“华农53″”红茶加工过程中风味物质形成机理的多组学相关分析

IF 7.1 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY LWT - Food Science and Technology Pub Date : 2024-12-15 Epub Date: 2024-11-23 DOI:10.1016/j.lwt.2024.117086
Yueyang Du , Huan Zhang , Dylan O.'Neill Rothenberg , Kaikai Zhang , Yongen Lin , Kaiwei Jin , Jielin Li , Hui Zhou , Hongfeng Su , Rongquan Ji , Lingyun Zhang
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引用次数: 0

摘要

采用靶向代谢组学、转录组学和GC-MS技术,对“华农53”红茶5个加工阶段挥发性和非挥发性代谢物以及基因转录水平的动态变化进行了全面研究。共鉴定出2062种代谢物,其中黄酮类化合物428种,氨基酸及其衍生物194种。红茶风味特征成分的种类和含量在萎凋和发酵阶段变化最为显著。茶叶香气组成的关键成分,包括芳樟醇、苯乙醛和香叶醇,分别与注释为芳樟醇合成酶、芳香转氨酶和香叶醇二磷酸合成酶的特异性转录物显著对应。在整个加工过程中,儿茶素的减少和伴随而来的氧化儿茶素二聚体如茶黄素(TF)的增加,与类黄酮途径基因表达的下调和推测的TF生物合成基因(包括漆酶、多酚氧化酶和多种过氧化物酶)表达的上调呈正相关。本研究为全面了解红茶加工过程中代谢物的变化提供了视角,为提高红茶品质和茶品种加工适宜性的研究提供了依据。
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Multiomics correlation analysis on the mechanism of flavor substance formation during the processing of "Huanong 53″ black tea
A comprehensive investigation was conducted using targeted metabolomics, transcriptomics, and GC-MS techniques to study the dynamic changes in volatile and non-volatile metabolites, as well as gene transcription levels, in five processing stages of 'Huanong 53′ black tea (Camellia sinensis). A total of 2062 metabolites were identified, with flavonoids (428) and amino acids and their derivatives (194) being the main categories. The types and contents of flavor characteristic components of black tea changed most significantly during the withering and fermentation stages. Key elements of tea aroma composition, including linalool, benzeneacetaldehyde, and geraniol were found to correspond significantly with specific transcripts annotated as linalool synthase, aromatic aminotransferase, and geraniol diphosphate synthase, respectively. Throughout processing, a decrease in catechins and concomitant increase in oxidized catechin dimers, such as theaflavin (TF), was positively correlated with down-regulated flavonoid pathway gene expression and up-regulated expression of putative TF biosynthetic genes, including laccases, polyphenol oxidase, and a wide range of peroxidases. This study provides a comprehensive perspective on the changes in metabolites during black tea processing, and contributes to the research on improving black tea quality and the suitability of tea varieties for processing.
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来源期刊
LWT - Food Science and Technology
LWT - Food Science and Technology 工程技术-食品科技
CiteScore
11.80
自引率
6.70%
发文量
1724
审稿时长
65 days
期刊介绍: LWT - Food Science and Technology is an international journal that publishes innovative papers in the fields of food chemistry, biochemistry, microbiology, technology and nutrition. The work described should be innovative either in the approach or in the methods used. The significance of the results either for the science community or for the food industry must also be specified. Contributions written in English are welcomed in the form of review articles, short reviews, research papers, and research notes. Papers featuring animal trials and cell cultures are outside the scope of the journal and will not be considered for publication.
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