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利用基于荧光的无损传感器监测采后光化学处理对废弃白菜叶的增值作用。

Valorization of waste cabbage leaves by postharvest photochemical treatments monitored with a non-destructive fluorescence-based sensor.

机构信息

Research Institute of Horticulture, Konstytucji 3 Maja 1/3, Skierniewice, Poland.

Istituto di Fisica Applicata 'N. Carrara' - CNR, Via Madonna del Piano, 10-50019 Sesto Fiorentino (Florence), Italy.

出版信息

J Photochem Photobiol B. 2021 Sep;222:112263. doi: 10.1016/j.jphotobiol.2021.112263. Epub 2021 Jul 20.

Abstract

The biosynthesis of polyphenolic compounds in cabbage waste, outer green leaves of white head cabbage (Brassica oleracea L. var. capitata subvar. alba), was stimulated by postharvest irradiation with UVB lamps or sunlight. Both treatments boosted the content of kaempferol and quercetin glycosides, especially in the basal leaf zone, as determined by the HPLC analysis of leaf extracts and by a non-destructive optical sensor. The destructive analysis of samples irradiated by the sun for 6 days at the end of October 2015 in Skierniewice (Poland) showed an increase of leaf flavonols by 82% with respect to controls. The treatment by a broadband UVB fluorescent lamp, with irradiance of 0.38 W m in the 290-315 nm range (and 0.59 W m in the UVA region) for 12 h per day at 17 °C along with a white light of about 20 μmol m s, produced a flavonols increase of 58% with respect to controls. The kinetics of flavonols accumulation in response to the photochemical treatments was monitored with the FLAV non-destructive index. The initial FLAV rate under the sun was proportional to the daily radiation doses with a better correlation for the sun global irradiance (R = 0.973), followed by the UVA (R = 0.965) and UVB (R = 0.899) irradiance. The sunlight turned out to be more efficient than the UVB lamp in increasing the flavonols level of waste leaves, because of a significant role played by UVA and visible solar radiation in the regulation of the flavonoid accumulation in cabbage. The FLAV index increase induced on the adaxial leaf side was accompanied by a lower but still significant FLAV increase on the unirradiated abaxial side, likely due to a systemic signaling by mean of the long-distance movement of macromolecules. Our present investigation provides useful data for the optimization of postharvest photochemical protocols of cabbage waste valorization. It can represent a novel and alternative tool of vegetable waste management for the recovery of beneficial phytochemicals.

摘要

白菜废弃物中外层绿叶(甘蓝,芸薹属亚种)中的多酚化合物的生物合成,可通过用 UVB 灯或阳光进行采后辐照来刺激。通过对叶片提取物的 HPLC 分析和非破坏性光学传感器的分析,这两种处理方法都增加了根皮苷和槲皮素糖苷的含量,尤其是在基生叶区。2015 年 10 月底,在波兰斯凯尔涅维采(Skierniewice),用太阳辐照处理 6 天后,对样本进行破坏性分析,结果表明,与对照相比,叶片类黄酮增加了 82%。每天用宽带 UVB 荧光灯在 17°C 下辐照 12 小时,辐照度为 0.38 W·m 在 290-315nm 范围内(在 UVA 区域为 0.59 W·m),同时用约 20 μmol·m·s 的白光,与对照相比,类黄酮增加了 58%。用 FLAV 非破坏性指数监测了类黄酮对光化学处理的积累动力学。在阳光下,初始 FLAV 速率与日剂量成正比,与太阳总辐照度的相关性更好(R=0.973),其次是 UVA(R=0.965)和 UVB(R=0.899)辐照度。由于在调节白菜类黄酮积累方面,UVA 和可见光太阳能辐射发挥了重要作用,因此,阳光比 UVB 灯更有效地提高了废叶的类黄酮水平。在叶的腹侧诱导的 FLAV 指数增加,伴随着在未辐照的背侧侧仍有较低但仍显著的 FLAV 增加,这可能是由于通过长距离移动大分子进行的系统信号。本研究为白菜废弃物采后光化学优化提供了有用的数据。它可以作为一种新的替代蔬菜废物管理工具,用于回收有益的植物化学物质。

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