Hort. Sci. (Prague), 2004, 31(4):132-135 | DOI: 10.17221/3806-HORTSCI

Demonstration of lactase activity in culture medium of melon cells

J. Stano, K. Mičieta, E. Tokhtaeva, M. Valšíková, M. Koreňová, V. Blanáriková
1 Faculty of Pharmacy, Comenius University, Bratislava, Slovak Republic
2 Faculty of Natural Sciences, Comenius University, Bratislava, Slovak Republic
3 Faculty of Natural Sciences, National University of Uzbekistan, Tashkent, Uzbekistan Republic
4 Research Institute of Vegetables, Nové Zámky, Slovak Republic

Lactase activity was detected in a culture medium of the cell suspension culture of watermelon (Citrullus vulgaris L.). A simple, rapid and reproducible procedure for identification of extracellular lactase is described using callus cultures of seedlings from the tested plant, hairy roots of 2.5 days old seedlings of watermelon germinating on agar plates as well as cell suspension cultures derived from callus cultures. For the determination of intracellular activities of lactase, 6-bromo-2-naphthyl-β-D-galactopyranoside and p-nitrophenyl-β-D-galactopyranoside were used as synthetic substrates. The extracellular lactase activity was determined by evaluating the day-zone in agar medium. The enzyme from watermelon callus cultures and seedling roots, cultivated on agar plates supplemented with 6-bromo-2-naphthyl-2-bromo-β-D-galactopyranoside, hydrolyzed this substrate releasing 6-bromo-naphthyl. By simultaneous coupling with hexazonium p-rosaniline or Fast Blue BB the corresponding azo dye was formed. The parallel extracellular and intracellular activities were determined in cell suspension cultures derived from callus cultures. The results show a 43.8% intracellular and 54.2% extracellular distribution of lactase activity. The described agar plate method enables a rapid, simple and specific detection of plant processes of extracellular lactase.

Keywords: intracellular lactase; extracellular lactase; watermelon

Published: December 31, 2004  Show citation

ACS AIP APA ASA Harvard Chicago Chicago Notes IEEE ISO690 MLA NLM Turabian Vancouver
Stano J, Mičieta K, Tokhtaeva E, Valšíková M, Koreňová M, Blanáriková V. Demonstration of lactase activity in culture medium of melon cells. Hort. Sci. (Prague). 2004;31(4):132-135. doi: 10.17221/3806-HORTSCI.
Download citation

