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2009 | 59 | 2 |

Tytuł artykułu

RP-HPLC-DAD finger print analysis of phenolic extracts from transgenic flax

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Two flax lines overexpressing genes encoding three essential enzymes of the flavonoid synthesis pathway: chalcone synthase (CHS), chalcone isomerase (CHI), and dihydroflavonol reductase (DFR), were generated. Phenolic compounds were extracted from the flaxseed lines and the control sample (Linola) using 80% methanol. Then the complex of phenolic compounds present in the crude extract was hydrolysed at basic conditions. The crude and hydrolysed extracts were analysed using an RP-HPLC-DAD method. The chromatograms of the crude extracts of the control sample and transgenic lines were the same. The finger print analysis of the hydrolysed extracts shows the influence of the expression of genes encoding three above mentioned enzymes on the proportion between secoisolariciresinol diglucoside (SDG) and phenolic acids derivatives forming the phenolic complex in flaxseed.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

59

Numer

2

Opis fizyczny

p.135-140,fig.,ref.

Twórcy

  • Faculty of Biotechnology, Wroclaw University, Wroclaw, Poland
autor
autor
autor

Bibliografia

  • 1. Adlercreutz H., Phytoestrogens and cancer. The Lancet Oncol., 2002, 3, 364–373.
  • 2. Amarowicz R., Wanasundara U., Wanasundara P.K.J.P.D., Shahidi F., Antioxidant activity of ethanolic extracts of flaxseed in a β-carotenelinoleate model system. J. Food Lipids, 1993, 1, 111–117.
  • 3. Amarowicz R., Wanasundara P.K.J.P.D., Shahidi F., Chromatographic separation of flaxseed phenolics. Nahrung, 1994, 38, 520–526.
  • 4. Amarowicz R., Karamać M., Wanasundara P.K.J.P.D., Shahidi F., Antioxidant activity of hydrophobic fractions of flaxseed. Nahrung, 1997, 41, 178–180.
  • 5. Amarowicz R., Piskuła M., Honke J., Rudnicka B., Troszyńska A., Kozłowska H., Extraction of phenolic compounds from lentil (Lens culinaris) with various solvents. Pol. J. Food Nutr. Sci., 1995, 45, 53–62.
  • 6. Axelson M., Sjõvall J., Gustafsson B.E., Setchel K.D.R., Origin of lignans in mammals and identification of a precursor from plants. Nature, 1984, 298, 659–660.
  • 7. Boccardo F., Lunardi G., Guglielmini P., Parodi M., Murialdo R., Schettini G., Rubagotti A., Serum enterolactone levels and the risk of breast cancer in woman with palpable cysts. Eur. J. Cancer, 2004, 40, 84–89.
  • 8. Davies K.M., Genetic modification of plant metabolism for human health benefits, Mutation Res., 2007, 622, 122–137.
  • 9. Hu Ch., Yuan Y.V., Kitts D.D., Antioxidant activities of the flaxseed lignan secoisolariciresinol diglucoside, its aglycone secoisolariciresinol and the mammalian lignans enterodiol and enterolactone in vitro. Food Chem. Toxicol., 2007, 45, 2219–2227.
  • 10. Jenab M., Thompson L.U., The influence of flaxseed and lignans on colon carcinogenesis and β-glucuronidase activity. Carcinogenesis, 1996, 17, 1343–1348.
  • 11. Johnsson P., Kamal-Eldin A., Lundgren L.N., Åman P., HPLC method for analysis of se- coisolariciresinol diglucoside in flaxseeds. J. Agric. Food Chem., 2000, 48, 5216–5219.
  • 12. Johnsson P., Peerlkamp N., Kamal-Eldin A., Andersson R.E., Andersson R., Lundgren L.N., Åman P., Polymeric fractions containing phenol glucosides in flaxseed. Food Chem., 2002, 76, 207–212.
  • 13. Kamal-Eldin A., Peerlkamp N., Johnsson P., Andersson R., Andersson R.E., Lundgren L.N., Åman P., An oligomer from flaxseed composed of secoisolariciresinoldiglucoside and 3-hydroxy-3- methyl glutaric acid residues. Phytochemistry, 2001, 58, 587–590.
  • 14. Lin X., Gingrich J.R., Bao W., Li J., Haroon Z.A., Demark-Wahnefried W., Effect of flaxseed supplementation on prostatic carcinoma in transgenic mice. Urology, 2002, 60, 919–924.
  • 15. Lorenc-Kukuła K., Amarowicz R., Oszmiański J., Dermann P., Starzycki M., Skała J., Żuk M., Kulma A., Szopa J., Pleiotropic effect of phenolic compounds content increases in transgenic flax plant. J. Agric. Food Chem., 2005, 53, 3685–3692.
  • 16. Meagher L.P., Beecher G.R., Flanagan V.P., Li W., Isolation and characterization of lignans, isolariresinol and pinoresinol, in flaxseed meal. J. Agric. Food Chem., 1999, 47, 3173–3180.
  • 17. Niemeyer H.B., Metzler M., Differences in the antioxidant activity of plant and mammalian lignans. J. Food Eng., 2003, 56, 255–256.
  • 18. Oomah B.D., Mazza G., Flaxseed as a functional food source. J. Sci. Agric. Food, 2001, 81, 889–894.
  • 19. Rybarczyk A., Pegg R.B., Amarowicz R., Capillary zone electrophoresis (CZE) of flaxseed phenolic constituents– a short report. Pol. J. Food Nutr. Sci., 2008, 58, 263–267.
  • 20. Tarpila A., Wennberg T., Tarpila S., Flaxseed as a functional food. Curr. Topics Nutraceut. Res., 2005, 3, 167–188.

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Bibliografia

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