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Bt rice does not disrupt the host-searching behavior of the parasitoid Cotesia chilonis

机译:转基因水稻不会破坏拟寄生虫Cotesia chilonis的寄主搜索行为

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摘要

We determined whether plant volatiles help explain why Cotesia chilonis (a parasitoid of the target pest Chilo suppressalis) is less abundant in Bt than in non-Bt rice fields. Olfactometer studies revealed that C. chilonis females responded similarly to undamaged Bt and non-Bt rice plants. Parasitoids preferred rice plants damaged by 3rd-instar larvae of C. suppressalis, but did not differentiate between caterpillar-infested Bt and non-Bt plants. According to GC-MS analyses of rice plant volatiles, undamaged Bt and non-Bt rice plants emitted the same number of volatile compounds and there were no significant differences in the quantity of each volatile compound between the treatments. When plants were infested with and damaged by C. suppressalis larvae, both Bt and non-Bt rice plants emitted higher numbers and larger amounts of volatile compounds than undamaged plants, but there were no significant differences between Bt and non-Bt plants. These results demonstrate that the volatile-mediated interactions of rice plants with the parasitoid C. chilonis were not disrupted by the genetic engineering of the plants. We infer that parasitoid numbers are lower in Bt than in non-Bt fields because damage and volatile induction by C. suppressalis larvae are greatly reduced in Bt fields.
机译:我们确定了植物挥发物是否有助于解释为何Bt稻田中的Cotesia chilonis(目标害虫Chilohibialis的寄生虫)比非Bt稻田中的丰富度低。嗅觉仪研究表明,C。chilonis雌性对未受损的Bt和非Bt水稻植株的反应相似。拟寄生虫更喜欢受抑制的3 rd 龄幼虫侵害的水稻植株,但在有毛虫侵染的Bt植株和非Bt植株之间没有区别。根据GC-MS对水稻植物挥发物的分析,未破坏的Bt和非Bt水稻植物排放的挥发性化合物数量相同,两次处理之间每种挥发性化合物的量均无显着差异。当植物受到抑制隐孢子虫幼虫侵害并受到损害时,Bt和非Bt水稻植物排放的挥发物和数量均高于未损坏的植物,但Bt与非 Bt <之间没有显着差异。 / em>植物。这些结果表明,水稻植物与拟寄生物 C的挥发性介导相互作用。植物的基因工程不会破坏chilonis 。我们推断, Bt 中的寄生虫数量要比非 Bt 领域低,这是因为 C造成的破坏和挥发性诱导。在 Bt 领域中,抑制幼虫的数量大大减少。

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