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非靶向代谢组学揭示了与 PTI 相关的代谢物。

Untargeted metabolomics reveals PTI-associated metabolites.

机构信息

Chair of Phytopathology, TUM School of Life Sciences, Technical University of Munich, Freising, Germany.

TUM School of Life Sciences, Bavarian Center for Biomolecular Mass Spectrometry, Technical University of Munich, Freising, Germany.

出版信息

Plant Cell Environ. 2024 Apr;47(4):1224-1237. doi: 10.1111/pce.14794. Epub 2024 Jan 2.

Abstract

Plants employ a multilayered immune system to combat pathogens. In one layer, recognition of Pathogen- or Microbe-Associated Molecular Patterns or elicitors, triggers a cascade that leads to defence against the pathogen and Pattern Triggered Immunity. Secondary or specialised metabolites (SMs) are expected to play a role, because they are potentially anti-fungal compounds. Tomato (Solanum lycopersicum) plants inoculated with Alternaria solani s.l. show symptoms of infection after inoculation. Plants inoculated with Alternaria alternata remain symptomless. We hypothesised that pattern-triggered induction of resistance related metabolites in tomato contributes to the resistance against A. alternata. We compared the metabolomic profile (metabolome) of tomato after treatments with A. alternata, A. solani and the fungal elicitor chitin, and identified SMs involved in early defence of tomato plants. We revealed differential metabolome fingerprints. The composition of A. alternata and chitin induced metabolomes show larger overlap with each other than with the A. solani induced metabolome. We identify 65 metabolites possibly associated with PTI in tomato plants, including NAD and trigonelline. We confirm that trigonelline inhibits fungal growth in vitro at physiological concentrations. Thus, a true pattern-triggered, chemical defence is mounted against A. alternata, which contains anti-fungal compounds that could be interesting for crop protection strategies.

摘要

植物采用多层次的免疫系统来对抗病原体。在其中一层,对病原体或微生物相关的分子模式或激发子的识别,引发级联反应,导致对病原体的防御和模式触发免疫。次生或特殊代谢物 (SMs) 预计会发挥作用,因为它们可能是抗真菌化合物。用Alternaria solani s.l.接种的番茄(Solanum lycopersicum)植物在接种后会出现感染症状。用Alternaria alternata 接种的植物则无症状。我们假设番茄中与模式触发相关的抗性诱导代谢物的产生有助于对 A. alternata 的抗性。我们比较了用 A. alternata、A. solani 和真菌激发子几丁质处理后的番茄代谢组学图谱(代谢组),并鉴定了参与番茄早期防御的 SMs。我们揭示了不同的代谢组指纹图谱。A. alternata 和几丁质诱导的代谢组的组成彼此之间的重叠比与 A. solani 诱导的代谢组的重叠更大。我们确定了 65 种可能与番茄植物 PTI 相关的代谢物,包括 NAD 和瓜氨酸。我们证实瓜氨酸在生理浓度下可抑制真菌在体外的生长。因此,针对 A. alternata 建立了真正的模式触发、化学防御,其中包含的抗真菌化合物可能对作物保护策略具有意义。

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