4.5 Article

Genome-wide identification and expression pattern analysis of the TCP transcription factor family in Ginkgo biloba

期刊

PLANT SIGNALING & BEHAVIOR
卷 17, 期 1, 页码 -

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/15592324.2021.1994248

关键词

Ginkgo biloba; TCP transcription factor; flavonoid; exogenous hormone; miRNA

资金

  1. National Natural Science Foundation of China [31971693]

向作者/读者索取更多资源

Plant-specific TCP transcription factors play a crucial role in the growth and development of Ginkgo biloba. This study identified 13 TCP genes in G. biloba and found that they are regulated by multiple signals, including phytohormones and miRNAs, and are involved in the biosynthesis of flavonoids. The findings provide a theoretical foundation for understanding the potential functions of TCPs in G. biloba.
Plant-specific TCP transcription factors play an essential role in plant growth and development. They can regulate leaf curvature, flower symmetry and the synthesis of secondary metabolites. The flavonoids in Ginkgo biloba leaf are one of the main medicinally bioactivate compounds, which have pharmacological and beneficial health effects for humans. In this study, a total of 13 TCP genes were identified in G. biloba, and 5 of them belonged to PCF subclades (GbTCP03, GbTCP07, GbTCP05, GbTCP13, GbTCP02) while others belonged to CIN (GbTCP01, GbTCP04, GbTCP06, GbTCP08, GbTCP09, GbTCP10, GbTCP11, GbTCP12) subclades according to phylogenetic analysis. Numerous cis-acting elements related to various biotic and abiotic signals were predicted on the promoters by cis-element analysis, suggesting that the expression of GbTCPs might be co-regulated by multiple signals. Transcript abundance analysis exhibited that most of GbTCPs responded to multiple phytohormones. Among them, the relative expression levels of GbTCP06, GbTCP11, and GbTCP13 were found to be significantly influenced by exogenous ABA, SA and MeJA application. In addition, a total of 126 miRNAs were predicted to target 9 TCPs (including GbTCP01, GbTCP02, GbTCP04, GbTCP05, GbTCP06, GbTCP08, GbTCP11, GbTCP12, GbTCP13). The correlation analysis between the expression level of GbTCPs and the flavonoid contents showed that GbTCP03, GbTCP04, GbTCP07 might involve in flavonoid biosynthesis in G. biloba. In short, this study mainly provided a theoretical foundation for better understanding the potential function of TCPs in G. biloba.

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