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(E)-β-Farnesene synthase genes affect aphid (Myzus persicae) infestation in tobacco (Nicotiana tabacum)

机译:(E)-β-法呢烯合酶基因影响烟草(烟草)中的蚜虫(桃蚜)侵染

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摘要

Aphids are major agricultural pests which cause significant yield losses of the crop plants each year. (E)-β-farnesene (EβF) is the alarm pheromone involved in the chemical communication between aphids and particularly in the avoidance of predation. In the present study, two EβF synthase genes were isolated from sweet wormwood and designated as AaβFS1 and AaβFS2, respectively. Overexpression of AaβFS1 or AaβFS2 in tobacco plants resulted in the emission of EβF ranging from 1.55 to 4.65 ng/day/g fresh tissues. Tritrophic interactions involving the peach aphids (Myzus persicae), predatory lacewings (Chrysopa septempunctata) demonstrated that the transgenic tobacco expressing AaβFS1 and AaβFS2 could repel peach aphids, but not as strongly as expected. However, AaβFS1 and AaβFS2 lines exhibited strong and statistically significant attraction to lacewings. Further experiments combining aphids and lacewing larvae in an octagon arrangement showed transgenic tobacco plants could repel aphids and attract lacewing larvae, thus minimizing aphid infestation. Therefore, we demonstrated a potentially valuable strategy of using EβF synthase genes from sweet wormwood for aphid control in tobacco or other economic important crops in an environmentally benign way.
机译:蚜虫是主要的农业害虫,每年导致农作物的大量产量损失。 (E)-β-法尼烯(EβF)是与蚜虫之间的化学通讯有关的警报信息素,尤其是在避免捕食方面。在本研究中,从甜蒿中分离出两个EβF合酶基因,分别命名为AaβFS1和AaβFS2。烟草植物中AaβFS1或AaβFS2的过度表达导致EβF的释放量为1.55至4.65 ng / day / g新鲜组织。涉及桃蚜(Myzus persicae),掠食性草lace(Chrysopa septempunctata)的三养相互作用表明,表达AaβFS1和AaβFS2的转基因烟草可以排斥桃蚜,但强度不及预期。然而,AaβFS1和AaβFS2品系表现出对草lace的强大且具有统计学意义的吸引力。进一步的实验以八角形排列组合了蚜虫和and虫幼虫,表明转基因烟草植物可以排斥蚜虫并吸引lace虫幼虫,从而最大程度地减少了蚜虫的侵扰。因此,我们证明了一种潜在的有价值的策略,即利用甜蒿的EβF合酶基因以对环境无害的方式控制烟草或其他重要经济作物的蚜虫。

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