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Comparative transcriptomics of tomato plants simultaneously infested with different species of herbivorous mites reveals distinct signatures of host defense suppression
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Whole genome tomato transcriptional response to Tetranychus urticae herbivory
PubMed Similar studies Analyze with GEO2R
Whole genome tomato transcriptional response to jasmonic acid treatment and Tetranychus urticae herbivory [def-1]
Whole genome tomato transcriptional response to Tetranychus urticae herbivory [Heinz1706]
Whole genome tomato transcriptional response to tomato-adapted and non-adapted Tetranychus urticae herbivory
Host plant adaptation of a polyphagous herbivore shapes transcriptome of both herbivore and host
Reciprocal transcriptional responses in the interaction between Arabidopsis thaliana and Tetranychus urticae.
Spider mite responses to feeding on Col-0, myb28 myb29 cyp79b2 cyp79b3, and atr1D Arabidopsis plants
A link between host plant adaptation and pesticide resistance in the polyphagous spider mite Tetranychus urticae
Maize transcriptional responses to specialist and generalist spider mite herbivores
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Barley transcriptional responses to specialist and generalist spider mite herbivores
Lasting consequences of psyllid (Bactericera cockerelli L.) infestation on tomato defense, gene expression, and growth
Genome wide gene-expression analysis of the spider mite Tetranychus urticae after transfer from their common host (bean) to either cotton, maize or soy
Genome wide gene-expression analysis of the spider mite Tetranychus urticae after long term host transfer from acyanogenic Phaseolus vulgaris cv. 'Prelude' bean plants to cyanogenic Phaseolus lunatus cv. '8078' bean plants
Gene expression data for body versus head samples for detection of genes with enriched expression in salivary glands of the spider mite Tetranychus urticae
Whole genome tomato transcriptional response to Tetranychus evansi herbivory.
Identification of tomato genes responsive to loliolide, a metabolite of carotenoid metabolic pathways
Contrasting defence mechanisms against spider mite infestation in Cyanogenic and Non-Cyanogenic legumes
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