References

  1. ANDRIAMAINTY F., STANO J., MIČIETA K., BARTH A., BARTHOVÁ H., ČIŽMÁRIK J., KOREŇOVÁ M., 2000. Identification and determination of plant extracellular α-galactosidase. Hort. Sci., 27: 131-134.
  2. ASANO N., NASH R., MOLYNEUX R., FLEET G.W.J., 2000. Sugar mimic glycosidase inhibitors: natural occurrence, biological activity and prospects for therapeutic application. Tetrahedron Asymmetry, 11: 1645-1680. Go to original source...
  3. BARTH A., JANINA M.M., NEUBERT K., MIČIETA K., TILEMANN I., STANO J., BILISICS L., 2002. Sucrose biotransformation by carrot immobilized cells. Acta Facult. Pharm. Univ. Comenianae, 49: 17-25.
  4. BILISICS L., LIŠKOVÁ D., KUBAČKOVÁ M., AUXTOVÁ O., KÁKONIOVÁ D., 1994. On the possible participation of UDP-D-glucose 4-epimerase and some NADP-dependent dehydrogenases in spruce tissue organization. Biologia, 49: 911-915.
  5. BILKA F., KĽÚČOVSKÁ J., BILKOVÁ A., BENEŠOVÁ M., 2002. Aminopeptidases in opium poppy latex. Biologia, 57: 761-764.
  6. BRADFORD M.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. Go to original source...
  7. BUDÍK D., 1992. α-Galactosidase in poppy cell suspension (Papaver somniferum L.). [Diploma Thesis.] Bratislava, Comenius University, Faculty of Pharmacy: 21-38.
  8. CHEN CH.S., CHEN Y.F., YEN A., 1993. Activities and some properties of glycosidases from germinating mung bean. J. Chin. Biochem. Soc., 22: 1-8.
  9. DE VEAU E.L., GROSS K.C., HUBER D.J., WATADA A.E., 1993. Degradation of pectin by β-galactosidases purified from avocado mesocarp. Physiol. Plant., 87: 279-285. Go to original source...
  10. DIXON R.A., 1991. Isolation and maintenance of callus and cell suspension cultures. In: DIXON R.A. (ed.), Plant Cell Culture. A Practical Approach. Oxford, Washington, IRL Press: 1-20.
  11. EL ASHRY E.S., RASHED N., SHOBIER A.H.S., 2000a. Glycosidase inhibitors and their chemotherapeutic value, part 1. Pharmazie, 55: 251-262. Go to original source... Go to PubMed...
  12. EL ASHRY E.S., RASHED N., SHOBIER A.H.S., 2000b. Glycosidase inhibitors and their chemotherapeutic value, part 2. Pharmazie, 55: 331-348. Go to original source... Go to PubMed...
  13. EL ASHRY E.S., RASHED N., SHOBIER A.H.S., 2000c. Glycosidase inhibitors and their chemotherapeutic value, part 3. Pharmazie, 55: 403-415. Go to original source... Go to PubMed...
  14. GOSSRAU R., 1991. Catalytic histochemistry of acid and neutral hydrolases in plant seedlings. Histochem. J., 23: 483-489. Go to original source... Go to PubMed...
  15. LOJDA Z., GOSSRAU R., SCHIEBLER T.H., 1979. Enzyme Histochemistry. A Laboratory Manual. Berlin, Heidelberg, New York, Springer Verlag: 122-128. Go to original source...
  16. MACHOVÁ B., 1994. Study of some properties of α-galactosidase in gherkin seedlings (Cucumis sativus L.). [Diploma Thesis.] Bratislava, Comenius University, Faculty of Pharmacy: 35-57.
  17. MATSUURA H., MIYAZAKI H., ASAKAWA CH., AMANO M., YOSHIHARA T., MIZUTANI J., 2004. Isolation of α-glucosidase inhibitors from hyssop (Hyssopus officinalis). Phytochemistry, 65: 91-97. Go to original source... Go to PubMed...
  18. MERTOVÁ J., ALMÁSIOVÁ M., PEREČKO D., BILKA F., BENEŠOVÁ M., BEZÁKOVÁ L., PŠENÁK M., KUTEJOVÁ E., 2002. ATP-dependent Lon protease from maize mitochondria-comparison with the other lon proteases. Biologia, 57: 739-745.
  19. MIČIETA K., STANO J., BLANÁRIKOVÁ V., HAVRÁNEK E., ANDRIAMAINTY F., BIRJUKOVA N., IGNATOVA S., ŠAFAŘÍK I., 1999. Activity of invertase in immobilized cells of carrot. Bull. Food Res., 38: 153-161.
  20. MULINAMI V.H., DEVENDRA S., 1999. Effect of soaking cooking and crude α-galactosidase treatment on the oligosaccharide content of red gram flour. Food Chem., 61: 475-479. Go to original source...
  21. NEUBERT K., STANO J., MIČIETA K., KOVÁCS P., TINTEMANN H., 2002. Invertase in immobilized cells of Eschscholtzia californica. Biol. Plant., 45: 307-310. Go to original source...
  22. PAEK N.S., KANAG O.L., LEE H.S., LEE J.J., CHOI J.J., KIM T.M., KIM J.J., 1998. Enzymatic synthesis of 6-O-α-galactopyranosyl-1-deoxynojirimycin using α-galactosidase from green coffee beans. Biosci. Biotechnol. Biochem., 62: 588-598. Go to original source... Go to PubMed...
  23. ROGALSKI J., LOBARZEWSKI J., 1995. The purification and immobilization of Penicillium notatum α -galactosidase. Acta Biotechnol., 15: 211-222. Go to original source...
  24. SAWICKA T., KACPERSKA A., 1995. Soluble and cell wallassociated β-galactosidases from cold-grown winter rape (Brassica napus L. var. oleifera L.). J. Plant. Physiol., 145: 357-362. Go to original source...
  25. SIMONS G., GIANNAKOUROS T., GEORGATSOS J.G., 1989. Plant β-galactosidases: Purification by affinity chromatography and properties. Phytochemistry, 28: 2587-2592. Go to original source...
  26. SINGH M.B., KNOX R.B., 1985. β-Galactosidases of Lilium pollen. Phytochemistry, 24: 1639-1643. Go to original source...
  27. STANO J., KOVÁCS P., ŠAFAŘÍK I., KÁKONIOVÁ D., ŠAFAŘÍKOVÁ M., 1997/1998. A simple procedure for the detection of plant extracellular proteolytic enzymes. Biol. Plant., 40: 475-477. Go to original source...
  28. STOWARD P.J., PEARSE A.G.E., 1991. Theoretical and Applied. Vol. 3. Enzyme Histochemistry. Edinburgh, London, Melbourne, New York, Tokyo, Churchill Livingstone: 624-627.
  29. SZCZODRAC J., 1999. Hydrolysis of lactose in whey permeate by immobilized β-galactosidase from Penicillium notatum. Acta Biotechnol., 19: 235-250. Go to original source...
  30. TILEMANN I., TOKHTAEVA E., SEDLÁROVÁ E., BARTH A., VALENT A., SIEKEL P., ĎURÍČEK M., 2003. Lactase in immobilized cells of watermelon. Chem. Nat. Comp., 39: 394-398. Go to original source...
  31. WATSON A.A., FLEET G.W.J., ASANO N., MOLYNEUX R.J., NASH R.J., 2001. Polyhydroxylated alkaloids-natural occurence and therapeutic applications. Phytochemistry, 56: 265-295. Go to original source... Go to PubMed...

This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International (CC BY NC 4.0), which permits non-comercial use, distribution, and reproduction in any medium, provided the original publication is properly cited. No use, distribution or reproduction is permitted which does not comply with these terms.