Global Phosphoproteomic Analysis Reveals the Defense and Response Mechanisms of Jatropha Curcas Seedling under Chilling Stress

被引:11
|
作者
Liu, Hui [1 ]
Wang, Fen-Fen [1 ]
Peng, Xian-Jun [1 ]
Huang, Jian-Hui [1 ]
Shen, Shi-Hua [1 ]
机构
[1] Chinese Acad Sci, Inst Bot, Key Lab Plant Resources, Beijing 100093, Peoples R China
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
Jatropha curcas; phosphoproteomics; seedling; chilling stress; regulated mechanism; TRITICUM-AESTIVUM L; COLD STRESS; SIGNAL-TRANSDUCTION; PROTEOMIC ANALYSIS; PROTEIN-KINASE; PHOSPHOLIPASE-C; GENE-REGULATION; E3; LIGASE; PLANT PHOSPHOPROTEOMICS; ARABIDOPSIS-THALIANA;
D O I
10.3390/ijms20010208
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
As a promising energy plant for biodiesel, Jatropha curcas is a tropical and subtropical shrub and its growth is affected by one of major abiotic stress, chilling. Therefore, we adopt the phosphoproteomic analysis, physiological measurement and ultrastructure observation to illustrate the responsive mechanism of J. curcas seedling under chilling (4 degrees C) stress. After chilling for 6 h, 308 significantly changed phosphoproteins were detected. Prolonged the chilling treatment for 24 h, obvious physiological injury can be observed and a total of 332 phosphoproteins were examined to be significantly changed. After recovery (28 degrees C) for 24 h, 291 phosphoproteins were varied at the phosphorylation level. GO analysis showed that significantly changed phosphoproteins were mainly responsible for cellular protein modification process, transport, cellular component organization and signal transduction at the chilling and recovery periods. On the basis of protein-protein interaction network analysis, phosphorylation of several protein kinases, such as SnRK2, MEKK1, EDR1, CDPK, EIN2, EIN4, PI4K and 14-3-3 were possibly responsible for cross-talk between ABA, Ca2+, ethylene and phosphoinositide mediated signaling pathways. We also highlighted the phosphorylation of HOS1, APX and PIP2 might be associated with response to chilling stress in J. curcas seedling. These results will be valuable for further study from the molecular breeding perspective.
引用
收藏
页数:27
相关论文
共 50 条
  • [21] 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)
  • [22] Transcriptome analysis reveals the molecular mechanisms of the defense response to gray leaf spot disease in maize
    Yang Yu
    Jianyang Shi
    Xiyang Li
    Jian Liu
    Qi Geng
    Haichun Shi
    Yongpei Ke
    Qun Sun
    BMC Genomics, 19
  • [23] Transcriptome analysis reveals the molecular mechanisms of the defense response to gray leaf spot disease in maize
    Yu, Yang
    Shi, Jianyang
    Li, Xiyang
    Liu, Jian
    Geng, Qi
    Shi, Haichun
    Ke, Yongpei
    Sun, Qun
    BMC GENOMICS, 2018, 19
  • [24] Metabolome and transcriptome analysis reveals molecular mechanisms of watermelon under salt stress
    Liu, Ying
    Zhang, Weihua
    Elango, Dinakaran
    Liu, Haixue
    Jin, Dandan
    Wang, Xiaoyu
    Wu, Ying
    ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2023, 206
  • [25] Transcriptomic analysis reveals the molecular mechanisms of Camellia sinensis in response to salt stress
    Siqing Wan
    Weidong Wang
    Tianshan Zhou
    Yongheng Zhang
    Jiangfei Chen
    Bin Xiao
    Yajun Yang
    Youben Yu
    Plant Growth Regulation, 2018, 84 : 481 - 492
  • [26] Transcriptomic analysis reveals the molecular mechanisms of Camellia sinensis in response to salt stress
    Wan, Siqing
    Wang, Weidong
    Zhou, Tianshan
    Zhang, Yongheng
    Chen, Jiangfei
    Xiao, Bin
    Yang, Yajun
    Yu, Youben
    PLANT GROWTH REGULATION, 2018, 84 (03) : 481 - 492
  • [27] Global gene expression analysis of the response of physic nut (Jatropha curcas L.) to medium- and long-term nitrogen deficiency
    Kuang, Qi
    Zhang, Sheng
    Wu, Pingzhi
    Chen, Yaping
    Li, Meiru
    Jiang, Huawu
    Wu, Guojiang
    PLOS ONE, 2017, 12 (08):
  • [28] Transcriptome analysis deciphers the mechanisms of exogenous nitric oxide action on the response of melon leaves to chilling stress
    Diao, Q.
    Cao, Y.
    Fan, H.
    Zhang, Y.
    BIOLOGIA PLANTARUM, 2020, 64 : 465 - 472
  • [29] Arbuscular mycorrhizal inoculation improves growth and antioxidative response of Jatropha curcas (L.) under Na2SO4 salt stress
    Kumar, A.
    Sharma, S.
    Mishra, S.
    Dames, J. F.
    PLANT BIOSYSTEMS, 2015, 149 (02): : 260 - 269
  • [30] Quantitative proteomics analysis reveals the response mechanism of peanut (Arachis hypogaea L.) to imbibitional chilling stress
    Chen, H.
    Liu, N.
    Xu, R.
    Chen, X.
    Zhang, Y.
    Hu, R.
    Lan, X.
    Tang, Z.
    Lin, G.
    PLANT BIOLOGY, 2021, 23 (03) : 517 - 527