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Biosynteza związków izoflawonoidowych 4536. Keßmann K., Barz W., Accumulation of isoflavones and pterocarpan phytoalexins in cell suspensioncultures of different cultivars of chickpea (Cicer arietinum), Plant Cell Rep. 6 (1987)55-59.37. Laflamme P., Khouri H., Gulick P., Ibrahim R., Enzymatic prenylation of isoflavones in whitelupin, Phytochemistry 34 (1993) 147-151.38. Landini S., Graham M.Y., Graham T.L., Lactofen induces isoflavone accumulation and gliceollinelicitation competency in soybean, Phytochemistry 62 (2003) 865-874.39. Li J., Copeland L., Role of malonate in chickpeas, Phytochemisty 54 (2000) 585-589.40. Li Z., Alfenito M., Rea P.A., Walbot V., Dixon R.A., Vacuolar uptake of the phytoalexinmedicarpin by the glutathione conjugate pump, Phytochemistry 45 (1997) 689-693.41. Lozovaya V.V., Lygin A.V., Zernova O.V., Li S., Hartman G.L., Widholm J.M., Isoflavonoidaccumulation in soybean hairy roots upon treatment with Fusarium solani, Plant Physiol. Biochem.42 (2004) 671-679.42. Łuczkiewicz M., Głód D., Callus cultures of Genista plants - in vitro material producing highamounts of isoflavones of phytoestrogenic activity, Plant Sci. 165 (2003) 1101-1108.43. Nakamura K., Akashi T., Aoki T., Kawaguchi K., Ayabe S., Induction of Isoflavonoid andRetrochalcone Branches of the Flavonoid Pathway in Cultured Glycyrrhiza echinata CellsTreated with Yeast Extract, Biosci. Biotechnol. Biochem. 63 (1999) 1618-1620.44. Paiva N.L., Oomen A., Harrison M.J., Dixon R.A., Regulation of isoflavonoid metabolism inalfalfa, Plant Cell Tiss. Org. Cult. 38 (1994) 213-220.45. Phillips D.A., Kapulnik Y., Plant isoflavonoids, pathogens and symbionts, Trends Microbiol.3(2)(1995)58-64.46. Sallaud C., El-Turk J., Breda C., Buffard D., de Kozak I., Esnault R., Kondorosi A., Differen¬tial expression of cDNA coding for chalcone reductase, a key enzyme of the 5-deoxyflavonoidpathway, under various stress conditions in Medicago sativa, Plant Sci. 109 (1995) 179-190.47. Schlieper D., Tiemann K., Barz W., Stereospecificity of hydrogen transfer by fungal and plantNADPH: isoflavone oxidoreductases, Phytochemistry 29 (1990) 1519-1524.48. Shimada N., Akashi T., Aoki T., Ayabe S., Induction of isoflavonoid pathway in the modellegume Lotus japonicus: molecular characterization of enzymes involved in phytoalexin bio¬synthesis, Plant Sci. 160 (2000) 37-47.49. Steele C.L., Gijzen M., Qutob D., Dixon R.A., Molecular characterization of the enzyme cata¬lyzing the aryl migration reaction of isoflavonoid biosynthesis in soybean, Arch. Biochem.Biophys. 367 (1999) 147-150.50. VanEtten H.D., Smith D.A., Accumulation of antifungal isoflavonoids and 1ahydroxyphaseollone,a phaseollin metabolite, in bean tissue infected with Fusarium solani f.sp. phaseoli, Physiol. Plant Pathol. 5 (1975) 225-237.51. Winkel-Shirley B., Biosynthesis of flavonoids and effects of stress, Cur. Op. Plant Biol. 5(2002) 218-223.52. Wojtaszek P., Stobiecki M., Differential secretion and accumulation of isoflavonoids in Lupinusalbus in response to fungal elicitor and CuCl2, Plant Physiol. Biochem. 35 (1997) 129¬135.53. Yu O., McGonigle B., Metabolic Engineering of Isoflavone Biosynthesis, Adv. Agron. 86(2005) 147-190.

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