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◆ Journal of Agricultural and Food Chemistry2025-10-09· DNA methylation

Dual Regulation of DNA Methylation Orchestrates the Saline-Alkali Stress Response in Salt-Tolerant <i>Brassica napus</i>

Xiaoyun Liu, Ling He, Hanbing Hu, Shanshan Wang, Yuling Zheng, Suming Chen, Xigang Dai, Jun Zou, Changli Zeng, Tingdong Fu, Jinxiong Shen, Heping Wan

原始摘要(英文原文)· Original abstract
Soil salinization is a threat to global agriculture. This study used whole-genome bisulfite sequencing and transcriptomics to explore epigenetic regulation in salt-tolerant Brassica napus (cv. Huayouza 62) under NaCl (salt), Na 2 CO 3 (alkali), and combined salt-alkali stresses. All stresses induced genome-wide DNA hypermethylation (combined > alkali > salt). The Cn subgenome had significant methylation changes (most at CHH, then at CHG), with more differentially methylated regions in transposable elements than protein-coding genes. Hypermethylation, driven by DNA methyltransferases (e.g., DRM2), inhibited growth by repressing photosynthetic genes ( RBCS-1A, RBCS-1B ). B. napus adapted via targeted demethylation activated stress resistance (ROS scavenging under salt, redox buffering under alkali, and protein homeostasis under combined stress). 5-Azacytidine validation confirmed that methylation balances photosynthesis and stress response, clarifying the epigenetic network and providing strategies for crop stress resistance improvement.
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Dual Regulation of DNA Methylation Orchestrates the Saline-Alkali Stress Response in Salt-Tolerant <i>Brassica napus</i> — 科研速览 Science Skim