lortzing, Tobias Hoogveld, Rick Gogol-Doring, Andreas Cristescu, Simona M Steppuhn, Anke Mariani, Celestina Rieu, Ivo van Dam, Nicole M eng 844.10.001/Nederlandse Organisatie voor Wetenschappelijk Onderzoek/ Switzerland 2018/12/06 Int J Mol Sci. 2018 Dec 3; 19(12):3845. doi: 10.3390/ijms19123845"

 
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