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Herbivory in the previous generation primes plants for enhanced insect resistance

机译:在上一代植物中的草食植物增强了抗虫性

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摘要

Inducible defenses, which provide enhanced resistance after initial attack, are nearly universal in plants. This defense signaling cascade is mediated by the synthesis, movement, and perception of jasmonic acid and related plant metabolites. To characterize the long-term persistence of plant immunity, we challenged Arabidopsis (Arabidopsis thaliana) and tomato (Solanum lycopersicum) with caterpillar herbivory, application of methyl jasmonate, or mechanical damage during vegetative growth and assessed plant resistance in subsequent generations. Here, we show that induced resistance was associated with transgenerational priming of jasmonic acid-dependent defense responses in both species, caused caterpillars to grow up to 50% smaller than on control plants, and persisted for two generations in Arabidopsis. Arabidopsis mutants that are deficient in jasmonate perception (coronatine insensitive1) or in the biogenesis of small interfering RNA (dicer-like2 dicer-like3 dicer-like4 and nuclear RNA polymerase d2a nuclear RNA polymerase d2b) do not exhibit inherited resistance. The observation of inherited resistance in both the Brassicaceae and Solanaceae suggests that this trait may be more widely distributed in plants. Epigenetic resistance to herbivory thus represents a phenotypically plastic mechanism for enhanced defense across generations.
机译:诱导防御在初始攻击后提供增强的抗性,在植物中几乎是普遍的。该防御信号传导级联是由茉莉酸和相关植物代谢产物的合成,运动和感知介导的。为了表征植物免疫力的长期持久性,我们挑战了拟南芥(Arabidopsis thaliana)和番茄(Solanum lycopersicum)的毛毛虫食草,茉莉酸甲酯的施用或在营养生长过程中的机械损伤,并评估了后代的植物抗性。在这里,我们显示诱导的抗性与茉莉酸依赖的防御反应的跨代启动有关,导致毛虫长到比对照植物小50%,并且在拟南芥中持续了两代。茉莉酸知觉不足的冠状拟南芥突变体(对冠冕素不敏感1)或小干扰RNA(dicer-like2 dicer-like3 dicer-like4和核RNA聚合酶d2a核RNA聚合酶d2b)的生物合成不足。观察到十字花科和茄科都具有遗传抗性,这表明该性状可能在植物中分布更广。因此,对草食动物的表观遗传抗性代表了表型可塑性机制,可增强世代防御。

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