Chlorophyll Metabolism in Postharvest Tea (Camellia sinensis L.) Leaves: Variations in Color Values, Chlorophyll Derivatives, and Gene Expression Levels under Different Withering Treatments

脱镁叶绿酸A 采后 山茶 叶绿素 叶绿素 叶绿素b 园艺 叶绿素a 植物 化学 生物 光合作用 光系统II
作者
Yu Wang,Shuai Hu,Chang He,Jingtao Zhou,Fengfeng Qu,Zeyi Ai,Yuqiong Chen,Dejiang Ni
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:67 (38): 10624-10636 被引量:85
标识
DOI:10.1021/acs.jafc.9b03477
摘要

The freshness and color quality of postharvest tea leaves can be markedly prolonged and retained by proper preservation measures. Here, we investigated the dynamic changes of chlorophyll and its derivatives in postharvest tea leaves under different low-temperature treatments using natural withering as a control. Chlorophyll decomposition was found closely related with chlorophyllide, pheophorbide, and pheophytin. Low-temperature withering could slow chlorophyll degradation in postharvest tea leaves via significant inhibition on the enzyme activity and gene expression of Mg-dechelatase, chlorophyllase, and pheophorbide a oxygenase. At the initial stage of withering, a significant increase was observed in the chlorophyll content, expression of chlorophyll-synthesis-related enzymes (such as glutamyl-tRNA synthetase, etc.), and chlorophyll synthase activity in newly picked tea leaves. Moreover, an obvious decrease was found in the content of l-glutamate as the foremost precursor substance of chlorophyll synthesis. Hence, our findings revealed that the chlorophyll synthesis reaction was induced by the light–dehydration–stress in the initial withering of tea leaves. This study provides a theoretical basis for exploring preservation technology in actual green tea production.
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