Reshaped DNA methylation cooperating with homoeolog‐divergent expression promotes improved root traits in synthesized tetraploid wheat

Author:

Miao Lingfeng1ORCID,Xu Weiya1ORCID,Liu Yanhong1,Huang Xiangyi1,Chen Zhe1,Wang Huifang12,Wang Zihao1ORCID,Chen Yongming1ORCID,Song Qingxin3ORCID,Zhang Jing4,Han Fangpu4ORCID,Peng Huiru1ORCID,Yao Yingyin1ORCID,Xin Mingming1ORCID,Hu Zhaorong1ORCID,Ni Zhongfu1ORCID,Sun Qixin1ORCID,Xing Jiewen1ORCID,Guo Weilong1ORCID

Affiliation:

1. Frontiers Science Center for Molecular Design Breeding, Key Laboratory of Crop Heterosis and Utilization, Beijing Key Laboratory of Crop Genetic Improvement China Agricultural University Beijing 100193 China

2. Shandong Provincial Key Laboratory of Dryland Farming Technology Qingdao Agricultural University Qingdao 266000 China

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

4. State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics and Developmental Biology Chinese Academy of Sciences Beijing 100101 China

Abstract

Summary Polyploidization is a major event driving plant evolution and domestication. However, how reshaped epigenetic modifications coordinate gene transcription to generate phenotypic variations during wheat polyploidization is currently elusive. Here, we profiled transcriptomes and DNA methylomes of two diploid wheat accessions (SlSl and AA) and their synthetic allotetraploid wheat line (SlSlAA), which displayed elongated root hair and improved root capability for nitrate uptake and assimilation after tetraploidization. Globally decreased DNA methylation levels with a reduced difference between subgenomes were observed in the roots of SlSlAA. DNA methylation changes in first exon showed strong connections with altered transcription during tetraploidization. Homoeolog‐specific transcription was associated with biased DNA methylation as shaped by homoeologous sequence variation. The hypomethylated promoters showed significantly enriched binding sites for MYB, which may affect gene transcription in response to root hair growth. Two master regulators in root hair elongation pathway, AlCPC and TuRSL4, exhibited upregulated transcription levels accompanied by hypomethylation in promoter, which may contribute to the elongated root hair. The upregulated nitrate transporter genes, including NPFs and NRTs, also are significantly associated with hypomethylation, indicating an epigenetic‐incorporated regulation manner in improving nitrogen use efficiency. Collectively, these results provided new insights into epigenetic changes in response to crop polyploidization and underscored the importance of epigenetic regulation in improving crop traits.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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