Accumulation of Amino Acids and Flavonoids in Young Tea Shoots Is Highly Correlated With Carbon and Nitrogen Metabolism in Roots and Mature Leaves
文献类型: 外文期刊
第一作者: Liu, Jianwei
作者: Liu, Jianwei;Liu, Meiya;Zhang, Qunfeng;Ruan, Jianyun;Liu, Jianwei;Fang, Hanhan
作者机构:
关键词: nitrogen; metabolomics; amino acid; tea root; flavonoid; tea quality
期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:6.627; 五年影响因子:7.255 )
ISSN: 1664-462X
年卷期: 2021 年 12 卷
页码:
收录情况: SCI
摘要: The quality of tea product and the metabolism of quality-related compounds in young shoots are significantly affected by the nitrogen(N) supply. However, little is known of the metabolic changes that take place in tea roots and mature leaves under different supplies, which has a large effect on the accumulation of quality-related compounds in young shoots. In this study, young shoots, mature leaves, and roots under different N conditions were subjected to metabolite profiling using gas chromatography and ultraperformance liquid chromatography, coupled with quadrupole time-of-flight mass spectrometry. The contents of free amino acids (e.g., theanine and glutamate) involved in N metabolism were significantly greater under high N than under low N, while a high N supply reduced soluble sugars (e.g., glucose) in all three tissues. Organic acids (e.g., malate, fumarate, alpha-ketoglutatare, and succinate) involved in tricarboxylic acid cycle remarkably increased as the nitrogen supply increased, which confirms that carbon (C) allocation was restricted by increasing the nitrogen supply, especially in mature leaves. RT-PCR results indicated that gene expression related to nitrogen assimilation significantly increased in roots with increasing nitrogen supply, which had a significant positive relationship with the level of free amino acids in young shoots. In addition, the expression of most genes involved in flavonoid synthesis was significantly upregulated under conditions of low nitrogen supply relative to high nitrogen supply in young shoot and roots. These data suggest that enhanced assimilation of N in tea roots and the coordinated regulation of C (sugars, organic acids, and flavonoids) and N(amino acids) in mature leaves can lead to a high accumulation of amino acids in young shoots. Furthermore, as the N supply increased, more C was partitioned into compounds containing N in mature leaves and roots, resulting in a decrease in flavonoids in young shoots. In conclusion, the accumulation of amino acids and flavonoids in young tea shoots is highly correlated with carbon and nitrogen metabolism in roots and mature leaves.
分类号:
- 相关文献
作者其他论文 更多>>
-
Characterization of nitrate use efficiency in tea plant (Camellia sinensis) based on leaf chlorate sensitivity
作者:Zhang, Wenjing;Dong, Xiaoying;Ni, Kang;Ma, Lifeng;Long, Lizhi;Ruan, Jianyun;Zhang, Wenjing;Dong, Xiaoying;Ni, Kang;Ma, Lifeng;Long, Lizhi;Ruan, Jianyun
关键词:
-
Effects of potassium on tea quality are associated with the accumulation of anthocyanins in tea plant
作者:Zhang, Hua;Li, Chunlei;Zhang, Longxiang;Zhang, Hua;Zhang, Longxiang;Zhang, Qunfeng
关键词:Tea plant; Potassium; Metabolome; Anthocyanins; Nutrition; Tea quality
-
Effect of Fertilization Timing on Nitrogen Uptake in Spring Tea of Different Sprouting Phenological Cultivars: A Field Trial with 15N Tracing
作者:Zhang, Yongli;Ni, Kang;Yang, Xiangde;Ma, Lifeng;Ruan, Jianyun;Zhang, Yongli;Long, Lizhi;Su, Youjian;Zhang, Yongli;Ni, Kang;Yang, Xiangde;Ma, Lifeng;Ruan, Jianyun
关键词:nitrogen fertilizer; timing effect; N-15 tracing; tea cultivar; nitrogen uptake; thermal condition
-
Large loss of reactive nitrogen and the associated environmental damages from tea production in China
作者:Huang, Xingcheng;Zhang, Wushuai;Wang, Xiaozhong;Shi, Xiaojun;Chen, Xinping;Liu, Bin;Zhang, Fusuo;Huang, Xingcheng;Lakshmanan, Prakash;Zhang, Wushuai;Wang, Xiaozhong;Liu, Bin;Shi, Xiaojun;Chen, Xinping;Zhang, Fusuo;Lakshmanan, Prakash;Lakshmanan, Prakash;Lakshmanan, Prakash;Ni, Kang;Ruan, Jianyun;Huang, Xingcheng
关键词:tea plantation; reactive nitrogen; damage cost; mitigation potential; meta-analysis
-
Partially replacing chemical fertilizer with manure improves soil quality and ecosystem multifunctionality in a tea plantation
作者:Liu, Boheng;Yi, Xiaoyun;Ni, Kang;Ma, Lifeng;Shi, Yuanzhi;Yang, Xiangde;Ruan, Jianyun;Zhang, Yongli;Zheng, Haitao;Ma, Qingxu;Cai, Yanjiang
关键词:Organic substitution; Microbial metabolic limitation; Soil quality; Ecosystem multifunctionality; Tea plantation
-
The Physiological and Flavonoid Metabolism of the Tea Plant in Response to Nitrogen Nutrition is Regulated by the Ultraviolet-B Radiation Environment
作者:Dong, Fang;Zhang, Hua;Ruan, Jianyun;Liu, Meiya;Zhang, Qunfeng;Liu, Linlin;Dong, Fang
关键词:Tea plant; Flavonol glycosides (FGs); Nitrogen level; UV-B radiation; Synthesis regulation; Antioxidant
-
Study on the Nitrogen Response and Low Nitrogen Tolerance Variations in Different Tea Varieties
作者:Zheng, Shenghong;Ni, Kang;Ruan, Jianyun;Zheng, Shenghong;Chai, Hongling;Kang, Huajing;Liu, Hui;Ning, Qiuyan;Cheng, Chen;Ruan, Jianyun
关键词:tea plants; nitrogen response; low nitrogen tolerance; ammonia acids; cluster analysis