Integrated analysis of DNA methylome and transcriptome revealing epigenetic regulation of CRIR1-promoted cold tolerance
文献类型: 外文期刊
第一作者: Li, Zhibo
作者: Li, Zhibo;Wang, Wenjuan;Yu, Xiaoling;Zhao, Pingjuan;Li, Wenbin;Zhang, Xiuchun;Peng, Ming;Li, Shuxia;Ruan, Mengbin;Wang, Wenjuan
作者机构:
关键词: RNA-seq; Cold stress; Cassava; CRIR1; DNA methylation
期刊名称:BMC PLANT BIOLOGY ( 影响因子:4.3; 五年影响因子:5.2 )
ISSN: 1471-2229
年卷期: 2024 年 24 卷 1 期
页码:
收录情况: SCI
摘要: BackgroundDNA methylation contributes to the epigenetic regulation of nuclear gene expression, and is associated with plant growth, development, and stress responses. Compelling evidence has emerged that long non-coding RNA (lncRNA) regulates DNA methylation. Previous genetic and physiological evidence indicates that lncRNA-CRIR1 plays a positive role in the responses of cassava plants to cold stress. However, it is unclear whether global DNA methylation changes with CRIR1-promoted cold tolerance. ResultsIn this study, a comprehensive comparative analysis of DNA methylation and transcriptome profiles was performed to reveal the gene expression and epigenetic dynamics after CRIR1 overexpression. Compared with the wild-type plants, CRIR1-overexpressing plants present gained DNA methylation in over 37,000 genomic regions and lost DNA methylation in about 16,000 genomic regions, indicating a global decrease in DNA methylation after CRIR1 overexpression. Declining DNA methylation is not correlated with decreased/increased expression of the DNA methylase/demethylase genes, but is associated with increased transcripts of a few transcription factors, chlorophyll metabolism and photosynthesis-related genes, which could contribute to the CRIR1-promoted cold tolerance. ConclusionsIn summary, a first set of transcriptome and epigenome data was integrated in this study to reveal the gene expression and epigenetic dynamics after CRIR1 overexpression, with the identification of several TFs, chlorophyll metabolism and photosynthesis-related genes that may be involved in CRIR1-promoted cold tolerance. Therefore, our study has provided valuable data for the systematic study of molecular insights for plant cold stress response.
分类号:
- 相关文献
作者其他论文 更多>>
-
Capsid protein of turnip crinkle virus suppresses antiviral RNA decay by degrading Arabidopsis Dcp1 via the ubiquitination pathway (vol 121, e70075, 2025)
作者:Wu, Kunxin;Xie, Qiuxian;Liu, Xueting;Fu, Yan;Li, Shuxia;Yu, Xiaoling;Li, Wenbin;Zhao, Pingjuan;Ren, Yanli;Ruan, Mengbin;Zhang, Xiuchun;Wu, Kunxin;Xie, Qiuxian;Liu, Xueting;Fu, Yan;Li, Shuxia;Yu, Xiaoling;Li, Wenbin;Zhao, Pingjuan;Ren, Yanli;Ruan, Mengbin;Zhang, Xiuchun;Xie, Qiuxian;Liu, Xueting;Fu, Yan;Ren, Yanli;Li, Shuxia;Yu, Xiaoling;Li, Wenbin;Zhao, Pingjuan;Ruan, Mengbin;Zhang, Xiuchun
关键词:
-
Machine learning-enabled flexible luminescent sensor for non-destructive mapping antibiotics distribution on seafood
作者:Wu, Lidong;Li, Yuanxin;Qin, Haiyang;Zhao, Jinxue;Zhai, Xuejing;Li, Peiyi;Wu, Lidong;Li, Yuanxin;Qin, Haiyang;Zhao, Jinxue;Zhai, Xuejing;Li, Peiyi;Wu, Lidong;Li, Yuanxin;Zhai, Xuejing;Li, Peiyi;Li, Zhibo;Wu, Lidong;Qin, Haiyang;Zhao, Jinxue;Li, Peiyi;Xiang, Xueping
关键词:Luminescent hydrogel sensors; Machine learning; Non-destructive identification; Concentration-distribution patterns; Tetracycline
-
MeWRKY30, a cassava stress-responsive WRKY transcription factor, confers drought resistance to transgenic Arabidopsis
作者:Zhu, Yufei;Li, Zhibo;Wang, Wenjuan;Liu, Xiaojie;Xie, Qiuxian;Yu, Xiaoling;Zhang, Xiuchun;Li, Shuxia;Ruan, Mengbin;Zhu, Yufei;Li, Zhibo;Wang, Wenjuan;Liu, Xiaojie
关键词:Cassava;
Arabidopsis ; Drought tolerance; WRKY transcription factor; MeWRKY30 -
Interacting MeZFP29 and MebZIPW regulates MeNRT2.2 from cassava responding to nitrate signaling
作者:Li, Wenbin;Yu, Xiaoling;Zhao, Pingjuan;Li, Shuxia;Zou, Liangping;Zhang, Xiuchun;Li, Jiuhui;Ruan, Mengbin;Li, Wenbin;Zhao, Pingjuan;Zou, Liangping;Li, Jiuhui;Ruan, Mengbin;Yu, Xiaoling;Li, Shuxia;Zhang, Xiuchun;Ruan, Mengbin
关键词:Cassava; High-affinity nitrate transporter 2.2; Nitrate-responsive
cis -element; MeZFP29; MebZIPW; Regulatory mechanism -
Capsid protein of turnip crinkle virus suppresses antiviral RNA decay by degrading Arabidopsis Dcp1 via ubiquitination pathway
作者:Wu, Kunxin;Xie, Qiuxian;Liu, Xueting;Fu, Yan;Li, Shuxia;Yu, Xiaoling;Li, Wenbin;Zhao, Pingjuan;Ruan, Mengbin;Zhang, Xiuchun;Wu, Kunxin;Li, Shuxia;Yu, Xiaoling;Li, Wenbin;Zhao, Pingjuan;Ruan, Mengbin;Zhang, Xiuchun;Xie, Qiuxian;Liu, Xueting;Fu, Yan;Ren, Yanli
关键词:turnip crinkle virus; viral suppressor of RNA decay; antiviral; decapping 1; protein degradation
-
The Study on Shell-Breaking Characteristics and Crack Formation Patterns of Walnuts (Juglans Sigillata D.) Under Static Loading
作者:Zhang, Tianyu;Wang, Jingwei;Xu, Daochun;Bai, Xiaopeng;Li, Wenbin;Cao, Jiale;Niu, Xu;Zhang, Tianyu;Wang, Jingwei;Xu, Daochun;Bai, Xiaopeng;Li, Wenbin;Cao, Jiale;Niu, Xu;Zhang, Tianyu;Wang, Jingwei;Xu, Daochun;Bai, Xiaopeng;Li, Wenbin;Cao, Jiale;Niu, Xu;Wang, Jingwei
关键词:crack formation patterns; shell-breaking characteristics; static load; walnut
-
MoMkt1, a member of XPG/RAD2 nuclease family, regulates development and pathogenicity in Magnaporthe oryzae
作者:Li, Na;Xiao, Junlian;Yan, Long;Kang, Xiaoru;Zhang, Shulin;Wu, Weihuai;Wang, Wenjuan;Chen, Shen
关键词:
Magnaporthe oryzae ; XPG/RAD2 nuclease family; MoMkt1; DNA repair; pathogenicity