Salt‑responsive transcriptome analysis of canola roots reveals candidate genes involved in the key metabolic pathway in response to salt stress

被引:0
|
作者
Weichao Wang
Jiayin Pang
Fenghua Zhang
Lupeng Sun
Lei Yang
Tingdong Fu
Liang Guo
Kadambot H. M. Siddique
机构
[1] Shihezi University,The Key Laboratory of Oasis Eco
[2] The University of Western Australia,Agriculture, Xinjiang Production and Construction Crops
[3] Huazhong Agricultural University,The UWA Institute of Agriculture and School of Agriculture and Environment
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Salinity is a major constraint on crop growth and productivity, limiting sustainable agriculture in arid regions. Understanding the molecular mechanisms of salt-stress adaptation in canola is important to improve salt tolerance and promote its cultivation in saline lands. In this study, roots of control (no salt) and 200 mM NaCl-stressed canola seedlings were collected for RNA-Seq analysis and qRT-PCR validation. A total of 5385, 4268, and 7105 DEGs at the three time points of salt treatment compared to the control were identified, respectively. Several DEGs enriched in plant signal transduction pathways were highly expressed under salt stress, and these genes play an important role in signaling and scavenging of ROS in response to salt stress. Transcript expression in canola roots differed at different stages of salt stress, with the early-stages (2 h) of salt stress mainly related to oxidative stress response and sugar metabolism, while the late-stages (72 h) of salt stress mainly related to transmembrane movement, amino acid metabolism, glycerol metabolism and structural components of the cell wall. Several families of TFs that may be associated with salt tolerance were identified, including ERF, MYB, NAC, WRKY, and bHLH. These results provide a basis for further studies on the regulatory mechanisms of salt stress adaptation in canola.
引用
收藏
相关论文
共 50 条
  • [1] Salt-responsive transcriptome analysis of canola roots reveals candidate genes involved in the key metabolic pathway in response to salt stress
    Wang, Weichao
    Pang, Jiayin
    Zhang, Fenghua
    Sun, Lupeng
    Yang, Lei
    Fu, Tingdong
    Guo, Liang
    Siddique, Kadambot H. M.
    SCIENTIFIC REPORTS, 2022, 12 (01)
  • [2] Salt-responsive transcriptome analysis of triticale reveals candidate genes involved in the key metabolic pathway in response to salt stress
    Deng, Chaohong
    Zhang, Zhibin
    Yan, Guorong
    Wang, Fan
    Zhao, Lianjia
    Liu, Ning
    Abudurezike, Abudukeyoumu
    Li, Yushan
    Wang, Wei
    Shi, Shubing
    SCIENTIFIC REPORTS, 2020, 10 (01)
  • [3] Salt-responsive transcriptome analysis of triticale reveals candidate genes involved in the key metabolic pathway in response to salt stress
    Chaohong Deng
    Zhibin Zhang
    Guorong Yan
    Fan Wang
    Lianjia Zhao
    Ning Liu
    Abudukeyoumu Abudurezike
    Yushan Li
    Wei Wang
    Shubing Shi
    Scientific Reports, 10
  • [4] Transcriptome analysis reveals the key pathways and candidate genes involved in salt stress responses in Cymbidium ensifolium leaves
    Xiang Li
    Lanlan Liu
    Shixian Sun
    Yanmei Li
    Lu Jia
    Shili Ye
    Yanxuan Yu
    Komivi Dossa
    Yunpeng Luan
    BMC Plant Biology, 23
  • [5] Transcriptome analysis reveals the key pathways and candidate genes involved in salt stress responses in Cymbidium ensifolium leaves
    Li, Xiang
    Liu, Lanlan
    Sun, Shixian
    Li, Yanmei
    Jia, Lu
    Ye, Shili
    Yu, Yanxuan
    Dossa, Komivi
    Luan, Yunpeng
    BMC PLANT BIOLOGY, 2023, 23 (01)
  • [6] Transcriptome Analysis Reveals Key Molecular Pathways in Response to Alkaline Salt Stress in Canola (Brassica napus L.) Roots
    Wang, Weichao
    Pang, Jiayin
    Zhang, Fenghua
    Sun, Lupeng
    Yang, Lei
    Fu, Tingdong
    Siddique, Kadambot H. M.
    JOURNAL OF PLANT GROWTH REGULATION, 2023, 42 (05) : 3111 - 3127
  • [7] Transcriptome Analysis Reveals Key Molecular Pathways in Response to Alkaline Salt Stress in Canola (Brassica napus L.) Roots
    Weichao Wang
    Jiayin Pang
    Fenghua Zhang
    Lupeng Sun
    Lei Yang
    Tingdong Fu
    Kadambot H. M. Siddique
    Journal of Plant Growth Regulation, 2023, 42 : 3111 - 3127
  • [8] Comparative Transcriptome Analysis of Salt-Stress-Responsive Genes in Rice Roots
    Song, Rui
    Huang, Yan
    Ji, Xin
    Wei, Yunfei
    Liu, Qiuyuan
    Li, Shumei
    Liu, Juan
    Dong, Pengfei
    PHYTON-INTERNATIONAL JOURNAL OF EXPERIMENTAL BOTANY, 2023, 92 (01) : 237 - 250
  • [9] Comparative Transcriptome Analysis Reveals the Underlying Response Mechanism to Salt Stress in Maize Seedling Roots
    Zhang, Chen
    Chen, Bin
    Zhang, Ping
    Han, Qinghui
    Zhao, Guangwu
    Zhao, Fucheng
    METABOLITES, 2023, 13 (11)
  • [10] De novo Transcriptome Analysis in Leymus mollis to Unveil Genes Involved in Salt Stress Response
    Wu, Wenting
    Zhang, Yajing
    Gao, Yu
    Zhang, Kai
    Zhu, Luying
    Zhang, Hongxia
    PHYTON-INTERNATIONAL JOURNAL OF EXPERIMENTAL BOTANY, 2022, 91 (08) : 1629 - 1642