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地下和地上食草作用对玉米根和地上部分的转录组有不同影响。

Belowground and aboveground herbivory differentially affect the transcriptome in roots and shoots of maize.

作者信息

Ye Wenfeng, Bustos-Segura Carlos, Degen Thomas, Erb Matthias, Turlings Ted C J

机构信息

Laboratory of Fundamental and Applied Research in Chemical Ecology, Institute of Biology University of Neuchâtel Neuchâtel Switzerland.

Institute of Plant Sciences University of Bern Bern Switzerland.

出版信息

Plant Direct. 2022 Jul 22;6(7):e426. doi: 10.1002/pld3.426. eCollection 2022 Jul.

Abstract

UNLABELLED

Plants recognize and respond to feeding by herbivorous insects by upregulating their local and systemic defenses. While defense induction by aboveground herbivores has been well studied, far less is known about local and systemic defense responses against attacks by belowground herbivores. Here, we investigated and compared the responses of the maize transcriptome to belowground and aboveground mechanical damage and infestation by two well-adapted herbivores: the soil-dwelling western corn rootworm (Coleoptera: Chrysomelidae) and the leaf-chewing fall armyworm (Lepidoptera: Noctuidae). In responses to both herbivores, maize plants were found to alter local transcription of genes involved in phytohormone signaling, primary and secondary metabolism. Induction by real herbivore damage was considerably stronger and modified the expression of more genes than mechanical damage. Feeding by the corn rootworm had a strong impact on the shoot transcriptome, including the activation of genes involved in defense and development. By contrast, feeding by the fall armyworm induced only few transcriptional changes in the roots. In conclusion, feeding by a leaf chewer and a root feeder differentially affects the local and systemic defense of maize plants. Besides revealing clear differences in how maize plants respond to feeding by these specialized herbivores, this study reveals several novel genes that may play key roles in plant-insect interactions and thus sets the stage for in depth research into the mechanism that can be exploited for improved crop protection.

SIGNIFICANCE STATEMENT

Extensive transcriptomic analyses revealed a clear distinction between the gene expression profiles in maize plants upon shoot and root attack, locally as well as distantly from the attacked tissue. This provides detailed insights into the specificity of orchestrated plant defense responses, and the dataset offers a molecular resource for further genetic studies on maize resistance to herbivores and paves the way for novel strategies to enhance maize resistance to pests.

摘要

未标记

植物通过上调其局部和系统防御来识别并响应食草昆虫的取食行为。虽然地上食草动物诱导的防御已得到充分研究,但对于地下食草动物攻击引发的局部和系统防御反应知之甚少。在此,我们研究并比较了玉米转录组对地下和地上机械损伤以及两种适应性良好的食草动物侵害的反应:土壤栖息的西部玉米根虫(鞘翅目:叶甲科)和食叶的草地贪夜蛾(鳞翅目:夜蛾科)。在对两种食草动物的反应中,发现玉米植株会改变参与植物激素信号传导、初级和次级代谢的基因的局部转录。真实食草动物损伤诱导的反应比机械损伤强烈得多,且改变的基因表达更多。玉米根虫的取食对地上部分转录组有强烈影响,包括参与防御和发育的基因的激活。相比之下,草地贪夜蛾的取食仅在根部诱导了少数转录变化。总之,食叶动物和食根动物的取食对玉米植株的局部和系统防御有不同影响。除了揭示玉米植株对这些特定食草动物取食反应的明显差异外,本研究还发现了几个可能在植物 - 昆虫相互作用中起关键作用的新基因,从而为深入研究可用于改进作物保护的机制奠定了基础。

意义声明

广泛的转录组分析揭示了玉米植株在地上和根部受到攻击时,在局部以及远离受攻击组织处的基因表达谱存在明显差异。这为精心编排的植物防御反应的特异性提供了详细见解,并且该数据集为进一步研究玉米对食草动物的抗性提供了分子资源,为增强玉米抗虫性的新策略铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6727/9307387/5ca8016a7951/PLD3-6-e426-g001.jpg

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