← Papers

Unverified paper record

Estimation of functional components of Chinese cabbage leaves grown in a plant factory using diffuse reflectance spectroscopy

Journal of the Science of Food and Agriculture · 27 Aug 2018 · 10.1002/jsfa.9237

Abstract

Abstract BACKGROUND In recent years, protected crop production using plant factories to produce high‐value crops with greater functional components has become more popular in many countries. The quantification of the components, however, is mainly conducted by laboratory analyses, which are both time‐ and labor‐consuming. The present study aimed to investigate the potential of a non‐destructive diffuse reflectance spectroscopy technique for estimating functional components (i.e. glucosinolates, amino acids, sugars and carotenoids) in the leaves of Chinese cabbage grown in a plant factory. RESULTS From the overall analysis, better estimations were obtained using the partial least square regression procedure. The important wavelengths for each functional component were identified mainly in the ultraviolet‐visible regions. Identified wavelengths were 317, 390, 888 and 940 nm for sugars; 520 and 960 nm for amino acids; 385, 860 and 945 nm for glucosinolates; and 454, 472 and 530 nm for carotenoids. CONCLUSION Optical reflectance spectroscopy shows potential as a tool for the estimation of functional components in the leaves of Chinese cabbage. The results of the present study provide useful information for the design and application of sensors with respect to on‐site quantification of the functional components. © 2018 Society of Chemical Industry

Plant phenotyping relevance

中国白菜葉の機能性成分を、非破壊の拡散反射分光法とPLS回帰で推定する手法を中心に検討しており、植物器官の化学的形質取得・センサー設計に関する方法研究である。

abstractThe present study aimed to investigate the potential of a non‐destructive diffuse reflectance spectroscopy technique for estimating functional components (i.e. glucosinolates, amino acids, sugars and carotenoids) in the leaves of Chinese cabbage grown in a plant factory.
abstractOptical reflectance spectroscopy shows potential as a tool for the estimation of functional components in the leaves of Chinese cabbage.

Code and data availability

公開本文の所在を確認できませんでした。非公開または購読が必要な可能性があります。

No evidence-backed public reproduction asset is currently recorded.

This is an automatically classified, unverified record. Curator approval is required before any resource enters the Catalog.