The reduction of tea quality caused by irrational phosphate application is associated with anthocyanin metabolism
文献类型: 外文期刊
作者: Hua Zhang;Chunlei Li;Kailing Wei;Meiya Liu;Yuanzhi Shi;Xiangde Yang;Li Fang;Jianyun Ruan;Qunfeng Zhang
作者机构:
期刊名称: Beverage Plant Research
ISSN: 2769-2108
年卷期: 2023 年 2023 卷 3 期
页码:
收录情况: 不在遴选数据库范围(2023版)
摘要: Phosphorus (P) is the second most limiting nutrient for plant growth. Previous studies suggested that P substantially affects the yield and quality of tea by affecting root growth, the decomposition and metabolism of minerals and metabolites in plants. Thus, the environmental pollution and degradation of crop quality caused by irrational fertilization is of increasing interest for researchers worldwide. To understand the effects of P fertilization on tea quality and metabolism of key quality components, three P fertilization levels (excessive, appropriate, and deficient application) were applied to tea plants using pot experiments. Content of P, potassium, polyphenols, amino acids and anthocyanins in the leaves or soil were quantified. The sensory quality of tea infusion was reduced under irrational (excessive or deficient) P fertilization. Under P deficiency, the total content of polyphenols and anthocyanins in the leaves were strongly increased compared with those of the control. A high soil P content (excessive) inhibited polyphenol accumulation, but induced the accumulation of certain anthocyanins, such as peonidin-3-O-sambubioside-5-O-glucoside and peonidin-3-O-5-O-(6-O-p-coumaryl)-diglucoside. These results suggest that the reduction of tea quality caused by irrational P application is associated with anthocyanin metabolism, which provides a scientific basis for improving P fertilization strategies in tea plantations.
分类号:
- 相关文献
作者其他论文 更多>>
-
Long-term cultivation of indica–japonica hybrid rice reshapes the sustainability of rice systems by simultaneously enhancing yield, nitrogen use efficiency, and soil health
作者:Jinjia Gan;Xinyue Xu;Sheng Tang;Kefeng Han;Tao Sun;Jinzhao Ma;Xiangde Yang;Xiu Liu;Haoran Fu;Zhihao Pang;Lingli Mao;Lianghuan Wu;Qingxu Ma
关键词:Indica–japonica hybrid rice;Long-term field experiment;Nitrogen use efficiency;Soil quality index
-
Drip Fertigation Improves Maize Yield, Resource Utilization, and Economic Benefits by Increasing Light Interception Under Dense Planting in Southwest China
作者:Li Song;Guangzhou Liu;Yunshan Yang;Xiaoxia Guo;Hua Zhang;Tingqi Lu;Chunyan Qing;Dan Hu;Shaokun Li;Peng Hou
关键词:dense planting;drip irrigation;light interception;maize;resource use efficiency
-
Effects of Long-Term Organic Substitution on Soil Nitrous Oxide Emissions in a Tea (Camellia sinensis L.) Plantation in China
作者:Zhidan Wu;Wei Hua;Kang Ni;Xiangde Yang;Fuying Jiang
关键词:influencing factors;nitrous oxide emission;organic substitution;tea plantation;tea yield
-
Fertility Assessment and Risk Management in Tea Plantations: Role of P-Promoted Metals’ Availability
作者:Ziwen Luo;Yongwang Ju;Linbo Chen;Xiangde Yang;Yaqin Long;Xue Liu
关键词:available concentration;fertility assessment;fertilizers;metals;tea plantation
-
Effects of Long-Term Nitrogen Fertilization on Nitrous Oxide Emission and Yield in Acidic Tea (Camellia sinensis L.) Plantation Soils
作者:Fuying Jiang;Yunni Chang;Jiabao Han;Xiangde Yang;Zhidan Wu
关键词:acidic soil;driving factors;long-term N application;N2O flux;tea-plantation system
-
Contrasting Responses of N2O Mitigation to Different Nitrification Inhibitors in Tea Plantation Soils
作者:Wei Hua;Siyun Niu;Chenguang Zhao;Jie Wang;Xiangde Yang;Yuanzhi Shi;Kang Ni
关键词:ammonia-oxidizing microbes;mitigation;nitrification inhibitor;nitrification rate;nitrous oxide;tea plantation soil
-
Exogenous strigolactones modulate antioxidant metabolism via CsD27 to enhance drought tolerance in tea plants
作者:Jingyue Shen;Manni Tong;Qingyun Yuan;Lizhi Long;Yuanzhi Shi
关键词:catechin;CsD27;drought stress;strigolactones;tea plant