Gene silencing in Tribolium castaneum as a tool for the targeted identification of candidate RNAi targets in crop pests
RNAi shows potential as an agricultural technology for insect control, yet, a relatively low number of robust lethal RNAi targets have been demonstrated to control insects of agricultural interest. In the current study, a selection of lethal RNAi target genes from the iBeetle ( Tribolium castaneum )...
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Veröffentlicht in: | Scientific reports 2018-02, Vol.8 (1), p.2061-15, Article 2061 |
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Sprache: | eng |
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Zusammenfassung: | RNAi shows potential as an agricultural technology for insect control, yet, a relatively low number of robust lethal RNAi targets have been demonstrated to control insects of agricultural interest. In the current study, a selection of lethal RNAi target genes from the iBeetle (
Tribolium castaneum
) screen were used to demonstrate efficacy of orthologous targets in the economically important coleopteran pests
Diabrotica virgifera virgifera
and
Meligethes aeneus
. Transcript orthologs of 50 selected genes were analyzed in
D
.
v
.
virgifera
diet-based RNAi bioassays; 21 of these RNAi targets showed mortality and 36 showed growth inhibition. Low dose injection- and diet-based dsRNA assays in
T
.
castaneum
and
D
.
v
.
virgifera
, respectively, enabled the identification of the four highly potent RNAi target genes:
Rop
,
dre4
,
ncm
, and
RpII140
. Maize was genetically engineered to express dsRNA directed against these prioritized candidate target genes. T
0
plants expressing
Rop
,
dre4
, or
RpII140
RNA hairpins showed protection from
D
.
v
.
virgifera
larval feeding damage. dsRNA targeting
Rop
,
dre4
,
ncm
, and
RpII140
in
M
.
aeneus
also caused high levels of mortality both by injection and feeding. In summary, high throughput systems for model organisms can be successfully used to identify potent RNA targets for difficult-to-work with agricultural insect pests. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-018-20416-y |