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Selection for resistance to mCry3A-expressing transgenic corn in western corn rootworm

机译:西部玉米根虫对表达mCry3A的转基因玉米的抗性选择

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To investigate the development of resistance to mCry3A, a laboratory colony of the western corn rootworm, Diabrotica virgifera virgifera LeConte, was established from field survivors of mCry3A-expressing (MIR604) corn, Zea mays L. Feral adults emerging from MIR604 (selected) and isoline (control) field plots were collected and returned to the laboratory. Progeny of each colony was reared one generation on isoline corn and then crossed reciprocally with a nondiapausing colony. The resulting nondiapausing progeny were then reared on greenhouse corn in accordance with the wild type parent's origin (on MIR604 or isoline corn). After four, seven, and 10 total generations of selection, the resistance ratio of the selected colony was 0.5, 4.3, and 15.4 in terms of lethal concentration (LC)_(50) values in toxicity assays, with the latter two LC_(50) values being significant. After seven generations of selection in total, selected and control colonies were screened on MIR604 and isoline corn under field conditions. There was a significant colony × corn pedigree interaction in terms of plant damage. There was no significant difference in damage between MIR604 and isoline corn, whereas this difference was significant for the control colony. After 14 generations of selection, a seedling bioassay was performed. Again, there was a significant colony × corn pedigree interaction, this time in terms of the number of larvae recovered. There was no significant difference in the number of larvae recovered from MIR604 and isoline corn for the selected colony, whereas this difference was significant for the control colony, although larval size was greater on isoline corn for both colonies. Resistance has developed in western corn rootworm laboratory colonies to all Bt proteins currently registered for corn rootworm management, which emphasizes the importance of adhering to resistance management plans for maintaining product efficacy.
机译:为了研究对mCry3A的抗性发展,从表达mCry3A(MIR604)的玉米,玉米(Zea mays L.收集等值线(对照)地块并返回实验室。将每个菌落的后代在等值玉米上培育一代,然后与不透血的菌落相互杂交。然后,根据野生型亲本的起源(在MIR604或等高线玉米上)将所得的非透血后代饲养在温室玉米上。经过四代,七代和十代的选择,毒性试验中所选菌落的抗性比为致命浓度(LC)_(50)值,分别为0.5、4.3和15.4,后两个LC_(50) )的值很重要。在总共进行了七代选择之后,在田间条件下在MIR604和等值玉米上筛选了选择的和对照菌落。就植物损害而言,存在显着的菌落×玉米谱系相互作用。 MIR604和等高线玉米之间的损伤没有显着差异,而对于对照菌落而言,这一差异是显着的。选择14代后,进行了幼苗生物测定。再次,有一个明显的菌落×玉米谱系相互作用,这一次是根据幼虫的数量进行的。对于所选菌落,从MIR604和等值玉米中回收的幼虫数量没有显着差异,而对于对照菌落,该差异是显着的,尽管对于两个菌落而言,在等值玉米上的幼虫体型都更大。西方玉米根虫实验室菌落对目前已注册用于玉米根虫管理的所有Bt蛋白均产生了抗药性,这强调了坚持抗药性管理计划以维持产品功效的重要性。

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