Dipartimento di Agricoltura, Alimentazione e Ambiente, Università di Catania, Catania, Italy.
Department of Biophotonics, Meluna Research, Wageningen, Netherlands.
PLoS One. 2023 Jun 1;18(6):e0286383. doi: 10.1371/journal.pone.0286383. eCollection 2023.
The food industry places significant emphasis on ensuring quality and traceability as key components of a healthy diet. To cater to consumer demands, researchers have prioritized the development of analytical techniques that can rapidly and non-invasively provide data on quality parameters. In this study, we propose to use the Delayed Luminescence (DL), an ultra-weak and photo-induced emission of optical photons, as a tool for a rapid evaluation of quality profile associated with fruit ripening, in support of traditional analysis methods. Delayed Luminescence measurements have been performed on cherry tomatoes, with and without the PGI "Pomodoro di Pachino" certification, harvested from two different growing areas of south-eastern Sicily (Italy). Then, DL emissions were correlated with soluble solid content and titratable acidity values, which are known to affect the flavor, the commerciality and the maturity degree of tomato fruits. In addition, we evaluated the changes in the DL parameters with respect to the geographical origin of the cherry tomatoes, with the aim of testing the possibility of applying the technique for identification purposes. The signals of Delayed Luminescence appeared to be good indicators of the macromolecular structure of the biological system, revealing structural changes related to the content of total soluble solids present in the juice of tomatoes analyzed, and they appeared unsuitable for authenticating vegetable crops, since the differences in the photon yields emitted by tomato Lots were not related to territory of origin. Thus, our results suggest that DL can be used as a nondestructive indicator of important parameters linked to tomato fruit quality.
食品工业非常重视确保质量和可追溯性,将其作为健康饮食的关键组成部分。为了满足消费者的需求,研究人员优先开发能够快速、非侵入性地提供质量参数数据的分析技术。在这项研究中,我们建议使用延迟发光(DL)作为一种快速评估与果实成熟相关的质量特征的工具,以支持传统的分析方法。已经对有和没有 PGI“Pachino 番茄”认证的樱桃番茄进行了延迟发光测量,这些番茄分别来自意大利东南部两个不同的种植区。然后,将 DL 发射与可溶性固形物含量和可滴定酸度值相关联,这些值已知会影响番茄果实的风味、商业性和成熟度。此外,我们评估了 DL 参数随樱桃番茄地理来源的变化,目的是测试该技术用于识别目的的可能性。延迟发光信号似乎是生物系统大分子结构的良好指标,揭示了与分析番茄汁中总可溶性固体含量相关的结构变化,并且它们似乎不适合用于验证蔬菜作物,因为番茄批次发出的光子产率差异与原产地区域无关。因此,我们的结果表明,DL 可以用作与番茄果实质量相关的重要参数的无损指示剂。