PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2010 | 79 | 1 |

Tytuł artykułu

Changes in the alkaloid, alpha-galactoside and protein fractions content during germination of different lupin species

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The objective of our studies were seeds of two lupin species Lupinus luteus L. and Lupinus angustifolius L. cvs. Lord and Graf respectively. Lupin seeds were germinated at 15 and 24°C and during two, three and four days. In the lupin sprouts antinutritional factors: alkaloids and raffinose family oligosaccharides (RFOs) and five nitrogen fractions: non protein (Nnp), albumin (A), globulin (G), glutelin and prolamin (Gt+P) and nitrogen residue fraction (Nr) were determined. The level of these compounds was compared with the proper ones of initial material (not germinated seeds). These studies showed that the germination process clearly affects the decrease of antinutritional factors: RFOs and alkaloids. The decrease level of these compounds depended on such factors like, lupin species and used germination conditions. It was found on the base of nitrogen analysis of particular protein fractions that the germination process of lupin seeds causes deep quantitative and qualitative changes in fractional composition of lupin proteins. It especially concerns the decrease of globulin and residual fraction content and distinct increase of Nnp fraction. The changes in other fractions were not so unequivocal in comparison with the mentioned above and depended on lupin species, temperature and time of germination. Qualitative changes of A, G and Gt+P fractions caused by germination were confirmed by gel electrophoresis (SDS-PAGE). The amino acid analysis of seeds and sprouts of Nnp fractions showed an increased content of Asp, Ser, Ala, Pronon essential amino acids (NEAA), and Val, Met, iLeu, Leu, Thressential amino acids (EAA). Simultaneously a decrease of Glu, Arg (NEAA), Phe, Lis, Cys (EAA) contents was observed. Generally the germination process causes the decrease of total NEAA and an increase of total EAA in Nnp fractions of both lupin species.

Wydawca

-

Rocznik

Tom

79

Numer

1

Opis fizyczny

p.11-20,fig.,ref.

Twórcy

autor
  • University of Life Sciences in Poznan, Wolynska 33, 60-637 Poznan, Poland
autor
autor
autor
autor

