DNA methylation remodeled amino acids biosynthesis regulates flower senescence in carnation (Dianthus caryophyllus)

Author:

Feng Shan123,Jiang Xinyu4,Huang Zhiheng123,Li Fan56,Wang Ruiming123,Yuan Xinyi123,Sun Zheng123,Tan Hualiang123,Zhong Linlin13,Li Shenchong56,Cheng Yunjiang123,Bao Manzhu178,Qiao Hong910ORCID,Song Qingxin4ORCID,Wang Jihua56,Zhang Fan12357ORCID

Affiliation:

1. National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops Huazhong Agricultural University Wuhan 430070 China

2. Hubei Hongshan Laboratory Wuhan 430070 China

3. National R&D Center for Citrus Postharvest Technology Huazhong Agricultural University Wuhan 430070 China

4. State Key Laboratory of Crop Genetics and Germplasm Enhancement Nanjing Agricultural University Nanjing 210095 China

5. Yunnan Seed Laboratory Kunming 650200 China

6. Floriculture Research Institute, Yunnan Academy of Agricultural Sciences, National Engineering Research Center for Ornamental Horticulture, Key Laboratory for Flower Breeding of Yunnan Province Kunming 650200 China

7. The Institute of Flowers Research Huazhong Agricultural University Wuhan 430070 China

8. Key Laboratory of Huazhong Urban Agriculture, Ministry of Agriculture and Rural Affairs Huazhong Agricultural University Wuhan 430070 China

9. Institute for Cellular and Molecular Biology The University of Texas at Austin Austin TX 78712 USA

10. Department of Molecular Biosciences The University of Texas at Austin Austin TX 78712 USA

Abstract

Summary Dynamic DNA methylation regulatory networks are involved in many biological processes. However, how DNA methylation patterns change during flower senescence and their relevance with gene expression and related molecular mechanism remain largely unknown. Here, we used whole genome bisulfite sequencing to reveal a significant increase of DNA methylation in the promoter region of genes during natural and ethylene‐induced flower senescence in carnation (Dianthus caryophyllus L.), which was correlated with decreased expression of DNA demethylase gene DcROS1. Silencing of DcROS1 accelerated while overexpression of DcROS1 delayed carnation flower senescence. Moreover, among the hypermethylated differentially expressed genes during flower senescence, we identified two amino acid biosynthesis genes, DcCARA and DcDHAD, with increased DNA methylation and reduced expression in DcROS1 silenced petals, and decreased DNA methylation and increased expression in DcROS1 overexpression petals, accompanied by decreased or increased amino acids content. Silencing of DcCARA and DcDHAD accelerates carnation flower senescence. We further showed that adding corresponding amino acids could largely rescue the senescence phenotype of DcROS1, DcCARA and DcDHAD silenced plants. Our study not only demonstrates an essential role of DcROS1‐mediated remodeling of DNA methylation in flower senescence but also unravels a novel epigenetic regulatory mechanism underlying DNA methylation and amino acid biosynthesis during flower senescence.

Funder

Fundamental Research Funds for the Central Universities

Natural Science Foundation of Hubei Province

Publisher

Wiley

Subject

Plant Science,Physiology

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