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Bt 基因工程对棉铃虫-棉蚜-烟粉虱三重营养关系间接防御的影响。

Effect of Bt genetic engineering on indirect defense in cotton via a tritrophic interaction.

机构信息

Embrapa Genetic Resources and Biotechnology, Parque Estação Biológica-W5 Norte (Final), 70770-917, Brasília, DF, Brazil.

出版信息

Transgenic Res. 2011 Feb;20(1):99-107. doi: 10.1007/s11248-010-9399-0. Epub 2010 Jun 4.

Abstract

We present a tritrophic analysis of the potential non-intended pleiotropic effects of cry1Ac gene derived from Bacillus thurigiensis (Bt) insertion in cotton (DeltaPine 404 Bt Bollgard® variety) on the emission of herbivore induced volatile compounds and on the attraction of the egg parasitoid Trichogramma pretisoum (Hymenoptera: Trichogrammatidae). Both the herbivore damaged Bt variety and its non-Bt isoline (DeltaPine DP4049 variety) produced volatiles in higher quantity when compared to undamaged plants and significantly attracted the egg parasitoids (T. pretiosum) when compared to undamaged plants. However, Trichogramma pretiosum did not differentiate between the transgenic and nontransgenic varieties, suggesting that the ratios between the compounds released by herbivory damaged -Bt cotton and herbivory damaged-non Bt cotton did not change significantly. Finally, no detrimental effect of the Bt genetic engineering was detected related to the volatile compounds released by Bollgard cotton on the behavior of the natural enemy studied.

摘要

我们对转 cry1Ac 基因棉花(DeltaPine 404 Bt Bollgard®品种)中苏云金芽孢杆菌(Bt)插入所产生的潜在非预期的多效性效应对植食性诱导挥发物排放和对卵寄生蜂拟澳洲赤眼蜂(膜翅目:赤眼蜂科)吸引力的三营养分析。与未受损植株相比,受损的 Bt 品种及其非 Bt 近等基因系(DeltaPine DP4049 品种)产生的挥发物数量更多,与未受损植株相比,也显著吸引了卵寄生蜂(拟澳洲赤眼蜂)。然而,拟澳洲赤眼蜂并未区分转基因和非转基因品种,这表明植食性受损-Bt 棉花和植食性受损-非 Bt 棉花释放的化合物之间的比例没有明显变化。最后,Bt 基因工程对转 Bollgard 棉花释放的挥发性化合物对研究的天敌行为没有检测到有害影响。

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