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Mechanism and DNA-based detection of field-evolved resistance to transgenic Bt corn in fall armyworm (Spodoptera frugiperda)

机译:秋粘虫(Spodoptera frugiperda)对转基因Bt玉米抗药性的机理和基于DNA的检测

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摘要

Evolution of resistance threatens sustainability of transgenic crops producing insecticidal proteins from the bacterium Bacillus thuringiensis (Bt). The fall armyworm (Spodoptera frugiperda) is a devastating pest of corn in the Western Hemisphere initially controlled by transgenic Bt corn producing the Cry1Fa insecticidal protein (event TC1507). However field-evolved resistance to TC1507 was observed in Puerto Rico in 2007 and has subsequently been reported in a number of locations in North and South America. Early studies on Puerto Rico fall armyworm populations found that the resistance phenotype was associated with reduced expression of alkaline phosphatase. However, in this work we show that field-evolved resistance to Cry1Fa Bt corn in Puerto Rico is closely linked to a mutation in an ATP Binding Cassette subfamily C2 (ABCC2) gene that functions as a Cry1Fa receptor in susceptible insects. Furthermore, we report a DNA-based genotyping test used to demonstrate the presence of the resistant (SfABCC2mut) allele in Puerto Rico populations in 2007, coincident with the first reports of damage to TC1507 corn. These DNA-based field screening data provide strong evidence that resistance to TC1507 in fall armyworm maps to the SfABCC2 gene and provides a useful molecular marker for detecting the SfABCC2mut allele in resistant fall armyworm.
机译:抗性的演变威胁到从苏云金芽孢杆菌(Btillus thuringiensis)(Bt)产生杀虫蛋白的转基因作物的可持续性。秋季夜蛾(Spodoptera frugiperda)是西半球的一种毁灭性玉米害虫,最初是由产生Cry1Fa杀虫蛋白的转基因Bt玉米控制的(事件TC1507)。但是,2007年在波多黎各观察到了对TC1507的抗药性,随后在北美洲和南美洲的许多地方进行了报道。对波多黎各秋天粘虫种群的早期研究发现,耐药表型与碱性磷酸酶表达降低有关。但是,在这项工作中,我们证明了波多黎各对Cry1Fa Bt玉米的田间抗性与ATP结合盒亚家族C2(ABCC2)基因的突变紧密相关,该基因在易感昆虫中起Cry1Fa受体的作用。此外,我们报告了一项基于DNA的基因分型测试,该测试用于证明2007年波多黎各人群中存在抗性(SfABCC2mut)等位基因,与TC1507玉米受损的第一批报道相吻合。这些基于DNA的现场筛选数据提供了有力的证据,表明对秋季粘虫的TC1507的抗性映射到SfABCC2基因,并为检测抗秋天粘虫的SfABCC2mut等位基因提供了有用的分子标记。

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