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Emerald Ash Borer Specific Gene Silencing Has No Effect on Non-target Organisms

Producción científica: Articlerevisión exhaustiva

28 Citas (Scopus)

Resumen

The sequence complementarity of the RNA interference (RNAi) pathway allows for targeted suppression of genes essential for insect survival, and enables development of pest management strategies specific to a given species while reducing the likelihood of adversely impacting non-target organisms (NTOs). The feasibility of manipulating the RNAi pathway to cause mortality in the highly invasive emerald ash borer (EAB) has been demonstrated. Here the spectrum of activity of three double stranded RNAs (dsRNAs) targeting the genes hsp, shi, and sn-rnp in EAB was evaluated in model insects representing five functional guilds including herbivore, predator, detritivore, pollinator, parasitoid; the last represented by the classical biological control agents currently deployed for EAB management in North America. All NTOs were exposed to EAB-specific dsRNAs in diet bioassays that measured potential lethal effects. Gene expression and in silico analysis were also assessed on NTOs for which gene sequences were publicly available. Bioassays demonstrated no lethal effects on our model insects, suggesting a narrow spectrum of activity for the three EAB-specific dsRNAs evaluated. The gene expression and in silico analyses suggest potential sublethal effects on our model pollinator; however we found no effects on insect survival. Overall, our results suggest no adverse effects of the RNAi strategy targeting EAB genes on the survival of the selected non-target organisms we evaluated. The results from this study provide guidance for future RNAi risk analyses that will allow this technology to move forward to a deployment stage.

Idioma originalEnglish
Número de artículo608827
PublicaciónFrontiers in Agronomy
Volumen2
DOI
EstadoPublished - dic 15 2020

Nota bibliográfica

Publisher Copyright:
Copyright © 2020 Pampolini and Rieske.

Financiación

that the EAB dsRNAs had no impact on termite survival. This is supported by the in silico analysis, and by the gene expression study evaluating mRNA levels of the hsp gene.

FinanciadoresNúmero del financiador
U.S. Department of Agriculture
University of Kentucky
Kentucky Agricultural Experiment Station2352657000

    ASJC Scopus subject areas

    • Agronomy and Crop Science
    • Agricultural and Biological Sciences (miscellaneous)
    • Plant Science
    • Soil Science

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