Transcriptome and metabolome reveal the effects of ABA promotion and inhibition on flavonoid and amino acid metabolism in tea plant

Author:

Gao Chenxi123ORCID,Wang Zhihui123,Wu Weiwei123,Zhou Zhe123,Deng Xuming123,Chen Zhidan234,Sun Weijiang123

Affiliation:

1. College of Horticulture, Fujian Agriculture and Forestry University , Shangxiadian Road 15, Cangshan District, Fuzhou, Fujian 350002, China

2. Fujian Agriculture and Forestry University Ministerial and Provincial Joint Innovation Centre for Safety Production of Cross-Strait Crops, , Shangxiadian Road 15, Cangshan District, Fuzhou, Fujian 350002, China

3. Engineering Technology and Research Center of Fujian Tea Industry , Fujian Agriculture and Forestry University, Shangxiadian Road 15, Cangshan District, Fuzhou, Fujian 350002, China

4. Anxi College of Tea Science, Fujian Agriculture and Forestry University , East Second Ring Road, Anxi County, Quanzhou, Fujian 362400, China

Abstract

Abstract Flavonoids (especially anthocyanins and catechins) and amino acids represent a high abundance of health-promoting metabolites. Although we observed abscisic acid accumulation in purple leaves and low levels in albino tea leaves, the specific mechanism behind its impact on flavor compounds remains unclear. In this study, we treated tea leaves with exogenous abscisic acid and abscisic acid biosynthesis inhibitors (Flu), measured physiological indicators and conducted comprehensive transcriptomic and metabolomic analyses to elucidate the potential mechanisms underlying color change. Our results demonstrate that abscisic acid treatment induces purple coloration, while Flu treatment causes discoloration in tea leaves. Metabolomic analysis revealed higher levels of four anthocyanins and six catechins in the group treated with abscisic acid in comparison with the control group. Additionally, there was a notable increase in 15 amino acids in the Flu-treated group. Notably, the levels of flavonoids and amino acids showed an inverse relationship between the two treatments. Transcriptomic comparison between the treatments and the control group revealed upregulation of differentially expressed genes encoding dihydroflavonol reductase and uridine diphosphate-glycose flavonoid glycosyltransferase in the abscisic acid-treated group, leading to the accumulation of identified anthocyanins and catechins. In contrast, differentially expressed genes encoding nitrate reductase and nitrate transporter exhibited elevated expression in the group treated with Flu, consequently facilitating the accumulation of amino acids, specifically L-theanine and L-glutamine. Furthermore, our co-expression network analysis suggests that MYB and bHLH transcription factors may play crucial roles in regulating the expression of differentially expressed genes involved in the biosynthesis of flavonoids and amino acids. This study provides insights for targeted genetic engineering to enhance the nutritional and market value of tea, together with the potential application of purple and albino tea leaves as functional beverages. It also offers guidance for future breeding programs and production.

Funder

Fujian Zhangtianfu Tea Development Foundation Science and Technology Innovation Fund

National Natural Science Foundation of China

Technological Innovation and Service System of Tea Industry Chain

Science and Technology Plan of Fujian Province

Natural Science Foundation of Fujian Province

Publisher

Oxford University Press (OUP)

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