| Literature DB >> 27518813 |
Yueqin Wang1, Yidong Wang1, Zhenying Wang1, Alejandra Bravo2, Mario Soberón2, Kanglai He1.
Abstract
The Asian corn borer (ACB), Ostrinia furnacalis (Guenée) (Lepidoptera: Crambidae), is the most destructive insect pest of corn in China. Susceptibility to the Cry1F toxin derived from Bacillus thuringiensis has been demonstrated for ACB, suggesting the potential for Cry1F inclusion as part of an insect pest management program. Insects can develop resistance to Cry toxins, which threatens the development and use of Bt formulations and Bt crops in the field. To determine possible resistance mechanisms to Cry1F, a Cry1F-resistant colony of ACB (ACB-FR) that exhibited more than 1700-fold resistance was established through selection experiments after 49 generations of selection under laboratory conditions. The ACB-FR strain showed moderate cross-resistance to Cry1Ab and Cry1Ac of 22.8- and 26.9-fold, respectively, marginally cross-resistance to Cry1Ah (3.7-fold), and no cross-resistance to Cry1Ie (0.6-fold). The bioassay responses of progeny from reciprocal F1 crosses to different Cry1 toxin concentrations indicated that the resistance trait to Cry1Ab, Cry1Ac and Cry1F has autosomal inheritance with no maternal effect or sex linked. The effective dominance (h) of F1 offspring was calculated at different concentrations of Cry1F, showing that h decreased as concentration of Cry1F increased. Finally, the analysis of actual and expected mortality of the progeny from a backcross (F1 × resistant strain) indicated that the inheritance of the resistance to Cry1F in ACB-FR was due to more than one locus. The present study provides an understanding of the genetic basis of Cry1F resistance in ACB-FR and also shows that pyramiding Cry1F with Cry1Ah or Cry1Ie could be used as a strategy to delay the development of ACB resistance to Bt proteins.Entities:
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Year: 2016 PMID: 27518813 PMCID: PMC4982602 DOI: 10.1371/journal.pone.0161189
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Toxicity of 5 Bt toxins against the Asian corn borer strains ACB-BtS and ACB-FR.
| Bt toxin | ACB-strains | n | LC50 (95%FL) (μg/g) | RR | Slope±SE | χ2 | df (χ2) |
|---|---|---|---|---|---|---|---|
| Cry1F | ACB-BtS | 672 | 0.57 (0.36–0.83) | - | 2.76 ± 0.36 | 11.5 | 10 |
| ACB-FR | 1248 | >1000 | >1754 | nd | nd | 22 | |
| Cry1Ab | ACB-BtS | 672 | 0.23 (0.14–0.33) | - | 2.76 ± 0.40 | 16.9 | 10 |
| ACB-FR | 672 | 5.13 (4.12–6.27) | 22.8 (16.9–30.9) | 2.51 ± 0.40 | 5.1 | 10 | |
| Cry1Ac | ACB-BtS | 768 | 0.18 (0.06–0.33) | - | 1.11 ± 0.17 | 12.8 | 12 |
| ACB-FR | 672 | 4.88 (3.91–5.97) | 26.9(15.7–46.0) | 2.44 ± 0.38 | 4.4 | 10 | |
| Cry1Ah | ACB-BtS | 672 | 0.21 (0.12–0.31) | - | 2.56 ± 0.40 | 15.9 | 10 |
| ACB-FR | 576 | 0.78 (0.38–1.34) | 3.7 (2.3–5.9) | 1.27 ± 0.20 | 7.7 | 8 | |
| Cry1Ie | ACB-BtS | 672 | 1.69 (0.41–2.46) | - | 0.9 ± 0.25 | 5.6 | 10 |
| ACB-FR | 576 | 1.03 (0.78–1.26) | 0.6 (0.4–1.0) | 0.96 ± 0.13 | 4.6 | 8 |
a n, number of larvae tested.
b RR, resistance ratio
c nd, not determined, indicates that the Probit regression line could not be determined because the range of Cry1F concentrations needed to cause significant response exceed the range tested.
Response of F1 progenies of Asian corn borer to Cry1F, Cry1Ab and Cry1Ac.
| Bt toxin | Cross | n | LC50 (95%FL) (μg/g) | RR | Slope±SE | χ2 | df (χ2) |
|---|---|---|---|---|---|---|---|
| Cry1F | R♀×S♂ | 768 | 17.69 (13.88–26.21) | 29.8 (22.7–39.1) | 2.66 ± 0.62 | 8.6 | 12 |
| S♀×R♂ | 768 | 18.62 (15.53–21.52) | 32.7 (25.0–42.9) | 3.47 ± 0.48 | 5.8 | 12 | |
| Cry1Ab | R♀×S♂ | 672 | 1.34 (0.96–1.80) | 6.0 (4.3–8.2) | 1.85 ± 0.29 | 9.4 | 10 |
| S♀×R♂ | 672 | 1.20 (0.76–1.62) | 5.3 (3.9–7.3) | 2.30 ± 0.32 | 13.5 | 10 | |
| Cry1Ac | R♀×S♂ | 672 | 1.67 (1.18–2.11) | 9.2 (5.2–16.1) | 1.88 ± 0.42 | 3.7 | 10 |
| S♀×R♂ | 672 | 1.36 (0.79–1.86) | 7.5 (4.2–13.3) | 1.98 ± 0.34 | 6.7 | 10 |
a n, number of larvae tested.
b RR, resistance ratio
Effective of dominance (h) of resistance to Cry1F in Cry1F-selected Asian corn borer.
| Concentration (μg/g) | Strains | Survival (%) | Fitness | |
|---|---|---|---|---|
| 0.5 | ACB-BtS | 55.2 | 0.59 | |
| ACB-FR | 93.8 | 1.00 | ||
| ACB-FRS | 89.6 | 0.96 | 0.90 | |
| 5 | ACB-BtS | 0 | 0 | |
| ACB-FR | 92.7 | 1.00 | ||
| ACB-FRS | 79.2 | 0.85 | 0.85 | |
| 20 | ACB-BtS | 0 | 0 | |
| ACB-FR | 85.4 | 1.00 | ||
| ACB-FRS | 37.5 | 0.44 | 0.44 | |
| 50 | ACB-BtS | 0 | 0 | |
| ACB-FR | 84.4 | 1 | ||
| ACB-FRS | 4.2 | 0.05 | 0.05 |
Fitness of the susceptible parent and the reciprocal cross was estimated from the survival rate of the larvae at a specific treatment concentration divided by the survival rate of the resistant parent at the same concentration.
Test of monogenic mode of inheritance of resistance to Cry1F in Cry1F-selected Asian corn borer.
| Concentration (μg/g) | Actual mortality (%) | Expected mortality (%) | χ2 |
|---|---|---|---|
| 1 | 6.3 | 10.4 | 1.77 |
| 5 | 15.6 | 14.1 | 0.20 |
| 10 | 25.0 | 21.9 | 0.56 |
| 50 | 64.6 | 55.7 | 3.07 |
| 100 | 89.6 | 58.4 | 38.53 |
| ∑χ2 | 44.13 |