Construction and functional analysis of pathogen-inducible synthetic promoters in Brassica napus

In this study, we selected two known pathogen-inducible cis-acting elements, F and E17, to construct synthetic pathogen-inducible promoters for analysis in transformed Brassica napus. The synthetic promoter approach was used, which involved the insertion of dimers and combining two cis-acting elemen...

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Veröffentlicht in:Biologia plantarum 2011-12, Vol.55 (4), p.689
Hauptverfasser: Shokouhifar, F., National Inst. of Genetic Engineering and Biotechnology,Tehran (Iran Islamic Republic), Zamani, M.R., National Inst. of Genetic Engineering and Biotechnology,Tehran (Iran Islamic Republic), Motallebi, M., National Inst. of Genetic Engineering and Biotechnology,Tehran (Iran Islamic Republic), Mousavi, A., National Inst. of Genetic Engineering and Biotechnology,Tehran (Iran Islamic Republic), Malboobi, M.A., National Inst. of Genetic Engineering and Biotechnology,Tehran (Iran Islamic Republic)
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Sprache:eng
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Zusammenfassung:In this study, we selected two known pathogen-inducible cis-acting elements, F and E17, to construct synthetic pathogen-inducible promoters for analysis in transformed Brassica napus. The synthetic promoter approach was used, which involved the insertion of dimers and combining two cis-acting elements (E17 and F) upstream of the minimal CaMV 35S promoter. Canola plants were transformed by three constructs, pGEE, pGFF, pGFFEE containing synthetic promoters (SP), SP-EE, SP-FF and SP-FFEE, respectively. Analyses of histochemical and fluorometric GUS expression indicated that synthetic promoters responded to fungal elicitors and phytohormone treatments. The SP-FF promoter showed high responses against methyl jasmonate and Sclerotinia sclerotiorum, while SP-EE demonstrated inducibility only in response to salicylic acid and Rhizoctonia solani. The SP-EE promoter similar to SP-FFEE, did not respond to S. sclerotiorum and methyl jasmonate. However, SP-FFEE was highly induced by R. solani elicitors and showed that the level of GUS expression was greater than that by either of E17 or F elements alone. These three synthetic promoters did not activate the expression of the reporter gene in response to cold, heat, UV and wounding.
ISSN:0006-3134
1573-8264
DOI:10.1007/s10535-011-0169-5