Bibliografia

  • BLAGROVE R.J., GILLESPIE J.M. 1975. Isolation, purification and characterization of the seeds globulins of Lupinus angustifolius. Aust. J. Plant Physiol., 2: 13-27.
  • BRADFORD M. 1976 A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein - dye binding. Anal. Biochem. 72: 248-254.
  • BOISEN S., BECH-ANDERSEN S., EGGUM B.O. 1987. A Critical View on the Conversion Factor 6.25 from Total Nitrogen to Protein. Acta Agric. Scand., 37: 299-304.
  • CIESIOLKA D., GULEWICZ P., MARTINEZ-VILLALUENGA C., BEDNARCZYK M., GULEWICZ K. 2005. Products and bioactive preparations from lupin seeds. Folia Biol. (Kraków). 53 (Suppl): 59-66.
  • CIESIOLKA D., ANISZEWSKI T., WYSOCKI W., PILARSKI R., GULEWICZ K. 2008. Evaluation of the effect of various nitrogen forms on the Lupinus albus seeds. Acta Soc. Bot. Pol. 77: 2, 93-98.
  • CHEN B.M., WANG Z.H., LI S.X., WANG G.X., SONG H.X., WANG X.N. 2004. Effects of nitrate supply on plant growth, nitrate accumulation, metabolic nitrate concentration and nitrate reductase activity in three leafy vegetables. Plant Sci. 167(3): 635-643.
  • CHERRY J.P. 1977. Potential sources of peanut seed proteins and oil in the genus Arachis. J. Agric. Chem., 25: 186-193.
  • CORTES SANCHEZ de M., ALTARES P., PEDROSA M.M., BURBANO C., CUADRADO C., GOYOAGA C., MUZQUIZ M., JIMENEZ-MARTINEZ C., ORTIZ D.C. 2005. Alkaloid variation during germination in different lupin species. Food Chem. 90: 347-355.
  • CUADRA de la C., MUZQUIZ M., BURBANO C., AYET G., CALVO R., OSAGIE A., CUADRADO C. 1994. Alkaloid, a- galactosides and phytic acid changes in germinating lupin seeds. J. Sci. Food Agric. 66: 357-364.
  • CULVENOR C.J., PETTERSON D.S. 1986. Lupin toxins - Al- kaloids and Phomopsis. In: Proc. 4th International Lupin Con- ference, Geraldton Australia, pp. 188-198.
  • CUNHA-QUEDA A.C., BEIRAO da COSTA M.L. 1994. A RSM study to the effect of controlled germination in Lupinus luteus alkaloid content. In: J.M. Neves-Martins, M.L. Beirao da Costa (eds), Advances in lupin research, pp. 521-523. Lisboa: Instituto Superior de Agronomia.
  • DURANTI M., GORINSTEIN S., CERLETTI P. 1990. Synthesis of storage proteins and seed development in L. albus under different growth conditions. J. Food Biochem. 14: 327-330.
  • EDWIN L.H. 1974. Composition of protein quality of sweet lupin seed. J. Sci. Food Agric. 25: 851-859.
  • EWART J.A.D. 1981. Determination of carboxyl groups in wheat and barley flour proteins. J. Sci. Food Agric. 32: 572-578.
  • FRIAS J., DIAZ-POLLAN C., VIDAL-VALVERDE C. 1995. Evolution of tripsin inhibitor during germination of lentil. J. Agric. Food Chem. 43: 2231-2234.
  • GRZESIUK S., KULKA K. 1988. Biologia ziarniak6w zbóż. Państwowe Wydawnictwo Naukowe, Warszawa. (in Polish) GULEWICZ K. 1988. Badania nad kompleksowym wykorzystaniem białka i innych składników nasion lubinu gorzkiego. Habilitation dissertation, Polish Academy of Sciences Poznań. (in Polish)
  • GULEWICZ K., PERETIATKOWICZ M., BRATEK-WIE- WIOROWSKA M.D., WIEWIOROWSKI M. 1994. Bitter lu- pin seeds and straw as raw materials in ecological agriculture. Proceedings of the 7th International Lupin Conference. Adv. Lupin Res., 18-23 April, Evora, Portugal, pp. 312-333.
  • GULEWICZ P., MATRINEZ-VILLALUENGA C., FRIAS J., CIESIOLKA D., GULEWICZ K., VIDAL-VALVERDE C. 2008. Effect of germination on the protein fraction composition of different lupin seeds. Food Chem. 107: 830-844.
  • HAQUE A., NJAA L.R., OPSTVEDT J. 1989. Sequence in Which Amino Acids of Fish Meal Protein Become Limiting for the Growing Chicken, as Determined by "The Complete Protein Evaluation Method". Acta Agric. Scand. 39: 301-309.
  • HILL G.D. 1977. The composition and nutritive value of lupin seeds. Nutrition abstracts and reviews. Series B. 47: 511-528.
  • KUO YU-H., ROZAN P., LAMBELIN F., FRIAS J., VIDAL- VALVERDE C. 2004. Effects of different germination conditions on the contents of free protein and nonprotein amino acids of commercial legumes. Food Chem. 86: 537-545
  • LAEMMLI U.K. 1970. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227: 680- 685.
