4.7 Article

Genome-wide Analysis of Phosphoenolpyruvate Carboxylase Gene Family and Their Response to Abiotic Stresses in Soybean

Journal

SCIENTIFIC REPORTS
Volume 6, Issue -, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/srep38448

Keywords

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Funding

  1. National Natural Science Foundation of China [31371645]
  2. National High-tech R & D Program of China [2013AA102602]
  3. Fundamental Research Funds for the Central Universities
  4. Program for Changjiang Scholars and Innovative Research Team in University [PCSIRT13073]
  5. Program for New Century Excellent Talents in University [NCET-12-0891]
  6. MOE 111 Project [B08025]
  7. Program for MOA Innovative Research Team
  8. Program for High-level Innovative and Entrepreneurial Talents in Jiangsu Province
  9. Jiangsu Higher Education PAPD Program

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Phosphoenolpyruvate carboxylase (PEPC) plays an important role in assimilating atmospheric CO2 during C-4 and crassulacean acid metabolism photosynthesis, and also participates in various non-photosynthetic processes, including fruit ripening, stomatal opening, supporting carbon-nitrogen interactions, seed formation and germination, and regulation of plant tolerance to stresses. However, a comprehensive analysis of PEPC family in Glycine max has not been reported. Here, a total of ten PEPC genes were identified in soybean and denominated as GmPEPC1-GmPEPC10. Based on the phylogenetic analysis of the PEPC proteins from 13 higher plant species including soybean, PEPC family could be classified into two subfamilies, which was further supported by analyses of their conserved motifs and gene structures. Nineteen cis-regulatory elements related to phytohormones, abiotic and biotic stresses were identified in the promoter regions of GmPEPC genes, indicating their roles in soybean development and stress responses. GmPEPC genes were expressed in various soybean tissues and most of them responded to the exogenously applied phytohormones. GmPEPC6, GmPEPC8 and GmPEPC9 were significantly induced by aluminum toxicity, cold, osmotic and salt stresses. In addition, the enzyme activities of soybean PEPCs were also up-regulated by these treatments, suggesting their potential roles in soybean response to abiotic stresses.

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