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Insight into Catechins Metabolic Pathways of Camellia sinensis Based on Genome and Transcriptome Analysis

Authors :
Liping Gao
Wenzhao Wang
Yajun Liu
Yingling Wu
Xinlong Dai
Yunsheng Wang
Tao Xia
Yumei Qian
Xiaolan Jiang
Yihui Zhou
Mingzhuo Li
Source :
Journal of Agricultural and Food Chemistry. 66:4281-4293
Publication Year :
2018
Publisher :
American Chemical Society (ACS), 2018.

Abstract

Tea is an important economic crop with a 3.02 Gb genome. It accumulates various bioactive compounds, especially catechins, which are closely associated with tea flavor and quality. Catechins are biosynthesized through the phenylpropanoid and flavonoid pathways, with 12 structural genes being involved in their synthesis. However, we found that in Camellia sinensis the understanding of the basic profile of catechins biosynthesis is still unclear. The gene structure, locus, transcript number, transcriptional variation, and function of multigene families have not yet been clarified. Our previous studies demonstrated that the accumulation of flavonoids in tea is species, tissue, and induction specific, which indicates that gene coexpression patterns may be involved in tea catechins and flavonoids biosynthesis. In this paper, we screened candidate genes of multigene families involved in the phenylpropanoid and flavonoid pathways based on an analysis of genome and transcriptome sequence data. The authenticity of candidate genes was verified by PCR cloning, and their function was validated by reverse genetic methods. In the present study, 36 genes from 12 gene families were identified and were accessed in the NCBI database. During this process, some intron retention events of the CsCHI and CsDFR genes were found. Furthermore, the transcriptome sequencing of various tea tissues and subcellular location assays revealed coexpression and colocalization patterns. The correlation analysis showed that CsCHIc, CsF3'H, and CsANRb expression levels are associated significantly with the concentration of soluble PA as well as the expression levels of CsPALc and CsPALf with the concentration of insoluble PA. This work provides insights into catechins metabolism in tea and provides a foundation for future studies.

Details

ISSN :
15205118 and 00218561
Volume :
66
Database :
OpenAIRE
Journal :
Journal of Agricultural and Food Chemistry
Accession number :
edsair.doi.dedup.....7b4f641ad80558f8b1387f30b8ad48d9
Full Text :
https://doi.org/10.1021/acs.jafc.8b00946