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Restoring a maize root signal that attracts insect-killing nematodes to control a major pest

机译:恢复可吸引杀虫线虫控制主要害虫的玉米根系信号

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摘要

When attacked by herbivorous insects, plants emit volatile compounds that attract natural enemies of the insects. It has been proposed that these volatile signals can be manipulated to improve crop protection. Here, we demonstrate the full potential of this strategy by restoring the emission of a specific belowground signal emitted by insect-damaged maize roots. The western corn rootworm induces the roots of many maize varieties to emit (E)-β-caryophyllene, which attracts entomopathogenic nematodes that infect and kill the voracious root pest. However, most North American maize varieties have lost the ability to emit (E)-β-caryophyllene and may therefore receive little protection from the nematodes. To restore the signal, a nonemitting maize line was transformed with a (E)-β-caryophyllene synthase gene from oregano, resulting in constitutive emissions of this sesquiterpene. In rootworm-infested field plots in which nematodes were released, the (E)-β-caryophyllene-emitting plants suffered significantly less root damage and had 60% fewer adult beetles emerge than untransformed, nonemitting lines. This demonstration that plant volatile emissions can be manipulated to enhance the effectiveness of biological control agents opens the way for novel and ecologically sound strategies to fight a variety of insect pests.
机译:当受到草食性昆虫的攻击时,植物散发出的挥发性化合物会吸引昆虫的天敌。已经提出可以操纵这些挥发性信号来改善对作物的保护。在这里,我们通过恢复受昆虫破坏的玉米根发出的特定地下信号的发射,证明了该策略的全部潜力。西部玉米根虫会诱使许多玉米品种的根部散发出(E)-β-石竹烯,从而吸引昆虫病原线虫感染并杀死贪婪的根部害虫。但是,大多数北美玉米品种已失去发射(E)-β-石竹烯的能力,因此可能很少受到线虫的保护。为了恢复信号,用来自牛至的(E)-β-叶绿素合酶基因转化了不发光的玉米系,导致该倍半萜的组成型发射。在释放线虫的受根虫侵害的田地中,发射(E)-β-石竹烯的植物比未转化的非发射系遭受的根损害明显更少,成年甲虫的发芽减少了60%。可以控制植物挥发性排放物以增强生物防治剂有效性的这一证明,为新型,生态学上对付各种害虫的策略开辟了道路。

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