Integrated Transcriptome Analysis and Single-Base Resolution Methylomes of Watermelon (Citrullus lanatus) Reveal Epigenome Modifications in Response to Osmotic Stress

被引:5
|
作者
Zhu, Fangming [1 ,2 ]
Li, Mingyan [1 ,2 ]
Yan, Manwen [1 ]
Qiao, Fei [3 ,4 ]
Jiang, Xuefei [1 ,2 ]
机构
[1] Hainan Univ HNU, Coll Hort, Key Lab Qual Regulat Trop Hort Plants Hainan Prov, Haikou, Hainan, Peoples R China
[2] Hainan Univ HNU, Key Lab Trop Agritourism Greenhouse Haikou, Coll Hort, Haikou, Hainan, Peoples R China
[3] Chinese Acad Trop Agr Sci, Key Lab Crop Gene Resources & Germplasm Enhanceme, Minist Agr, Danzhou, Peoples R China
[4] Chinese Acad Trop Agr Sci, Trop Crops Genet Resources Inst, Danzhou, Peoples R China
来源
基金
中国国家自然科学基金; 海南省自然科学基金;
关键词
Citrullus lanatus; osmotic stress; transcriptome analysis; whole genome bisulfite sequencing; DNA methylation; GENOME-WIDE ANALYSIS; DNA METHYLATION; SALT TOLERANCE; PATHWAY; INHERITANCE; MYOINOSITOL; METABOLISM; NETWORKS; CLONING; RICE;
D O I
10.3389/fpls.2021.769712
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
DNA methylation plays an important role against adverse environment by reshaping transcriptional profile in plants. To better understand the molecular mechanisms of watermelon response to osmotic stress, the suspension cultured watermelon cells were treated with 100mM mannitol, and then a methylated cytosines map was generated by whole genome bisulfite sequencing (WGBS). Combined with transcriptome sequencing, the effects of osmotic stress on differentially methylated expressed genes (DMEGs) were assessed. It was found that genes related to plant hormone synthesis, signal transduction, osmoregulatory substance-related and reactive oxygen species scavenging-related enzyme could rapidly respond to osmotic stress. The overall methylation level of watermelon decreased after osmotic stress treatment, and demethylation occurred in CG, CHG, and CHH contexts. Moreover, differentially methylated expressed genes (DMEGs) were significantly enriched in RNA transport, starch and sucrose metabolism, plant hormone signal transduction and biosynthesis of secondary metabolites, especially in biosynthesis of osmolytes synthase genes. Interestingly, demethylation of a key enzyme gene Cla014489 in biosynthesis of inositol upregulated its expression and promoted accumulation of inositol, which could alleviate the inhibition of cell growth caused by osmotic stress. Meanwhile, a recombinant plasmid pET28a-Cla014489 was constructed and transferred into Escherichia coli BL21 for prokaryotic expression and the expression of ClMIPS protein could improve the tolerance of E. coli to osmotic stress. The effect of methylation level on the expression properties of inositol and its related genes was further confirmed by application of DNA methylation inhibitor 5-azacytidine. These results provide a preliminary insight into the altered methylation levels of watermelon cells in response to osmotic stress and suggest a new mechanism that how watermelon cells adapt to osmotic stress.
