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首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Volatile Organic Compounds Induced by Herbivory of the Soybean Looper Chrysodeixis includens in Transgenic Glyphosate-Resistant Soybean and the Behavioral Effect on the Parasitoid, Meteorus rubens
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Volatile Organic Compounds Induced by Herbivory of the Soybean Looper Chrysodeixis includens in Transgenic Glyphosate-Resistant Soybean and the Behavioral Effect on the Parasitoid, Meteorus rubens

机译:耐草甘膦转基因大豆中Loop草草食性的草食性诱导产生的挥发性有机化合物及其对拟寄生虫流星的影响

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摘要

Transgenic soybean plants (RR) engineered to express resistance to glyphosate harbor a variant of the enzyme EPSPS (5-enolpyruvylshikimate-3-phosphate synthase) involved in the shikimic acid pathway, the biosynthetic route of three aromatic amino acids: phenylalanine, tyrosine, and tryptophan. The insertion of the variant enzyme CP4 EPSPS confers resistance to glyphosate. During the process of genetic engineering, unintended secondary effects are likely to occur. In the present study, we quantified volatile organic compounds (VOCs) emitted constitutively or induced in response to herbivory by the soybean looper Chrysodeixis includens in transgenic soybean and its isogenic (untransformed) line. Since herbivore-induced plant volatiles (HIPVs) are known to play a role in the recruitment of natural enemies, we assessed whether changes in VOC profiles alter the foraging behavior of the generalist endoparasitic larval parasitoid, Meteorus rubens in the transgenic line. Additionally, we assessed whether there was a difference in plant quality by measuring the weight gain of the soybean looper. In response to herbivory, several VOCs were induced in both the conventional and the transgenic line; however, larger quantities of a few compounds were emitted by transgenic plants. Meteorus rubens females were able to discriminate between the odors of undamaged and C. includens-damaged plants in both lines, but preferred the odors emitted by herbivore-damaged transgenic plants over those emitted by herbivore-damaged conventional soybean plants. No differences were observed in the weight gain of the soybean looper. Our results suggest that VOC-mediated tritrophic interactions in this model system are not negatively affected. However, as the preference of the wasps shifted towards damaged transgenic plants, the results also suggest that genetic modification affects that tritrophic interactions in multiple ways in this model system.
机译:经过工程改造以表达对草甘膦的抗性的转基因大豆植物(RR)具有EPSPS酶的一种变体(5-enolpyruvylshikimate-3-phosphate合酶),其参与the草酸途径,三种芳香族氨基酸的生物合成途径:苯丙氨酸,酪氨酸和色氨酸。变异酶CP4 EPSPS的插入赋予了对草甘膦的抗性。在基因工程过程中,可能会发生意想不到的次级影响。在本研究中,我们量化了在大豆转基因大豆及其等基因(未转化)品系中,组成成分释放或响应草食性稻瘟病菌(Crysodeixis includens)的草食性释放的挥发性有机化合物(VOC)。由于已知草食动物诱导的植物挥发物(HIPVs)在招募天敌中起作用,因此我们评估了VOC谱的变化是否会改变转基因品系中内寄生幼虫拟南芥(Meteorus rubens)的觅食行为。此外,我们通过测量大豆套loop的增重来评估植物质量是否存在差异。响应于草食性,在常规和转基因品系中均诱导了几种VOC。然而,转基因植物释放出大量的少数化合物。在两个品系中,红流星雌性能够区分未损坏的和C. includens损坏的植物的气味,但是比​​被草食动物损坏的常规大豆植物散发的气味更喜欢由草食动物损坏的转基因植物散发的气味。没有观察到大豆皮套的重量增加的差异。我们的结果表明,在该模型系统中,VOC介导的三营养相互作用不受负面影响。但是,由于黄蜂的偏爱转向受损的转基因植物,结果还表明,遗传修饰会在此模型系统中以多种方式影响三营养的相互作用。

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