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玉米地下部遭受草食性动物侵害时地上部诱导抗性的信号特征

Signal signature of aboveground-induced resistance upon belowground herbivory in maize.

作者信息

Erb Matthias, Flors Victor, Karlen Danielle, de Lange Elvira, Planchamp Chantal, D'Alessandro Marco, Turlings Ted C J, Ton Jurriaan

机构信息

Laboratory for Fundamental and Applied Research in Chemical Ecology (FARCE), University of Neuchâtel, Switzerland.

出版信息

Plant J. 2009 Jul;59(2):292-302. doi: 10.1111/j.1365-313X.2009.03868.x. Epub 2009 Mar 14.

Abstract

Plants activate local and systemic defence mechanisms upon exposure to stress. This innate immune response is partially regulated by plant hormones, and involves the accumulation of defensive metabolites. Although local defence reactions to herbivores are well studied, less is known about the impact of root herbivory on shoot defence. Here, we examined the effects of belowground infestation by the western corn rootworm Diabrotica virgifera virgifera on aboveground resistance in maize. Belowground herbivory by D. v. virgifera induced aboveground resistance against the generalist herbivore Spodoptera littoralis, and the necrotrophic pathogen Setosphaeria turcica. Furthermore, D. v. virgifera increased shoot levels of 2,4-dihydroxy-7-methoxy-1,4-benzoxazin-3-one (DIMBOA), and primed the induction of chlorogenic acid upon subsequent infestation by S. littoralis. To gain insight into the signalling network behind this below- and aboveground defence interaction, we compiled a set of 32 defence-related genes, which can be used as transcriptional marker systems to detect activities of different hormone-response pathways. Belowground attack by D. v. virgifera triggered an ABA-inducible transcription pattern in the shoot. The quantification of defence hormones showed a local increase in the production of oxylipins after root and shoot infestation by D. v. virgifera and S. littoralis, respectively. On the other hand, ABA accumulated locally and systemically upon belowground attack by D. v. virgifera. Furthermore, D. v. virgifera reduced the aboveground water content, whereas the removal of similar quantities of root biomass had no effect. Our study shows that root herbivory by D. v. virgifera specifically alters the aboveground defence status of a maize, and suggests that ABA plays a role in the signalling network mediating this interaction.

摘要

植物在遭受胁迫时会激活局部和系统防御机制。这种先天免疫反应部分受植物激素调控,并涉及防御性代谢产物的积累。尽管对植物对食草动物的局部防御反应已有充分研究,但关于根部食草作用对地上部防御的影响却知之甚少。在此,我们研究了西部玉米根虫(Diabrotica virgifera virgifera)地下侵害对玉米地上部抗性的影响。D. v. virgifera的地下食草作用诱导了玉米对多食性食草动物斜纹夜蛾(Spodoptera littoralis)和坏死营养型病原菌大斑凸脐蠕孢(Setosphaeria turcica)的地上部抗性。此外,D. v. virgifera提高了玉米地上部2,4 - 二羟基 - 7 - 甲氧基 - 1,4 - 苯并恶嗪 - 3 - 酮(DIMBOA)的水平,并在随后斜纹夜蛾侵害时引发了绿原酸的诱导合成。为深入了解这种地下与地上防御相互作用背后的信号网络,我们汇编了一组32个与防御相关的基因,可将其用作转录标记系统来检测不同激素反应途径的活性。D. v. virgifera的地下侵害在玉米地上部引发了一种ABA诱导的转录模式。对防御激素的定量分析表明,在分别被D. v. virgifera和斜纹夜蛾进行根和地上部侵害后,脂氧素的产生在局部有所增加。另一方面,在D. v. virgifera进行地下侵害后,ABA在局部和系统水平上均有积累。此外,D. v. virgifera降低了地上部的含水量,而去除等量的根生物量则没有这种效果。我们的研究表明,D. v. virgifera的根部食草作用特异性地改变了玉米的地上部防御状态,并表明ABA在介导这种相互作用的信号网络中发挥作用。

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