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全基因组鉴定TCP转录因子及其在壳斗中水解单宁产生中的潜在作用。

Genome-wide identification of TCP transcription factors and their potential roles in hydrolyzable tannin production in cupule.

作者信息

Wang Yaochen, Li Jinjin, Chen Yixin, Yu Zhaowei, Liu Puyuan, Li Guolei, Yang Qinsong

机构信息

Research Center of Deciduous Oaks, Beijing Forestry University, Beijing, China.

Deciduous Oak Improvement and Regeneration Innovation Team of State Forestry and Grassland Administration, Beijing Forestry University, Beijing, China.

出版信息

Front Plant Sci. 2024 Aug 6;15:1444081. doi: 10.3389/fpls.2024.1444081. eCollection 2024.

Abstract

Hydrolyzable tannins (HTs) have garnered significant attention due to their proven beneficial effects in the clinical treatment of various diseases. The cupule of Chinese cork oak ( Blume) has been used as raw material of traditional medicine for centuries for its high content of HTs. Previous studies have identified UGT84A13 as a key enzyme in the HT biosynthesis pathway in , but the transcriptional regulation network of remains obscure. Here, we performed a comprehensive genome-wide identification of the TCP transcription factors in , elucidating their molecular evolution and gene structure. Gene expression analysis showed that from the CIN subfamily and from the PCF subfamily were co-expressed with in cupule. Further functional characterization using dual-luciferase assays confirmed that TCP3, rather than TCP6, played a role in the transcriptional regulation of , thus promoting HT biosynthesis in the cupule of . Our work identified TCP family members in for the first time, and provided novel insights into the transcriptional regulatory network of and HT biosynthesis in , explaining the reason why the cupule enriches HTs that could be used for traditional medicine.

摘要

可水解单宁(HTs)因其在多种疾病临床治疗中已被证实的有益作用而备受关注。数百年来,栓皮栎(Blume)的壳斗因其高含量的可水解单宁而被用作传统药物的原料。先前的研究已确定UGT84A13是栓皮栎中可水解单宁生物合成途径中的关键酶,但栓皮栎的转录调控网络仍不清楚。在此,我们对栓皮栎中的TCP转录因子进行了全基因组范围的综合鉴定,阐明了它们的分子进化和基因结构。基因表达分析表明,来自CIN亚家族的基因和来自PCF亚家族的基因在壳斗中与UGT84A13共表达。使用双荧光素酶测定法进行的进一步功能表征证实,TCP3而非TCP6在UGT84A13的转录调控中发挥作用,从而促进栓皮栎壳斗中可水解单宁的生物合成。我们的工作首次在栓皮栎中鉴定出TCP家族成员,并为栓皮栎中可水解单宁生物合成的转录调控网络提供了新见解,解释了壳斗富含可用于传统药物的可水解单宁的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d75/11333348/5c83fcd18bca/fpls-15-1444081-g001.jpg

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