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Synergism and Antagonism between Bacillus thuringiensis Vip3A and Cry1 Proteins in Heliothis virescens, Diatraea saccharalis and Spodoptera frugiperda

机译:苏云金芽孢杆菌,拟糖虫和小菜蛾中苏云金芽孢杆菌Vip3A和Cry1蛋白之间的协同作用和拮抗作用

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摘要

Second generation Bt crops (insect resistant crops carrying Bacillus thuringiensis genes) combine more than one gene that codes for insecticidal proteins in the same plant to provide better control of agricultural pests. Some of the new combinations involve co-expression of cry and vip genes. Because Cry and Vip proteins have different midgut targets and possibly different mechanisms of toxicity, it is important to evaluate possible synergistic or antagonistic interactions between these two classes of toxins. Three members of the Cry1 class of proteins and three from the Vip3A class were tested against Heliothis virescens for possible interactions. At the level of LC50, Cry1Ac was the most active protein, whereas the rest of proteins tested were similarly active. However, at the level of LC90, Cry1Aa and Cry1Ca were the least active proteins, and Cry1Ac and Vip3A proteins were not significantly different. Under the experimental conditions used in this study, we found an antagonistic effect of Cry1Ca with the three Vip3A proteins. The interaction between Cry1Ca and Vip3Aa was also tested on two other species of Lepidoptera. Whereas antagonism was observed in Spodoptera frugiperda, synergism was found in Diatraea saccharalis. In all cases, the interaction between Vip3A and Cry1 proteins was more evident at the LC90 level than at the LC50 level. The fact that the same combination of proteins may result in a synergistic or an antagonistic interaction may be an indication that there are different types of interactions within the host, depending on the insect species tested.
机译:第二代Bt作物(携带苏云金芽孢杆菌基因的抗虫作物)在同一植物中结合了多个编码杀虫蛋白的基因,以更好地控制农业害虫。一些新的组合涉及cry和vip基因的共表达。由于Cry和Vip蛋白具有不同的中肠目标以及可能不同的毒性机制,因此评估这两类毒素之间可能的协同或拮抗相互作用非常重要。测试了Cry1类蛋白质的三个成员和Vip3A类蛋白质的三个成员针对棉铃虫的可能相互作用。在LC50水平上,Cry1Ac是活性最高的蛋白质,而其余测试蛋白质的活性相似。但是,在LC90水平上,Cry1Aa和Cry1Ca是活性最低的蛋白,而Cry1Ac和Vip3A蛋白没有显着差异。在这项研究中使用的实验条件下,我们发现了Cry1Ca与三种Vip3A蛋白的拮抗作用。 Cry1Ca和Vip3Aa之间的相互作用也已在另外两个鳞翅目物种上进行了测试。尽管在草地贪夜蛾中观察到了拮抗作用,但在糖藻中却发现了协同作用。在所有情况下,Vip3A和Cry1蛋白之间的相互作用在LC90水平比在LC50水平更明显。蛋白质的相同组合可能导致协同或拮抗相互作用的事实可能表明宿主内存在不同类型的相互作用,这取决于所测试的昆虫种类。

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