引用
收藏
页数:17
相关论文
共 30 条
  • [21] Single-base-resolution methylomes of Populus euphratica reveal the association between DNA methylation and salt stress
    Yutao Su
    Xiaotao Bai
    Wenlu Yang
    Weiwei Wang
    Zeyuan Chen
    Jianchao Ma
    Tao Ma
    Tree Genetics & Genomes, 2018, 14
  • [22] Single-base-resolution methylomes of populus trichocarpa reveal the association between DNA methylation and drought stress
    Liang, Dan
    Zhang, Zhoujia
    Wu, Honglong
    Huang, Chunyu
    Shuai, Peng
    Ye, Chu-Yu
    Tang, Sha
    Wang, Yunjie
    Yang, Ling
    Wang, Jun
    Yin, Weilun
    Xia, Xinli
    BMC GENETICS, 2014, 15
  • [23] Single-base-resolution methylomes of populus trichocarpa reveal the association between DNA methylation and drought stress
    Dan Liang
    Zhoujia Zhang
    Honglong Wu
    Chunyu Huang
    Peng Shuai
    Chu-Yu Ye
    Sha Tang
    Yunjie Wang
    Ling Yang
    Jun Wang
    Weilun Yin
    Xinli Xia
    BMC Genetics, 15
  • [24] Epigenetic Changes in the Regulation of Nicotiana tabacum Response to Cucumber Mosaic Virus Infection and Symptom Recovery through Single-Base Resolution Methylomes
    Wang, Chenguang
    Wang, Chaonan
    Xu, Wenjie
    Zou, Jingze
    Qiu, Yanhong
    Kong, Jun
    Yang, Yunshu
    Zhang, Boyang
    Zhu, Shuifang
    VIRUSES-BASEL, 2018, 10 (08):
  • [25] Transcriptome-wide profiling of multiple RNA modifications simultaneously at single-base resolution (vol 116, pg 6784, 2019)
    Khoddami, Vahid
    Yerra, Archana
    Mosbruger, Timothy L.
    Fleming, Aaron M.
    Burrows, Cynthia J.
    Cairns, Bradley R.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2019, 116 (18) : 9136 - 9136
  • [26] Integrated single-base resolution maps of transcriptome, sRNAome and methylome of Tomato yellow leaf curl virus (TYLCV) in tomato
    Piedra-Aguilera, Alvaro
    Jiao, Chen
    Luna, Ana P.
    Villanueva, Francisco
    Dabad, Marc
    Esteve-Codina, Anna
    Diaz-Pendon, Juan A.
    Fei, Zhangjun
    Bejarano, Eduardo R.
    Castillo, Araceli G.
    SCIENTIFIC REPORTS, 2019, 9 (1)
  • [27] Integrated single-base resolution maps of transcriptome, sRNAome and methylome of Tomato yellow leaf curl virus (TYLCV) in tomato
    Álvaro Piedra-Aguilera
    Chen Jiao
    Ana P. Luna
    Francisco Villanueva
    Marc Dabad
    Anna Esteve-Codina
    Juan A. Díaz-Pendón
    Zhangjun Fei
    Eduardo R. Bejarano
    Araceli G. Castillo
    Scientific Reports, 9
  • [28] m6A RNA modifications are measured at single-base resolution across the mammalian transcriptome (vol 40, pg 1210, 2022)
    Hu, Lulu
    Liu, Shun
    Peng, Yong
    Ge, Ruiqi
    Su, Rui
    Senevirathne, Chamara
    Harada, Bryan T. T.
    Dai, Qing
    Wei, Jiangbo
    Zhang, Lisheng
    Hao, Ziyang
    Luo, Liangzhi
    Wang, Huanyu
    Wang, Yuru
    Luo, Minkui
    Chen, Mengjie
    Chen, Jianjun
    He, Chuan
    NATURE BIOTECHNOLOGY, 2023, 41 (01) : 150 - 150
  • [29] Single-base resolution methylome of different ecotype from Pyrus betulaefolia reveals epigenomic changes in response to salt stress
    Li, Hui
    Zhang, Yu-feng
    Zhou, Xiang -yang
    Lin, Jin
    Liu, Chun-xiao
    Li, Xiao-gang
    Chang, You-hong
    SCIENTIA HORTICULTURAE, 2022, 306
  • [30] Single-base resolution methylome of cotton cytoplasmic male sterility system reveals epigenomic changes in response to high-temperature stress during anther development
    Zhang, Meng
    Zhang, Xuexian
    Guo, Liping
    Qi, Tingxiang
    Liu, Guoyuan
    Feng, Juanjuan
    Shahzad, Kashif
    Zhang, Bingbing
    Li, Xue
    Wang, Hailin
    Tang, Huini
    Qiao, Xiuqin
    Wu, Jianyong
    Xing, Chaozhu
    JOURNAL OF EXPERIMENTAL BOTANY, 2020, 71 (03) : 951 - 969