Data from: Symbiont-mediated RNA interference in insects

RNA interference (RNAi) methods for insects are often limited by problems with double-stranded (ds) RNA delivery, which restricts reverse genetics studies and the development of RNAi-based biocides. We therefore delegated to insect symbiotic bacteria the task of: (i) constitutive dsRNA synthesis and...

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Hauptverfasser: Whitten, Miranda M. A., Facey, Paul D., Del Sol, Ricardo, Fernandez, Lorena T., Evans, Meirwyn C., Mitchell, Jacob J., Bodger, Owen G., Dyson, Paul J.
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creator Whitten, Miranda M. A.
Facey, Paul D.
Del Sol, Ricardo
Fernandez, Lorena T.
Evans, Meirwyn C.
Mitchell, Jacob J.
Bodger, Owen G.
Dyson, Paul J.
description RNA interference (RNAi) methods for insects are often limited by problems with double-stranded (ds) RNA delivery, which restricts reverse genetics studies and the development of RNAi-based biocides. We therefore delegated to insect symbiotic bacteria the task of: (i) constitutive dsRNA synthesis and (ii) trauma-free delivery. RNaseIII-deficient, dsRNA-expressing bacterial strains were created from the symbionts of two very diverse pest species: a long-lived blood-sucking bug, Rhodnius prolixus, and a short-lived globally invasive polyphagous agricultural pest, Western Flower Thrips (Frankliniella occidentalis). When ingested, the manipulated bacteria colonized the insects, successfully competed with the wildtype microflora, and sustainably mediated systemic knockdown phenotypes that were horizontally transmissible. This represents a significant advance in the ability to deliver RNAi, potentially to a large range of non-model insects.
doi_str_mv 10.5061/dryad.sf937
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subjects biocide
Chagas disease
RNA interference
symbiotic bacteria
title Data from: Symbiont-mediated RNA interference in insects
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