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首页> 外文期刊>Plant Molecular Biology >Multiple insect resistance in transgenic tomato plants over-expressing two families of plant proteinase inhibitors
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Multiple insect resistance in transgenic tomato plants over-expressing two families of plant proteinase inhibitors

机译:过表达两个植物蛋白酶抑制剂家族的转基因番茄植物的多重昆虫抗性

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摘要

Protease inhibitors have been proposed as potential defense molecules for increased insect resistance in crop plants. Compensatory over-production of insensitive proteases in the insect, however, has limited suitability of these proteins in plant protection, with very high levels of inhibitor required for increased plant resistance. In this study we have examined whether combined used of two inhibitors is effective to prevent this compensatory response. We show that leaf-specific over-expression of the potato PI-II and carboxypeptidase inhibitors (PCI) results in increased resistance to Heliothis obsoleta and Liriomyza trifolii larvae in homozygote tomato lines expressing high levels (>1% the total soluble proteins) of the transgenes. Leaf damage in hemizygous lines for these transformants was, however, more severe than in the controls, thus evidencing a compensation response of the larvae to the lower PI concentrations in these plants. Development of comparable adaptive responses in both insects suggests that insect adaptation does not entail specific recognition of the transgene, but rather represents a general adaptive mechanism triggered in response to the nutritional stress imposed by sub-lethal concentrations of the inhibitors. Combined expression of defense genes with different mechanisms of action rather than combinations of inhibitors may then offer a better strategy in pest management as it should be more effective in overcoming this general adaptive response in the insect.
机译:蛋白酶抑制剂已被提议作为潜在的防御分子,用于增加农作物的昆虫抗性。然而,昆虫中不敏感蛋白酶的补偿性过度生产限制了这些蛋白质在植物保护中的适用性,而增加植物抗性所需的抑制剂水平却很高。在这项研究中,我们检查了两种抑制剂联合使用是否有效预防这种代偿反应。我们显示马铃薯PI-II和羧肽酶抑制剂(PCI)的叶特异性过表达导致在表达高水平(> 1%总可溶蛋白)的纯合子番茄品系中对Heliothis obsoleta和Liriomyza trifolii幼虫的抗性增加。转基因。然而,这些转化子在半合子系中的叶损伤比对照更严重,因此证明了这些植物中幼虫对较低的PI浓度的补偿反应。在两种昆虫中可比的适应性反应的发展表明,昆虫的适应性并不需要转基因的特异性识别,而是代表了对由致死性浓度的抑制剂施加的营养压力作出响应而触发的一般适应性机制。具有不同作用机制的防御基因的组合表达而不是抑制剂的组合可以为害虫管理提供更好的策略,因为它在克服昆虫的这种一般适应性反应方面应该更有效。

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