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Hijacking common mycorrhizal networks for herbivore-induced defence signal transfer between tomato plants

机译:劫持常见的菌根网络以草食动物诱导的番茄植物之间的防御信号传递

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摘要

Common mycorrhizal networks (CMNs) link multiple plants together. We hypothesized that CMNs can serve as an underground conduit for transferring herbivore-induced defence signals. We established CMN between two tomato plants in pots with mycorrhizal fungus Funneliformis mosseae, challenged a ‘donor' plant with caterpillar Spodoptera litura, and investigated defence responses and insect resistance in neighbouring CMN-connected ‘receiver' plants. After CMN establishment caterpillar infestation on ‘donor' plant led to increased insect resistance and activities of putative defensive enzymes, induction of defence-related genes and activation of jasmonate (JA) pathway in the ‘receiver' plant. However, use of a JA biosynthesis defective mutant spr2 as ‘donor' plants resulted in no induction of defence responses and no change in insect resistance in ‘receiver' plants, suggesting that JA signalling is required for CMN-mediated interplant communication. These results indicate that plants are able to hijack CMNs for herbivore-induced defence signal transfer and interplant defence communication.
机译:常见的菌根网络(CMN)将多个植物链接在一起。我们假设,CMNs可以用作传输草食动物诱导的防御信号的地下管道。我们在装有菌根真菌Funseaiformis mosseae的盆中的两个番茄植物之间建立了CMN,用毛毛虫斜纹夜蛾攻击了“供体”植物,并研究了与CMN连接的相邻“受体”植物的防御反应和昆虫抗性。在CMN建立后,“供体”植物上的毛毛虫侵扰导致昆虫的抗药性增强,并推定了防御酶的活性,诱导了与“受体”植物中的防御相关基因并激活了茉莉酸(JA)途径。然而,将JA生物合成缺陷突变体spr2用作“供体”植物不会导致“受体”植物中防御反应的诱导和昆虫抗性的变化,这表明CMN介导的植物间通讯需要JA信号传导。这些结果表明植物能够劫持CMNs,以进行草食动物诱导的防御信号传递和植物间防御通信。

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