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Modification of Cry4Aa toward Improved Toxin Processing in the Gut of the Pea Aphid Acyrthosiphon pisum

机译:Cry4Aa的改良对豌豆蚜虫(Acyrthosiphon pisum)肠道内毒素加工的改善

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摘要

Aphids are sap-sucking insects (order: Hemiptera) that cause extensive damage to a wide range of agricultural crops. Our goal was to optimize a naturally occurring insecticidal crystalline (Cry) toxins produced by the soil-dwelling bacterium Bacillus thuringiensis for use against the pea aphid, Acyrthosiphon pisum. On the basis that activation of the Cry4Aa toxin is a rate-limiting factor contributing to the relatively low aphicidal activity of this toxin, we introduced cathepsin L and cathepsin B cleavage sites into Cry4Aa for rapid activation in the aphid gut environment. Incubation of modified Cry4Aa and aphid proteases in vitro demonstrated enhanced processing of the toxin into the active form for some of the modified constructs relative to non-modified Cry4Aa. Aphids fed artificial diet with toxin at a final concentration of 125 μg/ml showed enhanced mortality after two days for one of the four modified constructs. Although only modest toxin improvement was achieved by use of this strategy, such specific toxin modifications designed to overcome factors that limit aphid toxicity could be applied toward managing aphid populations via transgenic plant resistance.
机译:蚜虫是吸吮树液的昆虫(命令:半翅目),对多种农作物造成广泛破坏。我们的目标是优化土生细菌苏云金芽孢杆菌产生的天然杀虫晶体(Cry)毒素,以对抗豌豆蚜虫(Acyrthosiphon pisum)。基于Cry4Aa毒素的激活是造成该毒素相对较低的杀蚜活性的限速因素,我们将组织蛋白酶L和组织蛋白酶B裂解位点引入Cry4Aa中以在蚜虫肠道环境中快速激活。相对于未修饰的Cry4Aa,体外修饰的Cry4Aa和蚜虫蛋白酶的孵育表明,对于某些修饰的构建体,毒素被增强加工成活性形式。蚜虫饲喂终末浓度为125μg/ ml毒素的人工饲料后,对于四种改良构建体之一,在两天后显示出更高的死亡率。尽管使用该策略仅能实现适度的毒素改良,但可以克服转基因植物抗性而设计用于克服限制蚜虫毒性的因素的这种特定毒素修饰,可用于管理蚜虫种群。

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