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Antitrypsin activity in germinating common seeds of flax (Linum usitatissimum) was investigated. At the early stage of germination an increase in antitrypsin activity was observed, followed by its decrease during the development of the seedlings. From 6-day-old seedlings a trypsin inhibitor (gerLUTI) was purified. The purification procedure involved fractionation of proteins from seedling homogenate with alcohol and successive chromatography on CM-Sephadex C-25 on immobilised methylchymotrypsin in the presence of 5 M NaCl, and finally on a C18 column in RP-HPLC. The gerLUTI migrated in SDS PAGE as a single band, but in mass spectroscopy analysis it exhibited the presence of at least three forms with molecular masses of 7654 ± 3 Da, 7668/7670 ± 3 Da, and 7687 ± 3 Da. The preparation of LUTI isolated from resting seeds contained only one form, with a molecular mass of 7655 ± 3 Da. LUTI and gerLUTI differed also in methionine contents. LUTI contained two methionine residues, whereas in gerLUTI only a trace of methionine was detected. The obtained results might suggest that during flax seeds germination the inhibitor molecules undergo selective modification, e.g. oxidation at methionine residues, before being degraded by proteolytic enzymes.
A single factor (variety) strict field experiment was carried out in 1999 - 2000 at the experimental station of the Department of Plant Production, Agricultural University of Krakow located at Prusy near Cracow to study the changes in selected macro-and microelement concentrations in the top parts of linseed and the uptake of these elements during vegetation at the characteristic phases of development, including also the plant parts, i.e. leaves, stems, seeds and straw. On the basis of obtained results it was demonstrated that microelement contents in the linseed top parts changed considerably with the plant growth. The levels of Cr, Zn, Cd, Fe and Mn were highest at budding, while Cr, Pb, Fe and Mn levels were lowest at full maturity phase. Linseed grown in the area unpolluted with trace elements did not reveal the ability to accumulate excessive amounts of Cr, Zn, Pb, Cu, Ni, Fe and Mn, undesired from the usefulness for consumption point of view. Cadmium, irrespective of the examined stage of plant development, revealed high capacity for an excessive accumulation in the top parts. The contents and reciprocal ratios of macroelements in plants changed variously with their growth. The highest Na and K contents were noticed at budding phase, Ca at vegetative stage (arborescent) and Mg at the initial budding. The widest Ca:P ratio and K:(Ca+Mg) ratio occurred at budding, whereas K:Na ratio at full maturity phase. Linseed accumulated macro- and microelements in the yield at various rates. Among the analysed elements Cd, Zn and Ni were taken up proportionally to increasing yields of linseed top part biomass.
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