不同光处理下两种萝卜微绿品种有机硫化合物的消化

Marta Silva, Raúl Domínguez-Perles, Diego A Moreno, Olga Viegas, Miguel A Faria, Susana M P Carvalho, Isabel M P L V O Ferreira
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引用次数: 0

摘要

萝卜富含促进健康的有机硫化合物。研究了胃肠消化(GID)对萝卜(Raphanus sativus和Raphanus;简历。白萝卜和cv。红色兰博)在白色(W)或红色+蓝色(R +B) led下生长在封闭的垂直系统中,结合不同的UV-C辐射应用(0,1或3脉冲)。在GID (INFOGEST静态体外GID模型)前后,评估led和UV-C对GSLs和ITCs的单独和联合影响。通过结构方程模型(SEM)研究了化合物消化前后的关系。这两个品种都是脂肪族GSLs(白萝卜:513.4±23.1-681.5±31.9 mg 100 g-1,红蓝博:447.5±38.5-532.0±20.2 mg 100 g-1)和ITCs(白萝卜:0.9±0.1-1.8±0.3 mg 100 g-1,红蓝博:1.3±0.2-5.2±1.0 mg 100 g-1)的良好来源。LED类型比UV-C辐射更有影响。一般来说,R + B led通过增加《白萝卜》中的脱氢erucin来增强GSLs,同时在《红兰博》中提高ITCs。消化后,红兰博的萝卜硫素含量明显高于白萝卜。红兰博的扫描电镜(SEM)显著地证实了在GID期间,萝卜硫素转化为萝卜硫素和萝卜硫素。在白萝卜中,GID前后化合物之间没有明显的关系。这些发现表明,可以优化不同品种的代谢途径和对光的反应,以促进与健康有关的化合物的积累。扫描电镜的创新应用为GID期间发生的代谢转化提供了更深入的见解。红兰博富含萝卜硫素,是一种极好的萝卜硫素代谢物来源,具有潜在的健康益处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digestion of organosulfur compounds of two radish microgreen cultivars grown under different light treatments.

Radishes are rich in health-promoting organosulfur compounds. This study investigated the effects of gastrointestinal digestion (GID) on glucosinolates (GSLs) and isothiocyanates (ITCs) of two radish microgreens cultivars (Raphanus sativus; cv. Daikon, and cv. Red Rambo) grown in a closed vertical system under either White (W) or Red+Blue (R + B) LEDs, combined with varying applications of UV-C radiation (0, 1, or 3 pulses). The individual and combined effects of LEDs and UV-C on GSLs and ITCs were evaluated before and after GID (INFOGEST static in vitro GID model). Relationships between compounds before/after digestion were explored through Structural Equation Modelling (SEM). Both cultivars are good sources of aliphatic GSLs (Daikon: 513.4 ± 23.1-681.5 ± 31.9, Red Rambo: 447.5 ± 38.5-532.0 ± 20.2 mg 100 g-1) and ITCs (Daikon: 0.9 ± 0.1-1.8 ± 0.3, Red Rambo: 1.3 ± 0.2-5.2 ± 1.0 mg 100 g-1). LED type was more impactful than UV-C radiation. Generally, R + B LEDs enhanced GSLs due to increasing dehydroerucin in Daikon, while improving ITCs in Red Rambo. Post-digestion, Red Rambo showed markedly higher sulforaphene levels compared to Daikon. Red Rambo's SEM significantly confirmed the conversion of glucoraphenin into sulforaphene and sulforaphane during GID. In Daikon, no significant relationships between compounds before/after GID were found. These findings suggest cultivar-specific metabolic pathways and responses to light, which can be optimized to enhance the accumulation of health-related compounds. The innovative use of SEM provided deeper insights into the metabolic conversions occurring during GID. The abundant sulforaphene levels from Red Rambo highlight this cultivar as an excellent source of this metabolite and its potential health benefits.

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