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拉曼光谱在作物品质评估中的应用:聚焦于次生代谢产物的传感:综述

Raman spectroscopy in crop quality assessment: focusing on sensing secondary metabolites: a review.

作者信息

Park Miri, Somborn Annette, Schlehuber Dennis, Keuter Volkmar, Deerberg Görge

机构信息

Fraunhofer Institute for Environmental, Safety and Energy Technologies UMSICHT, 46047, Oberhausen, Germany.

出版信息

Hortic Res. 2023 Apr 19;10(5):uhad074. doi: 10.1093/hr/uhad074. eCollection 2023 May.

Abstract

As a crop quality sensor, Raman spectroscopy has been consistently proposed as one of the most promising and non-destructive methods for qualitative and quantitative analysis of plant substances, because it can measure molecular structures in a short time without requiring pretreatment along with simple usage. The sensitivity of the Raman spectrum to target chemicals depends largely on the wavelength, intensity of the laser power, and exposure time. Especially for plant samples, it is very likely that the peak of the target material is covered by strong fluorescence effects. Therefore, methods using lasers with low energy causing less fluorescence, such as 785 nm or near-infrared, are vigorously discussed. Furthermore, advanced techniques for obtaining more sensitive and clear spectra, like surface-enhanced Raman spectroscopy, time-gated Raman spectroscopy or combination with thin-layer chromatography, are being investigated. Numerous interpretations of plant quality can be represented not only by the measurement conditions but also by the spectral analysis methods. Up to date, there have been attempted to optimize and generalize analysis methods. This review summarizes the state of the art of micro-Raman spectroscopy in crop quality assessment focusing on secondary metabolites, from in vitro to in vivo and even in situ, and suggests future research to achieve universal application.

摘要

作为一种作物质量传感器,拉曼光谱法一直被认为是对植物物质进行定性和定量分析最有前景的无损方法之一,因为它能够在短时间内测量分子结构,无需预处理且使用简单。拉曼光谱对目标化学物质的灵敏度在很大程度上取决于波长、激光功率强度和曝光时间。特别是对于植物样品,目标物质的峰很可能被强烈的荧光效应所覆盖。因此,使用低能量、产生较少荧光的激光(如785纳米或近红外激光)的方法受到了广泛讨论。此外,人们正在研究获得更灵敏、更清晰光谱的先进技术,如表面增强拉曼光谱、时间分辨拉曼光谱或与薄层色谱联用。对植物质量的众多解读不仅可以通过测量条件来体现,还可以通过光谱分析方法来体现。到目前为止,人们一直在尝试优化和推广分析方法。本综述总结了微拉曼光谱在作物质量评估方面的研究现状,重点关注次生代谢物,从体外到体内甚至原位,并提出了实现普遍应用的未来研究方向。

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