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Cry1F Resistance in Fall Armyworm Spodoptera frugiperda: Single Gene versus Pyramided Bt Maize

机译:秋季夜蛾食蚜夜蛾的Cry1F抗性:单基因与酰胺化的Bt玉米

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摘要

Evolution of insect resistance to transgenic crops containing Bacillus thuringiensis (Bt) genes is a serious threat to the sustainability of this technology. However, field resistance related to the reduced efficacy of Bt maize has not been documented in any lepidopteran pest in the mainland U.S. after 18 years of intensive Bt maize planting. Here we report compelling evidence of field resistance in the fall armyworm, Spodoptera frugiperda (J.E. Smith), to Cry1F maize (TC 3507) in the southeastern region of the U.S. An F2 screen showed a surprisingly high (0.293) Cry1F resistance allele frequency in a population collected in 2011 from non-Bt maize in south Florida. Field populations from non-Bt maize in 2012–2013 exhibited 18.8-fold to >85.4-fold resistance to purified Cry1F protein and those collected from unexpectedly damaged Bt maize plants at several locations in Florida and North Carolina had >85.4-fold resistance. In addition, reduced efficacy and control failure of Cry1F maize against natural populations of S. frugiperda were documented in field trials using Cry1F-based and pyramided Bt maize products in south Florida. The Cry1F-resistant S. frugiperda also showed a low level of cross-resistance to Cry1A.105 and related maize products, but not to Cry2Ab2 or Vip3A. The occurrence of Cry1F resistance in the U.S. mainland populations of S. frugiperda likely represents migration of insects from Puerto Rico, indicating the great challenges faced in achieving effective resistance management for long-distance migratory pests like S. frugiperda.
机译:昆虫对包含苏云金芽孢杆菌(Bt)基因的转基因作物的抗性演变对这项技术的可持续性构成了严重威胁。但是,在Bt玉米密集种植18年后,在美国大陆的任何鳞翅目害虫中尚未发现与Bt玉米功效降低相关的田间抗性。在这里,我们报告了有说服力的证据,证明秋天的粘虫Spodoptera frugiperda(JE Smith)对美国东南部的Cry1F玉米(TC 3507)有抗性。 2011年从佛罗里达州南部的非转基因玉米中收集的玉米种群。 2012-2013年非Bt玉米的田间种群对纯化的Cry1F蛋白表现出18.8倍至> 85.4倍的抗性,从佛罗里达和北卡罗来纳州多个地点意外受损的Bt玉米植物中收集的种群具有> 85.4倍的抗性。此外,在佛罗里达州南部使用基于Cry1F的金字塔状Bt玉米产品进行的田间试验中,Cry1F玉米对S. frugiperda天然种群的功效降低和控制失败。抗Cry1F的沙门氏菌也显示出对Cry1A.105和相关玉米产品的低交叉抗性,但对Cry2Ab2或Vip3A没有交叉抗性。在美国大陆S. frugiperda种群中对Cry1F的抗药性可能代表昆虫从波多黎各迁移,这表明在实现对长距离迁徙害虫如S. frugiperda的有效抗药性管理方面面临着巨大挑战。

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