Key message: Cucumber plants adapt their transcriptome and metabolome as result of spider mite infestation with opposite consequences for direct and indirect defences in two genotypes. Abstract: Plants respond to arthropod attack with the rearrangement of their transcriptome which lead to subsequent phenotypic changes in the plants’ metabolome. Here, we analysed transcriptomic and metabolite responses of two cucumber (Cucumis sativus) genotypes to chelicerate spider mites (Tetranychus urticae) during the first 3 days of infestation. Genes associated with the metabolism of jasmonates, phenylpropanoids, terpenoids and l-phenylalanine were most strongly upregulated. Also, genes involved in the biosynthesis of precursors for indirect defence-re...
Plants evolved multiple strategies to defend themselves against herbivores. Compared with constituti...
Plants regulate responses towards herbivory through fine-tuning of defence-related hormone productio...
Plants regulate responses towards herbivory through fine-tuning of defence-related hormone productio...
Many plants have an indirect defense against herbivores by emitting volatiles that attract carnivoro...
Many plants have an indirect defense against herbivores by emitting volatiles that attract carnivoro...
Many plants have an indirect defense against herbivores by emitting volatiles that attract carnivoro...
To gain insight into the regulatory networks that underlie the induced defense in cucumber against s...
In response to feeding by herbivorous insects many plant species produce volatile compounds, particu...
In response to feeding by herbivorous insects many plant species produce volatile compounds, particu...
Plants have evolved mechanisms to combat herbivory. These mechanisms can be classified as direct def...
Plants regulate responses towards herbivory through fine-tuning of defence-related hormone productio...
Plants regulate responses towards herbivory through fine-tuning of defence-related hormone productio...
Plants regulate responses towards herbivory through fine-tuning of defence-related hormone productio...
Plants have evolved mechanisms to combat herbivory. These mechanisms can be classified as direct def...
Plants evolved multiple strategies to defend themselves against herbivores. Compared with constituti...
Plants evolved multiple strategies to defend themselves against herbivores. Compared with constituti...
Plants regulate responses towards herbivory through fine-tuning of defence-related hormone productio...
Plants regulate responses towards herbivory through fine-tuning of defence-related hormone productio...
Many plants have an indirect defense against herbivores by emitting volatiles that attract carnivoro...
Many plants have an indirect defense against herbivores by emitting volatiles that attract carnivoro...
Many plants have an indirect defense against herbivores by emitting volatiles that attract carnivoro...
To gain insight into the regulatory networks that underlie the induced defense in cucumber against s...
In response to feeding by herbivorous insects many plant species produce volatile compounds, particu...
In response to feeding by herbivorous insects many plant species produce volatile compounds, particu...
Plants have evolved mechanisms to combat herbivory. These mechanisms can be classified as direct def...
Plants regulate responses towards herbivory through fine-tuning of defence-related hormone productio...
Plants regulate responses towards herbivory through fine-tuning of defence-related hormone productio...
Plants regulate responses towards herbivory through fine-tuning of defence-related hormone productio...
Plants have evolved mechanisms to combat herbivory. These mechanisms can be classified as direct def...
Plants evolved multiple strategies to defend themselves against herbivores. Compared with constituti...
Plants evolved multiple strategies to defend themselves against herbivores. Compared with constituti...
Plants regulate responses towards herbivory through fine-tuning of defence-related hormone productio...
Plants regulate responses towards herbivory through fine-tuning of defence-related hormone productio...