The Effectiveness of Ultrasound Treatment on the Germination Stimulation of Barley Seed and its Alpha-Amylase Activity
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The Effectiveness of Ultrasound Treatment on the Germination Stimulation of Barley Seed and its Alpha-Amylase Activity

Authors: M. Yaldagard, S.A. Mortazavi, F. Tabatabaie

Abstract:

In the present study, the effects of ultrasound as emerging technology were investigated on germination stimulation, amount of alpha-amylase activity on dry barley seeds before steeping stage of malting process. All experiments were carried out at 20 KHz on the ultrasonic generator in 3 different ultrasonic intensities (20, 60 and 100% setting from total power of device) and time (5, 10 and 15 min) at constant temperature (30C). For determining the effects of these parameters on enzyme the Fuwa method assay based on the decreased staining value of blue starch–iodine complexes employed for measurement an activity. The results of these assays were analyzed by Qualitek4 software using the Taguchi statistical method to evaluate the factor-s effects on enzyme activity. It has been found that when malting barley is irradiated with an ultrasonic power, a stimulating effect occurs as to the enzyme activity.

Keywords: ultrasound, alpha-amylase activity, stimulationand Taguchi statistical method.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1329545

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[1] G. Muralikrishna, M. Nirmala, "Cereal alpha-amylases-an overview", Carbo. Poly. 60, 163-173, 2005.
[2] D.Tull, B. A. Phillipson, B. Kramh├╣ft, S. Knudsen, O. Olsen and B. Svensson, " Enhanced amylolytic activity in germinating barley through synthesis of a bacterial alpha-amylase" , Journal of Cereal Science,37, 71-80,2003.
[3] L.Taiz and J. E. Starks, "Gibberellic Acid enhancement of DNA turnover in barley aleurone cells", Plant Physiol, 60,182-189, 1977.
[4] K. C. Eastwell and M. S. Spencer, "Modes of ethylene action in the release of amylase from barley aleurone layers", Plant Physiol, 67, 563- 567, 1982.
[5] M. J. W. Povey and T. J. Mason, "Ultrasound in food processing", International Thomson Publishing I T P pp 115-125, 1998.
[6] A.G, Gordon, The use of ultrasound in agriculture.Ultrason.1(2),pp 70-77, 1963.
[7] M. Toma, M. Vinatoru, L. Paniwnyk , T.J. Mason, "investigation of the effects of ultrasound on vegetal tissues during solvent extraction", ultrason. sonoch.8,137-142,2001.
[8] J.D Shors, D. R. Soll, K. J. Daniels and D.P.Gibson,method for enhancing germination, United state application publication,patent No.5,950,362,1999.
[9] S. Shimomura, The effects of ultrasonic irradiation on sprouting radish seed, Ultrasonics Symposium, Proceedings., IEEE , page(s) vol.3, 1665- 1667, 1990.
[9] A. Aladjadjiyan, ,Increasing carrot seeds (Daucus carota L.), cv. Nantes, viability through ultrasound treatment. Bulg. J. Agric. Sci., 8, 469-472, 2002.
[10] S.A. Hebling and W.R. da. Silva, Effects of low intensity ultrasound on the germination of corn seeds (Zea mays L.) under different water availabilities. Sci. agric. (Piracicaba, Braz.),52(3) p.514-520,1995.
[11] P. Weinberger and M. Measures, The effect of two audible sound frequencies on the germination and growth of a spring and winter wheat, Can. J. Bot. 46(9), 1151-1158 ,1968.
[12] A.M. Osman, " The advantages of using natural substrate-based methods in assessing the roles and synergistic and competitive intractions of barley malt starch-degrading enzymes", J. Inst. Brew. 108(2), 204-214, 2002.
[13] R. Gupta, P. Gigras, H. Mohapatra, G.V. Kumar, B. Chauhan, "Microbial a-amylases: a biotechnological perspective", Process Biochem. 38, 1599- /1616, 2003.
[14] Z. Xiao, R. Storms, A. Tsang, "A quantitative starch-iodine method for measuring alpha-amylase and glucoamylase activities", Analytical Biochemistry 351,146-148, 2006.
[15] Suslick K.S.. Sonochemistry. Science, 247, 1439-1445, 1990.