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Recently, we elucidated T. urticae’s repertoire of secreted salivary proteins, revealing several members of expanded protein families with unknown functions [PMID: 27703040]. In this study, mite salivary secretions were additionally examined using a peptidomics approach.
ORGANISM(S): Tetranychus urticae (Two-spotted spider mite) 
2017-09-14 | PXD006385 | Pride
The saliva from Bemisia tabaci (MED biotype) adults was collected using an artificial feeding system and analyzed using an LC-MS/MS proteomics analysis.
ORGANISM(S): Bemisia tabaci 
2024-01-26 | PXD033180 | Pride
The goal of our microarray experiments was to compare the gene expression profile of two spirodiclofen resistant spider mite strains (SR-VP and SR-TK) with that of a susceptible spider mite strain (LS-VL) 5 samples were analyzed: 3 biological replicates for SR-VP, 2 biological replicates for SR-TK
ORGANISM(S): Tetranychus urticae 
The goal of our microarray experiments was twofold: 1) Compare the gene expression profile of acaricide resistant spider mite strains (MAR-AB and MR-VP) with that of a susceptible spider mite strain (London); 2) Study gene expression changes in spider mites from the London strain upon transfer from ...
ORGANISM(S): Tetranychus urticae 
250 adult T. urticae females from the London strain (grown on acyanogenic P. vulgaris cv. Prelude bean plants) were transferred to cyanogenic P. lunatus cv. 8078 bean plants. Thirty-five generations after the host transfer, total RNA was extracted from mites growing on both bean species (London and...
ORGANISM(S): Tetranychus urticae 
Cyflumetofen is a novel acaricide on the international market with an unknown mode of action. Under laboratory conditions, we selected for high levels of cyflumetofen resistance in a susceptible mite strain and performed genome-wide gene-expression analysis. Differential expression between the resis...
ORGANISM(S): Tetranychus urticae 
Investigating essential physiological processes in diapausing mites by analyzing genome wide gene expression changes using custom-built microarray. We investigated the molecular biology of facultative reproductive diapause in the chelicerate Tetranychus urticae (Acari: Tetranychidae) by analyzing ge...
ORGANISM(S): Tetranychus urticae 
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