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首页> 外文期刊>Journal of Invertebrate Pathology >Current models of the mode of action of Bacillus thuringiensis insecticidal crystal proteins: a critical review.
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Current models of the mode of action of Bacillus thuringiensis insecticidal crystal proteins: a critical review.

机译:苏云金芽孢杆菌杀虫晶体蛋白作用模式的当前模型:一项重要的审查。

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摘要

Bacillus thuringiensis (Bt) Cry toxins constitute the active ingredient in the most widely used biological insecticides and insect-resistant transgenic crops. A clear understanding of their mode of action is necessary for improving these products and ensuring their continued use. Accordingly, a long history of intensive research has established that their toxic effect is due primarily to their ability to form pores in the plasma membrane of the midgut epithelial cells of susceptible insects. In recent years, a rather elaborate model involving the sequential binding of the toxins to different membrane receptors has been developed to describe the events leading to membrane insertion and pore formation. However, it was also proposed recently that, in contradiction with this mechanism, Bt toxins function by activating certain intracellular signaling pathways which lead to the necrotic death of their target cells without the need for pore formation. Because work in this field has largely focused, for several years, on the elaboration and promotion of these two models, the present revue examines in detail the experimental evidence on which they are based. It is concluded that the presently available information still supports the notion that Bt Cry toxins act by forming pores, but most events leading to their formation, following binding of the activated toxins to their receptors, remain relatively poorly understood.
机译:苏云金芽孢杆菌(Bt)的Cry毒素是最广泛使用的生物杀虫剂和抗虫转基因作物中的活性成分。要改进这些产品并确保其继续使用,必须对它们的作用方式有清楚的了解。因此,长期的深入研究已经确定它们的毒性作用主要是由于它们在易感昆虫的中肠上皮细胞的质膜上形成孔的能力所致。近年来,已经开发出一种相当复杂的模型,涉及毒素与不同膜受体的顺序结合,以描述导致膜插入和孔形成的事件。然而,最近还提出,与该机制相反,Bt毒素通过激活某些细胞内信号传导途径起作用,从而导致其靶细胞坏死性死亡而无需形成孔。由于该领域的工作多年来主要集中在详细阐述和推广这两种模型,因此本修订版详细研究了它们所基于的实验证据。结论是,目前可获得的信息仍然支持Bt Cry毒素通过形成孔而起作用的观点,但是在活化毒素与其受体结合后导致其形成的大多数事件仍然知之甚少。

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