DNA methylation mediated by RdDM pathway and demethylation affects furanone accumulation through regulation of QUINONE OXIDOREDUCTASE in strawberry

Author:

Li Yunduan1,Shi Yanna123,Li Yichen1,Lu Jiao1,Sun Yunfan1,Zhang Yuanyuan1,Chen Wenbo123,Yang Xiaofang4,Grierson Donald15,Lang Zhaobo6,Jiang Guihua4,Chen Kunsong123

Affiliation:

1. Zhejiang University College of Agriculture & Biotechnology, , Zijingang Campus, Hangzhou 310058, China

2. Zhejiang University Zhejiang Provincial Key Laboratory of Horticultural Plant Integrative Biology, , Zijingang Campus, Hangzhou 310058, China

3. Zhejiang University The State Agriculture Ministry Laboratory of Horticultural Plant Growth, Development and Quality Improvement, , Zijingang Campus, Hangzhou 310058, China

4. Zhejiang Academy of Agricultural Sciences Institute of Horticulture, , Hangzhou 310021, Zhejiang, China

5. University of Nottingham Division of Plant and Crop Sciences, School of Biosciences, , Sutton Bonington Campus, Loughborough LE12 5RD, United Kingdom

6. Southern University of Science and Technology Institute of Advanced Biotechnology and School of Life Sciences, , Shenzhen 518055, China

Abstract

Abstract Recently, increasing evidence suggests that DNA methylation plays a crucial role in fruit ripening. However, the role of DNA methylation in regulating specific traits, such as flavor, remains unclear. Here, we report a role of DNA methylation in affecting furanone biosynthesis in strawberry. Strawberry quinone oxidoreductase (FaQR) is a key enzyme in furanone biosynthesis. There are four FaQR homologs in strawberry cultivar ‘Yuexin’, and one of them, FaQR3, contributes ~50% of FaQR transcripts, indicating a major role of FaQR3 in furanone biosynthesis. Through characterization of levels of DNA methylation and FaQR3 transcript and furanone contents during fruit ripening and after the application of DNA methylation inhibitor, we found that the DNA methylation level of the FaQR3 promoter was negatively correlated with FaQR3 expression and furanone accumulation, suggesting that DNA methylation may be involved in furanone biosynthesis through adjusting FaQR3 expression, and responded to different temperatures consistently. In addition, transient expression of a gene in the RNA-directed DNA methylation (RdDM) pathway, FaAGO4, and enrichment analysis of the 24-nucleotide siRNAs suggested that DNA methylation in the FaQR3 promoter is mediated by the RdDM pathway. Transient RNA interference (RNAi) of FaDML indicated that the demethylation pathway may be involved in regulating furanone accumulation. These findings provide new insights into the role of DNA methylation and demethylation in affecting flavor quality in strawberry during fruit ripening.

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

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