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首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Synergistic Interactions Between Cry1Ac and Natural Cotton Defenses Limit Survival of Cry1Ac-resistant Helicoverpa Zea (Lepidoptera: Noctuidae) on Bt Cotton
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Synergistic Interactions Between Cry1Ac and Natural Cotton Defenses Limit Survival of Cry1Ac-resistant Helicoverpa Zea (Lepidoptera: Noctuidae) on Bt Cotton

机译:Cry1Ac和天然棉花防御系统之间的协同相互作用限制了耐Cry1Ac的Helicoverpa Zea(鳞翅目:夜蛾科)在Bt棉花上的存活。

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摘要

Larvae of the bollworm Helicoverpa zea (Boddie) show some tolerance to Bacillus thuringiensis (Bt) Cry1Ac, and can survive on Cry1Ac-expressing Bt cotton, which should increase resistance development concerns. However, field-evolved resistance has not yet been observed. In a previous study, a population of H. zea was selected for stable resistance to Cry1Ac toxin. In the present study, we determined in laboratory bioassays if larvae of the Cry1Ac toxin-resistant H. zea population show higher survival rates on field-cultivated Bt cotton squares (= flower buds) collected prebloom--bloom than susceptible H. zea. Our results show that Cry1Ac toxin-resistant H. zea cannot complete larval development on Cry1Ac-expressing Bt cotton, despite being more than 150-fold resistant to Cry1Ac toxin and able to survive until pupation on Cry1Ac toxin concentrations greater than present in Bt cotton squares. Since mortality observed for Cry1Ac-resistant H. zea on Bt cotton was higher than expected, we investigated whether Cry1Ac interacts with gossypol and or other compounds offered with cotton powder in artificial diet. Diet incorporation bioassays were conducted with Cry1Ac toxin alone, and with gossypol and 4% cotton powder in the presence and absence of Cry1Ac. Cry1Ac toxin was significantly more lethal to susceptible H. zea than to resistant H. zea, but no difference in susceptibility to gossypol was observed between strains. However, combinations of Cry1Ac with gossypol or cotton powder were synergistic against resistant, but not against susceptible H. zea. Gossypol concentrations in individual larvae showed no significant differences between insect strains, or between larvae fed gossypol alone vs. those fed gossypol plus Cry1Ac. These results may help explain the inability of Cry1Ac-resistant H. zea to complete development on Bt cotton, and the absence of field-evolved resistance to Bt cotton by this pest.
机译:棉铃虫Helicoverpa zea(Boddie)的幼虫显示出对苏云金芽孢杆菌(Bt)Cry1Ac的耐受性,并且可以在表达Cry1Ac的Bt棉上存活,这应增加对耐药性的担忧。然而,尚未观察到场演化电阻。在以前的研究中,选择玉米H. zea种群对Cry1Ac毒素具有稳定的抗性。在本研究中,我们在实验室生物测定中确定了抗Cry1Ac毒素的H.zea种群的幼虫在田间种植的Bt棉方(=花蕾)上采集的花前绽放是否比易感的H.zea更高。我们的结果表明,尽管对Cry1Ac毒素的抗性H. zea对表达Cry1Ac的Bt棉具有超过150倍的抗性,并且仍能够存活直到对Cry1Ac毒素的浓度高于Bt棉方中的化脓率,但仍无法存活。 。由于在Bt棉上观察到的耐Cry1Ac的H. zea的死亡率高于预期,因此我们研究了Cry1Ac是否与棉酚和其他人工饲料中棉粉提供的化合物发生相互作用。饮食掺入生物测定仅使用Cry1Ac毒素,在存在和不存在Cry1Ac的情况下,使用棉酚和4%的棉粉进行。 Cry1Ac毒素对易感性玉米粥的致死性比对耐药性玉米粥的致死性要高得多,但菌株之间对棉酚的敏感性没有差异。但是,Cry1Ac与棉酚或棉粉的组合具有抗药性,但对易感染的H. zea无效。单个幼虫中棉酚的浓度在昆虫品系之间,或单独喂食棉酚的幼虫与喂棉酚加Cry1Ac的幼虫之间没有显着差异。这些结果可能有助于解释抗Cry1Ac的玉米不能在Bt棉上完全发育,并且没有这种害虫对Bt棉的田间进化抗性。

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