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2012 | 34 | 6 |

Tytuł artykułu

Delta-6 desaturase makes a different fatty acid profile of seed oil in Iranian borage (Echium amoenum Fisch. and Mey.)

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Iranian borage (Echium amoenum) from Boraginaceae is a valuable medicinal plant native to Iran and Syria. We determined fatty acid profile and individual fatty acid contents in E. amoenum seed oil using gas chromatography. Nevertheless, the cumulative amount of ω-6 and ω-3 fatty acids in E. amoenum (78.5 %) was in great accordance with those of other species of Echium, Stearidonic acid (SDA, C18:4ω3) and gamma-linolenic acid (GLA, C18:3ω6) constituted only 9.7 % of seed oil in this plant. This observation elucidated the weak activity of delta-6 desaturase (D6DES) in E. amoenum compared with D6DESs of other species. As D6DES enzyme is responsible for converting linoleic acid (LA, C18:2ω6) and alphalinolenic acid (ALA, C18:3ω3) to GLA and SDA, we isolated coding sequence of D6DES gene and characterized primary structure of the translated protein to probably find some evidences explaining the weak activity of D6DES enzyme in E. amoenum. Gene sequence from E. amoenum showed a high identity of 94–96 % with the other Echium species and the amino acid homology increased by 98 %. All the expected signatures including cytochrome b5 domain and three conserved histidine-rich motifs were found in the translated amino acid sequence. Protein alignment revealed that all the conserved motifs in D6DES sequence from E. amoenum are coincident with its counterparts from other Echium species. However, secondary structure of the enzyme deduced from its primary structure using computational simulation represented obvious differences with D6DES proteins of the other species.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

34

Numer

6

Opis fizyczny

p.2413-2418,fig.,ref.

Twórcy

autor
  • Rice and Citrus Research Institute, University of Agricultural Sciences and Natural Resources, P.O. Box 578, Sari, Iran
  • Rice and Citrus Research Institute, University of Agricultural Sciences and Natural Resources, P.O. Box 578, Sari, Iran
autor
  • Department of Agricultural Biotechnology, Faculty of Agriculture, Shahid Bahonar University of Kerman, P.O. Box 76169-133, Kerman, Iran
autor
  • Rice and Citrus Research Institute, University of Agricultural Sciences and Natural Resources, P.O. Box 578, Sari, Iran
  • Department of Agronomy and Plant Breeding, University of Agricultural Sciences and Natural Resources, P.O.Box 578, Sari, Iran
  • Rice and Citrus Research Institute, University of Agricultural Sciences and Natural Resources, P.O. Box 578, Sari, Iran

Bibliografia

  • Barre DE (2001) Potential of evening primrose, borage, black currant, and fungal oils in human health. Ann Nutr Metab 45:47–57
  • García-Maroto F, Manas-Fernández A, Garrido-Cárdenas JA, López Alonso D (2006) Substrate specificity of acyl-Δ6-desaturase from Continental versus Macaronesian Echium species. Phytochem 67:540–544
  • Ghassemi N, Sajjadi SE, Ghannadi A, Shams-Ardakani M, Mehrbani M (2003) Volatile constituents of a medicinal plant of Iran, Echium amoenum Fisch. and C.A Mey. DARU 2:32–33
  • Guil-Guerrero JL, Gómez-Mercado F, García-Maroto F, Campra-Madrid P (2000) Occurrence and characterization of oils rich in γ-linolenic acid part I: Echium seeds from Macaronesia. Phytochem 53:451–456
  • Guil-Guerrero JL, Gómez-Mercado F, Rodríguez-García I, Campra-Madrid P, García-Maroto F (2001a) Occurrence and characterization of oils rich in γ-linolenic acid (III): the taxonomical value of the fatty acids in Echium (Boraginaceae). Phytochem 58:117–120
  • Guil-Guerrero JL, García-Maroto F, Jiménez A (2001b) Fatty acid profiles from forty-nine plant species that are potential new sources of γ-linolenic acid. J Am Oil Chem Soc 78:677–684
  • Guil-Guerrero JL, García-Maroto F, Vilches-Ferrón MA, López Alonso D (2003) Gamma-linolenic acid from fourteen Boraginaceae species. Ind Crop Prod 18:85–89
  • IUPAC (1979) Standard methods for the analysis of oils, fats and derivatives. Pergamon Press, Oxford, pp 96–102
  • Kinney JA (1994) Genetic modification of the storage lipids of plants. Curr Opin Biotechnol 5:144–151
  • Maniatis T, Fritsch E, Sambrook F (1995) Molecular cloning: a laboratory manual. Cold spring Harbor, New York
  • Mehrbani M, Ghassemi N, Sajjadi E, Ghannadi A, Shams-Ardakani M (2005) Main phenolic compounds of petals of Echium amoenum Fisch. and C.A. Mey., a famous medicinal plant of Iran. DARU 13(2):65–69
  • Qi B, Fraser T, Mugford S, Dobson G, Sayanova O, Butler J, Napier JA, Stobart AK, Lazarus CM (2004) Production of very long chain polyunsaturated omega-3 and omega-6 fatty acids in plants. Nat Biotechnol 22:739–745
  • Zhou X-R, Robert S, Singh S, Green A (2006) Heterologous production of GLA and SDA by expression of an Echium plantagineum Δ6-desaturase gene. Plant Sci 170:665–673

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Bibliografia

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