4.0 Article

Isolation and characterization of a copalyl diphosphate synthase gene promoter from Salvia miltiorrhiza

Journal

ACTA SOCIETATIS BOTANICORUM POLONIAE
Volume 85, Issue 3, Pages -

Publisher

POLSKIE TOWARZYSTWO BOTANICZNE
DOI: 10.5586/asbp.3513

Keywords

promoter; cloning; trans-factor; bioinformatics; microarray data; RT-PCR

Categories

Funding

  1. Medical University of Lodz: Pharmaceutical Biotechnology [503/3-012-02/503-31-003]
  2. Medical University of Lodz: Pharmaceutical Biochemistry and Molecular Diagnostics [503/3-015-02/503-01]
  3. Medical University of Lodz: Biology and Pharmaceutical Botany [503/3-012-01/503-01]
  4. [500/3-012-02/500-43-310]

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The promoter, 5'UTR, and 34-nt 5'fragments of protein encoding region of the Salvia miltiorrhiza copalyl diphosphate synthase gene were cloned and characterized. No tandem repeats, miRNA binding sites, or CpNpG islands were observed in the promoter, 5'UTR, or protein encoding fragments. The entire isolated promoter and 5'UTR is 2235 bp long and contains repetitions of many cis-active elements, recognized by homologous transcription factors, found in Arabidopsis thaliana and other plant species. A pyrimidine-rich fragment with only 6 non-pyrimidine bases was localized in the 33-nt stretch from nt 2185 to 2217 in the 5'UTR. The observed cis-active sequences are potential binding sites for trans-factors that could regulate spatio-temporal CPS gene expression in response to biotic and abiotic stress conditions. Obtained results are initially verified by in silico and co-expression studies based on A. thaliana microarray data. The quantitative RT-PCR analysis confirmed that the entire 2269-bp copalyl diphosphate synthase gene fragment has the promoter activity. Quantitative RT-PCR analysis was used to study changes in CPS promoter activity occurring in response to the application of four selected biotic and abiotic regulatory factors; auxin, gibberellin, salicylic acid, and high-salt concentration.

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