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首页> 外文期刊>Phytochemical Analysis >An Overview of Plant Volatile Metabolomics, Sample Treatment and Reporting Considerations with Emphasis on Mechanical Damage and Biological Control of Weeds
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An Overview of Plant Volatile Metabolomics, Sample Treatment and Reporting Considerations with Emphasis on Mechanical Damage and Biological Control of Weeds

机译:植物挥发性代谢组学概述,样品处理和重点考虑杂草的机械损伤和生物防治的报告注意事项

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Introduction - The technology for the collection and analysis of plant-emitted volatiles for understanding chemical cues of plant-plant, plant-insect or plant-microbe interactions has increased over the years. Consequently, the in situ collection, analysis and identification of volatiles are considered integral to elucidation of complex plant communications. Due to the complexity and range of emissions the conditions for consistent emission of volatiles are difficult to standardise.Objective -To discuss: evaluation of emitted volatile metabolites as a means of screening potential target-and non-target weeds/plants for insect biological control agents; plant volatile metabolomics to analyse resultant data; importance of considering volatiles from damaged plants; and use of a database for reporting experimental conditions and results.Method - Recent literature relating to plant volatiles and plant volatile metabolomics are summarised to provide a basic understanding of how metabolomics can be applied to the study of plant volatiles.Results - An overview of plant secondary metabolites, plant volatile metabolomics, analysis of plant volatile metabolomics data and the subsequent input into a database, the roles of plant volatiles, volatile emission as a function of treatment, and the application of plant volatile metabolomics to biological control of invasive weeds.Conclusion - It is recommended that in addition to a non-damaged treatment, plants be damaged prior to collecting volatiles to provide the greatest diversity of odours. For the model system provided, optimal volatile emission occurred when the leaf was punctured with a needle. Results stored in a database should include basic environmental conditions or treatments
机译:简介-近年来,用于了解植物与植物,植物与昆虫或植物与微生物相互作用的化学线索的用于收集和分析植物排放的挥发物的技术不断增加。因此,原位收集,分析和鉴定挥发物被认为是阐明复杂植物通讯所不可或缺的。由于排放物的复杂性和范围,很难对挥发物的持续排放条件进行标准化。目的-讨论:评估排放的挥发性代谢物,以此作为筛选潜在的目标和非目标杂草/植物的昆虫生物防治剂的方法;植物挥发性代谢组学分析结果数据;考虑来自受损植物的挥发物的重要性;方法-总结了有关植物挥发物和植物挥发物代谢组学的最新文献,以提供对如何将代谢组学应用于植物挥发物研究的基本理解。结果-植物概述次生代谢物,植物挥发性代谢物组学,植物挥发性代谢物组学数据分析和随后输入数据库,植物挥发物的作用,挥发性排放物作为处理的功能以及植物挥发性代谢物组学在入侵杂草的生物防治中的应用-建议除进行非破坏性处理外,还应在收集挥发物之前对植物进行破坏,以提供最大程度的气味。对于所提供的模型系统,当针叶刺穿叶子时会产生最佳的挥发物排放。存储在数据库中的结果应包括基本环境条件或处理方法

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