文献类型: 外文期刊
作者: Tong, Wei 1 ; Yu, Jie 1 ; Wu, Qiong 1 ; Hu, Lizhen 1 ; Tabys, Dina 3 ; Wang, Yijun 1 ; Wei, Chaoling 1 ; Ling, Tiejun 1 ; In 1 ;
作者机构: 1.Anhui Agr Univ, State Key Lab Tea Plant Biol & Utilizat, Hefei 230036, Peoples R China
2.Anhui Acad Agr Sci, Sericultural Res Inst, Hefei 230061, Peoples R China
3.Nazarbayev Univ, Sch Med, Dept Biomed Sci, Nur Sultan 010000, Kazakhstan
4.Univ Georgia, Dept Genet, Athens, GA 30602 USA
关键词: tea quality; microbial community; tea processing; black tea; surface sterilization
期刊名称:JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY ( 影响因子:5.279; 五年影响因子:5.269 )
ISSN: 0021-8561
年卷期: 2021 年 69 卷 25 期
页码:
收录情况: SCI
摘要: Microbiomes can greatly affect the quality of fermented food and beverages, including tea. In this study, microbial populations were characterized during black and green tea manufacturing, revealing that tea processing steps can drive both the bacterial and fungal community structure. Tea leaves were found to mostly harbor Proteobacteria, Bacteriodetes, Firmicutes, and Actinobacteria among bacteria and Ascomycetes among fungi. During processing, tea microbial populations changed especially between sterilized and unsterilized samples. The surface sterilization of fresh leaves before processing can remove many microbes, especially the bacteria of the genera Sphingomonas and Methylobacteria, indicating that these are mostly phylloplane microbes on tea leaves. The surface sterilization removed most fungi, except the Debaryomyces. We also observed a fluctuation in the content of several tea quality-related metabolites during processing. Caffeine and theanine were found in the same quantities in green tea with or without leaf surface sterilization. However, the sterilization process dramatically decreased the content of total catechins and theanine in black tea, indicating that microbes on the surface of tea leaf may be involved in maintaining the formation of these important metabolites during black tea processing.
- 相关文献
作者其他论文 更多>>
-
Uncovering the key miRNA-target network of tea plants in resistance to sooty mold disease
作者:Wang, Shuangshuang;Sun, Litao;Xu, Xiuxiu;Shen, Jiazhi;Li, Xiaojiang;Ding, Zhaotang;Wei, Chaoling;Liu, Shengrui;Zhang, Ran
关键词:Tea plants; Sooty mold disease; Defense response; Integration analysis; miRNA-target circuits
-
Natural variation in promoters of F3′5′H and ANS correlates with catechins diversification in Thea species of genus Camellia
作者:Zhang, Yanrui;Pan, Haiyan;Zha, Yinong;Su, Jingjing;Li, Fangdong;Tong, Wei;Zhang, Liang;Xia, Enhua;Wu, Qiong
关键词:
Thea plants; catechins variation; Natural variation; functional evidences -
Core collection construction and genetic diversity analysis of tea plant (Camellia sinensis [L:] O. Kuntze) accessions in Huangshan city using SSR markers
作者:Ruan, Xu;Wu, Qiong;Jiao, Xiaoyu;Liu, Dandan;Sun, Minghui;Wang, Leigang;Wang, Wenjie
关键词:
-
Genomic variation of 363 diverse tea accessions unveils the genetic diversity, domestication, and structural variations associated with tea adaptation
作者:Tong, Wei;Wang, Yanli;Li, Fangdong;Zhai, Fei;Su, Jingjing;Wu, Didi;Yi, Lianghui;Gao, Qijuan;Xia, Enhua;Li, Fangdong;Gao, Qijuan;Wu, Qiong
关键词:Camellia sinensis; cold tolerance; novel genes; population structure; presence-absence variation; structural variation
-
The manufacturing process provides green teas with differentiated nonvolatile profiles and influences the deterioration of flavor during storage at room temperature
作者:Zhou, Hanchen;Liu, Yaqin;Zhang, Xiaolei;Wang, Hui;Lei, Pandeng;Wu, Qiong
关键词:Green tea; Tea processing; UPLC-QTRAP-MS/MS; Storage; Deterioration
-
The Serine Acetyltransferase (SAT) Gene Family in Tea Plant (Camellia sinensis): Identification, Classification and Expression Analysis under Salt Stress
作者:Wang, Leigang;Liu, Dandan;Jiao, Xiaoyu;Wu, Qiong;Wang, Wenjie
关键词:Camellia sinensis; SAT genes; qRT-PCR; prokaryotic expression
-
CsWAK12, a novel cell wall-associated receptor kinase gene from Camellia sinensis, promotes growth but reduces cold tolerance in Arabidopsis
作者:Wu, Qiong;Jiao, Xiaoyu;Liu, Dandan;Sun, Minghui;Ruan, Xu;Wang, Leigang;Ding, Yong;Zhang, Zhengzhu;Wang, Wenjie;Tong, Wei;Xia, Enhua
关键词:
Camellia sinensis ; wall-associated kinases (WAKs); plant growth; CBF; cold stress



