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基于食品组学的乳制品控制与质量提升方法

Foodomic-Based Approach for the Control and Quality Improvement of Dairy Products.

作者信息

Agregán Rubén, Echegaray Noemí, Nawaz Asad, Hano Christophe, Gohari Gholamreza, Pateiro Mirian, Lorenzo José M

机构信息

Centro Tecnológico de la Carne de Galicia, Adva. Galicia n° 4, Parque Tecnológico de Galicia, San Cibrao das Viñas, 32900 Ourense, Spain.

Jiangsu Key Laboratory of Crop Genetics and Physiology, College of Agriculture, Yangzhou University, Yangzhou 225009, China.

出版信息

Metabolites. 2021 Nov 29;11(12):818. doi: 10.3390/metabo11120818.

Abstract

The food quality assurance before selling is a needed requirement intended for protecting consumer interests. In the same way, it is also indispensable to promote continuous improvement of sensory and nutritional properties. In this regard, food research has recently contributed with studies focused on the use of 'foodomics'. This review focuses on the use of this technology, represented by transcriptomics, proteomics, and metabolomics, for the control and quality improvement of dairy products. The complex matrix of these foods requires sophisticated technology able to extract large amounts of information with which to influence their aptitude for consumption. Thus, throughout the article, different applications of the aforementioned technologies are described and discussed in essential matters related to food quality, such as the detection of fraud and/or adulterations, microbiological safety, and the assessment and improvement of transformation industrial processes (e.g., fermentation and ripening). The magnitude of the reported results may open the door to an in-depth transformation of the most conventional analytical processes, with the introduction of new techniques that allow a greater understanding of the biochemical phenomena occurred in this type of food.

摘要

销售前的食品质量保证是保护消费者利益的必要要求。同样,促进感官和营养特性的持续改善也不可或缺。在这方面,食品研究最近通过专注于“食品组学”应用的研究做出了贡献。本综述聚焦于以转录组学、蛋白质组学和代谢组学为代表的该技术在乳制品质量控制和提升方面的应用。这些食品的复杂基质需要能够提取大量信息以影响其食用适宜性的精密技术。因此,在整篇文章中,上述技术在与食品质量相关的重要事项中的不同应用将被描述和讨论,比如欺诈和/或掺假检测、微生物安全性以及加工工业过程(如发酵和成熟)的评估与改进。所报道结果的重要性可能为最传统分析过程的深度变革打开大门,引入能更深入理解这类食品中发生的生化现象的新技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a90/8709215/ac53a2c5774a/metabolites-11-00818-g001.jpg

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