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Isolation of Penicillium citrinum from Roots of Clerodendron cyrtophyllum and Application in Biosynthesis of Aglycone Isoflavones from Soybean Waste Fermentation.

Duy Tien DoanDuc Phuong LuuThanh Duong NguyenBich Hoang ThiHong Minh Pham ThiHuu Nghi DoVan Huyen LuuThe Dan PhamVan Thai ThanHai Ha Pham ThiPham Minh QuanQuoc Toan Tran
Published in: Foods (Basel, Switzerland) (2019)
Soybeans offer an abundant source of isoflavones, which confer useful bioactivities when existing in aglycone forms. The conversion of isoflavones into aglycones via fermentation of soybean products is often realized by β-glucosidase, an enzyme produced by fungi. In this study, a filamentous fungus, Clerodendron cyrtophyllum, was isolated from root of Clerodendron cyrtophyllum Turcz, which was able to produce the highest activity of β-glucosidase up to 33.72 U/mL at 144 h during fermentation on Potato Dextrose Broth (PDB). The obtained fungus was grown on isoflavones-rich soybean extract to produce genistein and daidzein, achieving the conversion rate of 98.7%. Genistein and daidzein were isolated and purified by column chromatography using hexane/acetone (29:1/1:1), reaching purities of over 90% of total isoflavones, as identified and determined by TLC, LC-MS/MS, and 1H and 13C NMR spectroscopy. These results imply that the isolated P. citrinum is a potential fungal strain for industrial-scale production of genistein and daidzein from isoflavones-containing soybean extracts. These products may serve as potential raw materials for manufacture of functional foods that are based on aglycones.
Keyphrases
  • saccharomyces cerevisiae
  • heavy metals
  • molecular docking
  • mass spectrometry
  • liquid chromatography
  • oxidative stress
  • risk assessment
  • ms ms
  • high performance liquid chromatography
  • sewage sludge