Relative resistance of transgenic tomato tissues expressing high levels of tobacco anionic peroxidase to different insect species.

P. Dowd, P. Dowd, L. M. Lagrimini, T. Nelsen
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引用次数: 19

Abstract

Different parts of genetically transformed tomato (Lycopersicon esculentum L.) plants that express the tobacco anionic peroxidase were compared for insect resistance with corresponding wild type plants. Leaf feeding by first instar Helicoverpa zea and Manduca sexta was often significantly reduced on intact transgenic plants and/or leaf disks compared to wild type plants, but the effect could depend on leaf age. Leaves of transgenic plants were generally as susceptible to feeding damage by third instar Helicoverpa zea (Boddie) and Manduca sexta (L.) as wild type plants. Green fruit was equally susceptible to third instar larvae of H. zea in both type plants, but fruit of transgenic plants were more resistant to first instar larvae as indicated by significantly greater mortality. Basal stem sections were more resistant to neonate larvae of H. zea and adults of Carpophilus lugubris Murray compared to wild type plants as indicated by significantly greater mortality and/or reduced feeding damage. Thus, tobacco anionic peroxidase activity can increase plant resistance to insects in tomato, a plant species closely related to the original source plant species, when expressed at sufficiently high levels. However, the degree of resistance is dependent on the size of insect and plant tissue involved.
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表达高水平烟草阴离子过氧化物酶的转基因番茄组织对不同昆虫的相对抗性。
对转基因番茄不同部位表达烟草阴离子过氧化物酶的植株与相应野生型植株的抗虫性进行了比较。与野生型植物相比,一龄玉米Helicoverpa zea和Manduca sexta在完整转基因植株和/或叶盘上的取食量往往显著减少,但效果可能与叶龄有关。转基因植物叶片对3龄玉米螺旋虫(Helicoverpa zea, Boddie)和雌雄花(Manduca sexta, L.)的取食危害一般与野生型植物相同。绿果对玉米三龄幼虫同样敏感,但转基因植株的果实对一龄幼虫的抗性更强,死亡率显著高于转基因植株。与野生型植物相比,基茎段对玉米蚜幼体和成虫的抗性更强,死亡率更高,取食损害更小。因此,烟草阴离子过氧化物酶活性在与原源植物密切相关的植物品种番茄中表达足够高的水平时,可以提高植物对昆虫的抗性。然而,抗性程度取决于所涉及的昆虫和植物组织的大小。
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Erratum: Alfonso D, Johnson HA, Colman-Saizarbitoria T, Presley CP, McCabe GP, McLaughlin JL (1996): SARs of annonaceous acetogenins in rat liver mitochondria. Nat Toxins 4:181-188. Advances in detection methods for fungal and algal toxins. HPLC/MS analysis of fusarium mycotoxins, fumonisins and deoxynivalenol. Neuronal binding of tetanus toxin compared to its ganglioside binding fragment (H(c)). A new type sandwich immunoassay for microcystin: production of monoclonal antibodies specific to the immune complex formed by microcystin and an anti-microcystin monoclonal antibody.
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