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Enzyme-driven metabolomic screening: a proof-of-principle method for discovery of plant defence compounds targeted by pathogens

机译:酶驱动的代谢物筛选:用于发现毒性植物防御化合物的原则方法

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摘要

Plants produce a variety of secondary metabolites to defend themselves from pathogen attack, while pathogens have evolved to overcome plant defences by producing enzymes that degrade or modify these defence compounds. However, many compounds targeted by pathogen enzymes currently remain enigmatic. Identifying host compounds targeted by pathogen enzymes would enable us to understand the potential importance of such compounds in plant defence and modify them to make them insensitive to pathogen enzymes. Here, a proof of concept metabolomics-based method was developed to discover plant defence compounds modified by pathogens using two pathogen enzymes with known targets in wheat and tomato. Plant extracts treated with purified pathogen enzymes were subjected to LC-MS, and the relative abundance of metabolites before and after treatment were comparatively analysed. Using two enzymes from different pathogens the in planta targets could be found by combining relatively simple enzymology with the power of untargeted metabolomics. Key to the method is dataset simplification based on natural isotope occurrence and statistical filtering, which can be scripted. The method presented here will aid in our understanding of plant-pathogen interactions and may lead to the development of new plant protection strategies.
机译:植物产生各种次生代谢物,以防止来自病原体发作,而病原体已经演化以通过生产降解或改变这些防御化合物的酶来克服植物防御。然而,通过病原体酶靶向的许多化合物目前仍然是神秘的。鉴定由病原体酶靶向的宿主化合物将使我们能够理解这些化合物在植物防御中的潜在重要性,并改变它们以使它们对病原体酶不敏感。在这里,开发了基于概念代谢物的方法,以发现使用两种病原体修饰的植物防御化合物,所述植物防御化合物使用在小麦和番茄中具有已知靶标的两种病原体酶。用纯化的病原体酶处理的植物提取物进行LC-MS,并且在相对分析治疗前后代谢物的相对丰度。通过将来自不同病原体的两种酶在植物疗法中,可以通过与未明确的代谢组学的力量组合来找到相对简单的酶。该方法的关键是基于自然同位素发生和统计过滤的数据集简化,可以脚本。这里提出的方法将有助于我们对植物病原体互动的理解,并可能导致新的植物保护策略的发展。

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