DNA Methylation-Activated LaCOMT1 Expression Promotes Cluster Root Formation of White Lupin via a Mechanism Involving the Melatonin Synthesis
文献类型: 外文期刊
作者: Zhang, Qian;Li, Xing;Geng-Li, Jiahong;Yang, Jinyong;Liu, Jingyi;Wang, Ke;Cheng, Yuancan;Liu, Jianping;Xu, Feiyun;Wang, Zhengrui;Zhang, Kang;Zhang, Jianhua;Cheng, Feng;Xu, Weifeng;Yuan, Wei
作者机构:
关键词: cluster root formation;DNA methylation;melatonin synthesis;phosphorus deficiency;white lupin
期刊名称: PLANT CELL AND ENVIRONMENT
ISSN: 0140-7791
年卷期: 2025 年
页码:
收录情况: SCIE(2025版)
摘要: White lupin exhibits remarkable adaptability to phosphorus (P)-deficient soil through the development of cluster roots (CR), thereby enhancing P use sufficiency. Despite its crucial role, the underlying mechanism governing CR formation remains elusive. Here, we reveal an elevated DNA methylation level through whole-genome bisulfite sequencing in CR in response to P deficiency, particularly in gene and flanking regions, suggesting a responsive epigenetic mechanism. To further investigate the potential involvement of epigenetic remodelling, we treated lupin plants with the DNA methyltransferase (DNMT) inhibitor 5-azacytidine, which led to a disruption of total DNMT activity and impaired CR formation under phosphorus-deficient conditions. Integrated analysis of methylome and RNA-Seq highlights the methylation of CAFFEIC ACID O-METHYLTRANSFERASE 1 (COMT1), a key enzyme in melatonin synthesis, as pivotal for promoting CR formation in white lupin. Functional validation through overexpression or gene silencing of LaCOMT1 in transgenic lupin roots confirms the positive impact of LaCOMT1 on CR formation. Furthermore, melatonin application directly increases CR numbers, indicating the role of methylation-activated LaCOMT1 in promoting CR formation via melatonin synthesis. Those findings provide insights into the epigenomic landscape of white lupin, establishing a direct genetic link between epigenetic mechanisms and P-deficiency-induced CR formation.
分类号:
- 相关文献
作者其他论文 更多>>
-
A CRISPR-based sequence proximity binding protein labelling system for scanning upstream regulatory proteins
作者:Zhang, Lei;Cai, Chengcheng;Chen, Qiujie;Tan, Xiaoxu;Chen, Shumin;Zhang, Kang;Cheng, Feng
关键词:
-
Transcriptome-Metabolome Integration Uncovers Salt Stress Effects on Flavonoid Biosynthesis in Two Self-Selected Breeding Alfalfa Varieties
作者:Zhu, Xinqiang;Yang, Yang;Fu, Yunxing;Leng, Feifan;Li, Shaowei;Wang, Yonggang;Cao, Zhonghua;Wang, Xiaoli;Yang, Hongshan;Wu, Fang;Zhang, Qian;Duan, Huirong
关键词:alfalfa;differential genes;differential metabolites;flavonoids biosynthesis;salt stress
-
Solanaceae pan-genomes reveal extensive fractionation and functional innovation of duplicated genes
作者:Zhang, Lingkui;Liu, Yuanhang;Huang, Yile;Zhang, Yiyue;Fu, Yu;Xiao, Ya;Chen, Shumin;Zhang, Kang;Cheng, Feng
关键词:tomato;pepper;pan-genome;database;fruit;solanaceae
-
TAL-SRX: an intelligent typing evaluation method for KASP primers based on multi-model fusion
作者:Chen, Xiaojing;Fan, Jingchao;Yan, Shen;Huang, Longyu;Zhou, Guomin;Zhang, Jianhua
关键词:KASP fractal evaluation;multi-model fusion;stacking integration;deep learning;hyperparameter tuning
-
Selection of dysfunctional alleles of bHLH1 and MYB1 has produced white grain in the tribe Triticeae
作者:Pei, Jiawei;Wang, Zheng;Heng, Yanfang;Chen, Zhuo;Wang, Ke;Xiao, Qingmeng;Li, Jian;Hu, Zhaorong;He, Hang;Cao, Ying;Ye, Xingguo;Deng, Xing Wang;Liu, Zhijin;Ma, Ligeng
关键词:grain color;evolution;selection;bHLH;MYB;wheat;Triticeae
-
IFITM proteins are key entry factors for porcine epidemic diarrhea coronavirus
作者:Lv, Lilei;Luo, Huaye;Yi, Jingxuan;Zhang, Kang;Li, Yanhua;Tong, Wu;Jiang, Yifeng;Zhou, Yanjun;Tong, Guangzhi;Liu, Changlong
关键词:IFITMs;PEDV;virus entry;coronavirus;porcine intestinal organoids
-
Modulation of an evolutionarily conserved epigenetic regulon controlling abscisic acid catabolism enhances drought tolerance in wheat
作者:Li, Yunzhen;Jin, Liujie;Li, Wanying;Wang, Ke;Su, Handong;Mao, Hailiang;Chen, Wei;Lan, Caixia;Li, Qiang;Kaufmann, Kerstin;Yan, Wenhao
关键词:ABA metabolism;CRISPR/Cas;CYP707A;drought tolerance