Laboratory of Entomology, Wageningen University, Wageningen, The Netherlands.
Pest Manag Sci. 2013 Feb;69(2):302-11. doi: 10.1002/ps.3391. Epub 2012 Aug 30.
Most insect-resistant transgenic crops employ toxins to control pests. A novel approach is to enhance the effectiveness of natural enemies by genetic engineering of the biosynthesis of volatile organic compounds (VOCs). Before the commercialisation of such transgenic plants can be pursued, detailed fundamental studies of their effects on herbivores and their natural enemies are necessary. The linalool/nerolidol synthase gene FaNES1 was constitutively expressed from strawberry in three Arabidopsis thaliana accessions, and the behaviour of the aphid Brevicoryne brassicae L., the parasitoid Diaeretiella rapae McIntosh and the predator Episyrphus balteatus de Geer was studied.
Transgenic FaNES1-expressing plants emitted (E)-nerolidol and larger amounts of (E)-DMNT and linalool. Brevicoryne brassicae was repelled by the transgenic lines of two of the accessions, whereas its performance was not affected. Diaeretiella rapae preferred aphid-infested transgenic plants over aphid-infested wild-type plants for two of the accessions. In contrast, female E. balteatus predators did not differentiate between aphid-infested transgenic or wild-type plants.
The results indicate that the genetic engineering of plants to modify their emission of VOCs holds considerable promise for facilitating biological control of herbivores. Validation for crop plants is a necessary next step to assess the usefulness of modified volatile emission in integrated pest management.
大多数抗虫转基因作物利用毒素来控制害虫。一种新方法是通过遗传工程来增强挥发性有机化合物(VOCs)的生物合成,从而提高天敌的有效性。在商业化种植此类转基因植物之前,需要对其对草食动物及其天敌的影响进行详细的基础研究。草莓中的里哪醇/橙花叔醇合酶基因 FaNES1 在三个拟南芥品系中组成型表达,研究了烟粉虱 Brevicoryne brassicae L.、小菜蛾寄生蜂 Diaeretiella rapae McIntosh 和捕食性食蚜蝇 Episyrphus balteatus de Geer 的行为。
表达 FaNES1 的转基因植物会释放出(E)-橙花叔醇和更多的(E)-DMNT 和里哪醇。两种品系的转基因线都排斥烟粉虱,而其性能不受影响。小菜蛾更喜欢两种品系中受烟粉虱侵染的转基因植物而不是受烟粉虱侵染的野生型植物。相比之下,雌性食蚜蝇捕食者无法区分受烟粉虱侵染的转基因或野生型植物。
结果表明,通过遗传工程改变植物 VOC 的排放具有很大的潜力,可以促进对草食动物的生物控制。对作物的验证是评估改良挥发物排放对综合虫害管理的有用性的必要下一步。