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首页> 外文期刊>Journal of Economic Entomology >Monitoring the Evolution of Resistance in Spodoptera frugiperda (Lepidoptera: Noctuidae) to the Cry1F Protein in Argentina
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Monitoring the Evolution of Resistance in Spodoptera frugiperda (Lepidoptera: Noctuidae) to the Cry1F Protein in Argentina

机译:监测Spodoptera Frugiperda(Lepidoptera:Noctuidae)在阿根廷的Cry1F蛋白中的抗性的演变

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摘要

Maize (Zea mays L.) is one of the most important and widely cultivated crops in Argentina. Fall armyworm (FAW), Spodoptera frugiperda (J.E. Smith), is a common maize pest capable of causing significant yield losses and is most destructive in late-planted maize in subtropical regions, going through five to six generations per growing season. The Bacillus thuringiensis (Bt) trait Herculex I Insect Protection technology by Dow AgroSciences and Pioneer Hi-Bred (HX I, event DAS-O15O7-1), expressing Cry1F protein, was launched in the 2005-2006 season in Argentina and was widely adopted because of the high level of efficacy against S. frugiperda, as well as other pests such as Diatraea saccharalis (J.C. Fabricius). However, increased late-season plantings, limited adoption of refuge, and properties of S. frugiperda biology (high number of generations and migratory behavior) have led to high S. frugiperda exposure to Cry1F and resistance selection pressure. Field efficacy monitoring has been conducted throughout the main maize production areas in Argentina from 2009 to 2016. Laboratory monitoring has been conducted throughout the same areas from 2010 to 2015. Here, we describe changes in field efficacy of HX I and the results of laboratory-based susceptibility monitoring conducted using purified Cry1F protein. Increases in larval survival and crop damage were evident throughout the 2012-2016 period and spanned the majority of maize production areas in Argentina. Over the same period, random larval collections showed increasing survivorship on diet containing purified Cry1F protein. These field and laboratory studies confirmed that resistance to Cry1F has developed and is now widely distributed in S. frugiperda populations in Argentina.
机译:玉米(Zea Mays L.)是阿根廷最重要,栽培的作物之一。 Fall Cycleworm(Faw),Spodoptera Frugiperda(J.E. Smith),是一种常见的玉米害虫,能够引起显着的产量损失,并且在亚热带地区的晚植玉米中最具破坏性,每年增加五到六代。芽孢杆菌(BT)特质Herculex I昆虫保护技术由Dow Agroscience和Pioneer Hi-Bred(HX I,Event DAS-O15O7-1)在阿根廷2005 - 2006年赛季推出,并被广泛采用由于对S. Frugiperda的高疗效以及诸如DiaTraea Saccharalis(JC Fabricius)的其他害虫。然而,增加了季节种植,限制了避难所,以及S.Frugiperda生物学的性质(大量的几代和迁徙行为)导致高S.Rugiperda暴露于Cry1F和阻力选择压力。在2009年至2016年的阿根廷主要玉米生产区进行了现场疗效监测。在2010年至2015年的同一地区进行了实验室监测。在这里,我们描述了HX I的田间疗效和实验室结果的变化基于基于敏感性监测使用纯化的Cry1F蛋白进行。在2012 - 2016年期间,幼虫生存和作物损害的增加在幼虫生存和作物损害中显而易见,并跨过阿根廷的大多数玉米生产区域。在同一时期,随机幼虫收集表明含有含纯净化的Cry1F蛋白的饮食的生存。这些领域和实验室研究证实,对Cry1F的抵抗已经开发出来,现在广泛分布在阿根廷的S. Frugiperda人口中。

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