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Single- versus Multiple-Pest Infestation Affects Differently the Biochemistry of Tomato (Solanum lycopersicum ‘Ailsa Craig’)

GND
1126280852
Zugehörigkeit
Leibniz Institute of Vegetable and Ornamental Crops (IGZ), Theodor-Echtermeyer-Weg 1, 14979 Großbeeren, Germany; Institute of Nutritional Science, University of Potsdam, Arthur Scheunert-Allee 114-116, 14558 Nuthethal, Germany
Errard, Audrey;
GND
122530187
Zugehörigkeit
Faculty of Life Sciences, Urban Plant Ecophysiology, Humboldt-Universität zu Berlin, Lentzeallee 55/57, 14195 Berlin, Germany
Ulrichs, Christian;
GND
1029218943
Zugehörigkeit
Julius Kühn-Institute (JKI), Institute for Strategies and Technology Assessment, Germany
Kühne, Stefan;
GND
123366747
Zugehörigkeit
Julius Kühn-Institute (JKI), Institute for Ecological Chemistry, Plant Analysis and Stored Product Protection, Germany
Mewis, Inga;
Zugehörigkeit
Leibniz Institute of Vegetable and Ornamental Crops (IGZ), Theodor-Echtermeyer-Weg 1, 14979 Großbeeren, Germany
Drungowski, Mario;
GND
130574325
Zugehörigkeit
Leibniz Institute of Vegetable and Ornamental Crops (IGZ), Theodor-Echtermeyer-Weg 1, 14979 Großbeeren, Germany
Schreiner, Monika;
GND
134202074
Zugehörigkeit
Leibniz Institute of Vegetable and Ornamental Crops (IGZ), Theodor-Echtermeyer-Weg 1, 14979 Großbeeren, Germany; Institute of Nutritional Science, University of Potsdam, Arthur Scheunert-Allee 114-116, 14558 Nuthethal, Germany
Baldermann, Susanne

Tomato is susceptible to pest infestations by both spider mites and aphids. The effects of each individual pest on plants are known, whereas multiple-pest infestations have received little interest. We studied the effects of single- versus multiple-pest infestation by Tetranychus urticae and Myzus persicae on tomato biochemistry (Solanum lycopersicum) by combining a metabolomic approach and analyses of carotenoids using UHPLC-ToF-MS and volatiles using GC-MS. Plants responded differently to aphids and mites after 3 weeks of infestation, and a multiple infestation induced a specific metabolite composition in plants. In addition, we showed that volatiles emissions differed between the adaxial and abaxial leaf epidermes and identified compounds emitted particularly in response to a multiple infestation (cyclohexadecane, dodecane, aromadendrene, and β-elemene). Finally, the carotenoid concentrations in leaves and stems were more affected by multiple than single infestations. Our study highlights and discusses the interplay of biotic stressors within the terpenoid metabolism.

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