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Topical delivery of dsRNA in two hemipteran species: Evaluation of RNAi specificity and non-target effects. | LitMetric

AI Article Synopsis

  • Double-stranded RNA (dsRNA) technology shows promise for targeting pests like Halyomorpha halys, but requires effective delivery methods and assessment of impacts on non-target species.
  • In experiments, certain dsRNA genes (IAP and ATPase) caused significant mortality in H. halys, whereas the same RNAs had no effect on a closely related insect, Rhodnius prolixus, indicating the need for specificity in pest management.
  • The study suggests that topical dsRNA delivery can effectively control H. halys while minimizing harm to non-target species, highlighting its potential as a precise pest management tool.

Article Abstract

Double-stranded (ds) RNA-based technologies could provide novel and potential tool for pest management with efficiency and specificity of action. However, before applying this technique in the field, it is necessary to identify effective delivery methods and evaluate the non-target effects that may occur. In this article, we evaluated the effectiveness of dsRNA by topical delivery on a species of great agricultural interest, Halyomorpha halys. The specificity of action of the dsRNA was also investigated in Rhodnius prolixus, an insect phylogenetically close to H. halys. Of the three investigated genes (putative ATPase N2B, ATPase, serine/threonine-protein phosphatase PP1-β catalytic subunit, PP1, and IAP repeat-containing protein 7-B-like, IAP), IAP and ATPase were able to induce higher mortality in H. halys nymphs compared to the control, with specific concentrations for each gene targeted. However, when the same RNAs were topically delivered to both R. prolixus 2nd and 3rd instar nymphs, no gene silencing and mortality were observed. For this reason, to assess dsRNA application-mediated non-target effects, we injected both H. halys and R. prolixus specific dsRNA in R. prolixus 5th instar nymphs. When the dsRNA targeting H. halys IAP was microinjected into R. prolixus 5th instar nymphs, no mortality was observed, suggesting a strong RNAi specificity. Together, these data suggest that the topical delivery could be suitable for the dsRNA to control H. halys population. Furthermore, its specificity of action would allow treatments towards single harmful species with limited non-target effects.

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Source
http://dx.doi.org/10.1016/j.pestbp.2022.105295DOI Listing

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