  • MANDAL S., MANDAL R.K. 2000. Seed storage proteins and approaches for improvement of their nutritional quality by genetic engineering. Curr. Sci. 79(5): 576-589.
  • MUZQUIZ M., REY C., CUADRADO C., FENWICK G.R. 1992. Effect of germination on the oligosaccharide content of lupin species. J. Chromatogr. 607: 349-352.
  • MUZQUIZ M., CUADRADO C., AYET G., CUADRA de la C., BURBANO C., OSAGIE A. 1994. Variation of alkaloids component of lupin seeds in 49 genotypes of Lupinus albus L. from different countries and locations. J. Agric. Food Chem. 42 (7): 1447-1450.
  • MICHAEL G., BLUME B. 1960. Uber den Einfluss der Stickstoffdungung auf Eiweiszusamerensetzung des Gerstenkornes. Z. Pfl.-Ernahr. Dung. Bodenk. 88: 237-250.
  • MOHAMED A.A., RAYAS-DUARTE P. 1995. Composition of Lupinus albus. Cereal Chem. 72(6):643-647.
  • NELSON O.E. 1969. Genetic modification of protein quality in plants. Adv. Agron. 21: 171-194.
  • OKAFOR P.N., ABARA C.N., NWABUKO C.U., OGBONNA U. 2002. Assessment of cyanogenic potential, nitrate and nitrite contents, and trypsin inhibitor activity of some Nigerian legumes. J. Agric. Food Chem. 50(17): 4965-4968.
  • OOMAH B.D., BUSHUK W. 1983. Characterization of lupine proteins. J. Food Sci. 48: 38-41.
  • PANNALA A.S., MANI A.R., SPENCER JEREMY P.E., SKINNER V., BRUCKDORFER K.R., RICEEVANS C.A. 2003.The effect of dietary nitrate on salivary, plasma, and urinary nitrate metabolism in humans. Free Rad. Biol. Med. 34 (5): 576-584.
  • PERETIATKOWICZ M., WOJTASZEK MICHALSKI Z., GULEWICZ K. 1988a. The amino acid composition of sed proteins and fractions of different lupine species. Bull. Pol. Acad. Sci. 36(1-3): 1-9.
  • PERETIATKOWICZ M., WOJTASZEK P., STENCEL M., GULEWICZ K. 1988b. The comparison and characterization of the protein composition of lupinus species and other Papilionaceae in Poland. Lupin News., 11: 33-37.
  • PRICE K.R., LEVIS J., WYATT G.M., FENWICK G.R. 1988. Flatulence - causees, relation to diet and remedies. Nahrung- Food. 32: 609-626.
  • PRODANOV M., SIERRA I., VIDAL-VALVERDE C. 1997. Effect of germination on the thiamine, riboflavin and niacin contents in legumes. Z. Lebens. Unters. Forsch. A. 205: 48-52.
  • RESTANI P., DURANTI M., CERLETTI P., SIMONETTI P. 1981. Submit composition of the seed globulins of Lupinus albus. Phytochem. 20, 2077-2083.
  • ROZAN P., KUO YU-H., LAMBEIN F. 2001. Free amino acids present in commercially available seedlings sold for human consumption. A potential hazard for consumers J. Agric. Food Chem. 48: 716-723.
  • SIERRA I., VIDAL-VALVERDE C. 1999. Kinetics of free and galactosyled B6 vitamins, thianin and ryboflavin during germination of pea seeds. J. Sci. Food Agric. 79: 307-310.
  • SNAUWAERT P., MARKAKIS P. 1976. Effect of germination and gamma irrtadiation on the oligosaccharides of navy beans (Phaseolus vulgaris L.) Lebensm.-Wiss.Technol. 9: 93-95.
  • TKACHUK R. 1969. Nitrogento-nitrogen conversion factors for cereals and oilseed meals. Cereal Chem. 46: 419-424.
  • TRUGO L.C. 1993. Effect of germination on nutritive valueof lupin seeds. In Abstracts of the VII International Lupin Conference Portugal, Evora.
  • URBANO G., ARANDA P., VILCHEZ A., ARANDA C., CA- BRERA L., PORRES J.M., LOPEZ-JURADO M. 2005. Effects of germination on the composition and nutritive value of proteins in Pisum sativum L. Food Chem. 93: 671-679.
  • VIDAL-VALVERDE C., FRIAS J. 1992. Changes in carbohy- drates during germination of lentil. Z. Lebensm. F A. 194 (5): 461-464.
  • VIDAL-VALVERDE C., FRIAS J., SIERRA I., BLAZQUEZ I., LAMBEIN F., KUO Y.H. 2002. New functional legume foods by germination: Effect on the nutritive value of beans, lentil and peas. Eur. Food Res. Technol. 215: 472-477.
  • WOJTASZEK P. 1992. Rola związków azotu w wydzielaniu fenolowych metabolitów wtórnych przez korzenie lubinu. PhD Dissertation. Institute of Bioorganic Chemistry, PAS, Poznan, Poland. (in Polish)

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-6f58e69f-92d6-411d-92ea-d438131d2d51
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.