首页> 外文期刊>The Florida entomologist >Susceptibility of Field Populations of the Fall Armyworm (Lepidoptera: Noctuidae) from Florida and Puerto Rico to Purified Cry1f Protein and Corn Leaf Tissue Containing Single and Pyramided Bt Genes
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Susceptibility of Field Populations of the Fall Armyworm (Lepidoptera: Noctuidae) from Florida and Puerto Rico to Purified Cry1f Protein and Corn Leaf Tissue Containing Single and Pyramided Bt Genes

机译:来自佛罗里达和波多黎各的秋天粘虫(鳞翅目:夜蛾科)的田间种群对纯净的Cry1f蛋白和含有单个和酰胺化Bt基因的玉米叶组织的敏感性

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Larval survival of Cry1F-susceptible (FL), -resistant (PR and Cry1F-RR), and -heterozygous (FL x PR and Cry1F-RS) populations of the fall armyworm, Spodoptera frugiperda (J. E. Smith) to purified Cry1F protein and corn leaf tissue of 7 Bacillus thuringiensis (Bt) corn hybrids and 5 non-Bt corn hybrids was evaluated in the laboratory. The 7 Bt corn hybrids represent 5 Bt corn traits: Herculex?I, which expresses a single Bt protein (Cry1F), and Genuity? VT Double Pro?, VT Triple Pro?, SmartStax?, and Agrisure? Viptera? 3111, which contain ≥ 2 pyramided Bt genes. The original FL and PR populations were collected from corn fields in 2011 in Florida and Puerto Rico, respectively. Diet-incorporation bioassays showed that FL was susceptible to Cry1F protein with a LC50 value of 0.13–0.23 μg/g, while PR was highly resistant to Cry1F protein (> 137-fold). FL was also susceptible to all 7 Bt corn hybrids with a 7-day mortality of > 95%, while PR and a backcrossed and reselected population, Cry1F-RR, were highly resistant to Cry1F corn leaf tissue. The resistance was recessive or incompletely recessive. None of the 5 populations of S. frugiperda could survive on Viptera? 3111, suggesting this Bt corn trait can completely overcome the resistance and thus should provide a means of managing Cry1F resistance in S. frugiperda. However, Cry1F-RR exhibited a significant cross-resistance to the leaf tissue of the other 3 pyramided Bt corn traits. The possible cross-resistance between single-gene and pyramided Bt corn products suggest that careful selection of Bt genes is essential in use of gene pyramiding strategy for resistance management. View this article in BioOne
机译:Cry1F易感性(FL),抗性(PR和Cry1F-RR)和-杂合子(FL x PR和Cry1F-RS)的秋夜夜蛾,斜纹夜蛾(Sodoptera frugiperda)(JE Smith)种群对纯化的Cry1F蛋白和玉米的幼虫存活率在实验室中评估了7种苏云金芽孢杆菌(Bt)玉米杂种和5个非Bt玉米杂种的叶子组织。这7个Bt玉米杂种代表5个Bt玉米性状:Herculex?I,它表达单个Bt蛋白(Cry1F)和Genuity? VT Double Pro?,VT Triple Pro?,SmartStax?和Agrisure? pt蝶3111,包含≥2个金字塔形Bt基因。 2011年的FL和PR原始种群分别来自佛罗里达和波多黎各的玉米田。饮食掺入生物测定法显示,FL对Cry1F蛋白敏感,LC50值为0.13-0.23μg/ g,而PR对Cry1F蛋白具有高度抗性(> 137倍)。 FL还易受所有7个Bt玉米杂交种的影响,其7天死亡率> 95%,而PR和回交和重新选择的种群Cry1F-RR对Cry1F玉米叶片组织高度耐药。阻力是隐性的或不完全隐性的。 Srug frugiperda的5个种群中没有一个能在Viptera上生存吗? 3111,表明该Bt玉米性状可以完全克服抗药性,因此应该为控制S. frugiperda中的Cry1F抗性提供一种手段。然而,Cry1F-RR对其他3个金字塔形Bt玉米性状的叶片组织表现出显着的交叉抗性。单基因和金字塔形Bt玉米产品之间可能存在交叉耐药性,表明在使用基因金字塔策略进行耐药性管理时,仔细选择Bt基因至关重要。在BioOne中查看此文章

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