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中国精品科技期刊2020
黄静,吴玲玲,巫虹颖,等. 基于非靶向代谢组学解析茶树新品种‘龙蕊1号’的夏季紫化表型J. 食品工业科技,2026,47(18):1−11. doi: 10.13386/j.issn1002-0306.2025060101.
引用本文: 黄静,吴玲玲,巫虹颖,等. 基于非靶向代谢组学解析茶树新品种‘龙蕊1号’的夏季紫化表型J. 食品工业科技,2026,47(18):1−11. doi: 10.13386/j.issn1002-0306.2025060101.
HUANG Jing, WU Lingling, WU Hongying, et al. Revealing Summer Leaf Purpling Phenotype of Camellia sinensis cv. 'Longrui 1' with Untargeted MetabolomicsJ. Science and Technology of Food Industry, 2026, 47(18): 1−11. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2025060101.
Citation: HUANG Jing, WU Lingling, WU Hongying, et al. Revealing Summer Leaf Purpling Phenotype of Camellia sinensis cv. 'Longrui 1' with Untargeted MetabolomicsJ. Science and Technology of Food Industry, 2026, 47(18): 1−11. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2025060101.

基于非靶向代谢组学解析茶树新品种‘龙蕊1号’的夏季紫化表型

Revealing Summer Leaf Purpling Phenotype of Camellia sinensis cv. 'Longrui 1' with Untargeted Metabolomics

  • 摘要: 为阐明特异茶树种质资源‘龙蕊1号’芽叶颜色随季节变化的分子机制,本研究以稳定绿色品种‘中茶108’和紫色品种‘紫娟’为对照,综合运用生化测定、非靶向与靶向代谢组学技术,系统解析了‘龙蕊1号’季节性紫化表型在叶片色泽、品质成分与代谢谱等方面的动态规律与形成基础。结果表明,‘龙蕊1号’芽叶由春季的紫绿色转变为夏季的紫色,该过程伴随着游离氨基酸含量显著(P<0.05)下降及总多酚和儿茶素含量显著(P<0.05)上升。非靶向代谢组学在紫色与绿色表型间共筛选出116个共有差异代谢物,其中类黄酮占比最高(31种)。‘龙蕊1号’在季节性转变中表现出独特的代谢重编程,其单萜类生物合成等通路被特异性激活,进一步靶向分析的结果显示,‘龙蕊1号’的季节性紫化是由矢车菊素和飞燕草素-O-半乳糖苷在夏季的爆发式增长所驱动的,此积累模式与‘紫娟’(夏季含量下降)形成鲜明对比。综上,‘龙蕊1号’的季节性紫化是一种由环境因子诱导、特定花青苷(尤其是矢车菊素)大量从头合成所介导的动态响应过程,其代谢调控模式与组成型紫色品种存在本质区别。该特异种质为了解茶树环境适应性及培育特色新品种提供了宝贵的遗传资源与理论依据。

     

    Abstract: To elucidate the molecular mechanism underlying the seasonal variation in leaf color of the unique tea plan germplasm 'Longrui 1' (Camellia sinensis cv. 'Longrui 1', Lr1), the dynamic patterns and underlying mechanisms of the seasonal purple phenotype in 'Longrui 1', particularly regarding leaf coloration, quality components, and metabolic profiles, were systematically investigated. A combined approach of biochemical assays, untargeted and targeted metabolomics was employed, using the constitutively green cultivar 'Zhongcha 108' and the constitutively purple cultivar 'Zijuan' as controls. The results indicated that the young shoots of Lr1 transitioned from purple-green in spring to purple in summer, a process accompanied by a significant decrease (P<0.05) in the content of free amino acids and a significant increase (P<0.05) in total polyphenols and catechins. Untargeted metabolomics identified 116 common differentially expressed metabolites (DEMs) between the purple and green phenotypes, with flavonoids being the most predominant class (31 metabolites). Notably, Lr1 exhibited a unique metabolic reprogramming during its seasonal transition, characterized by the specific activation of pathways such as monoterpenoid biosynthesis. Further targeted quantitative approach revealed that that the seasonal purpling of Lr1 was driven by an explosive accumulation of cyanidin and delphinidin-O-galactoside in summer, an accumulation pattern that stands in stark contrast to that of 'Zijuan', whose levels decreased in summer. This study demonstrates that the seasonal purpling of Lr1 is a dynamic response process mediated by the massive de novo synthesis of specific anthocyanins (particularly cyanidin), induced by environmental factors. Its metabolic regulatory model was fundamentally different from that of constitutively purple cultivars. This unique germplasm provides a valuable genetic resource and a theoretical basis for understanding the environmental adaptability of tea plants and for breeding novel specialty cultivars.

     

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