Histone Deacetylase GiSRT2 Negatively Regulates Flavonoid Biosynthesis in Glycyrrhiza inflata

Author:

Zeng Jiangyi123,Huang Yun13ORCID,Zhou Lijun13,Liang Xiaoju13,Yang Chao13,Wang Hongxia34ORCID,Yuan Ling5ORCID,Wang Ying123,Li Yongqing13ORCID

Affiliation:

1. Guangdong Provincial Key Laboratory of Applied Botany & Guangdong Provincial Key Laboratory of Digital Botanical Garden, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China

2. College of Life Science, Gannan Normal University, Ganzhou 341000, China

3. University of Chinese Academy of Sciences, Beijing 100049, China

4. Shanghai Key Laboratory of Plant Functional Genomics and Resources, Shanghai Chenshan Botanical Garden, Shanghai 201602, China

5. Department of Plant and Soil Sciences, University of Kentucky, Lexington, KY 40506, USA

Abstract

Glycyrrhiza inflata Batalin is a medicinal licorice species that has been widely used by humans for centuries. Licochalcone A (LCA) is a characteristic flavonoid that accumulates in G. inflata roots with high economical value. However, the biosynthetic pathway and regulatory network of its accumulation remain largely unknown. Here we found that a histone deacetylase (HDAC) inhibitor nicotinamide (NIC) could enhance the accumulation of LCA and total flavonoids in G. inflata seedlings. GiSRT2, a NIC-targeted HDAC was functionally analyzed and its RNAi transgenic hairy roots accumulated much more LCA and total flavonoids than its OE lines and the controls, indicating a negative regulatory role of GiSRT2 in the accumulation of LCA and total flavonoids. Co-analysis of transcriptome and metabolome of RNAi-GiSRT2 lines revealed potential mechanisms in this process. An O-methyltransferase gene, GiLMT1 was up-regulated in RNAi-GiSRT2 lines and the encoded enzyme catalyzed an intermediate step in LCA biosynthesis pathway. Transgenic hairy roots of GiLMT1 proved that GiLMT1 is required for LCA accumulation. Together, this work highlights the critical role of GiSRT2 in the regulation of flavonoid biosynthesis and identifies GiLMT1 as a candidate gene for the biosynthesis of LCA with synthetic biology approaches.

Funder

Biological Resources Program, Chinese Academy of Sciences

Guangdong Provincial Special Fund For Modern Agriculture Industry Technology Innovation Teams

Foundation of Key Laboratory of South China Agricultural Plant Molecular Analysis and Genetic Improvement

South China Botanical Garden, Chinese Academy of Sciences

Shanghai Key Laboratory of Plant Functional Genomics and Resources, Shanghai Chenshan Botanical Garden

Publisher

MDPI AG

Subject

General Medicine

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