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2013 | 22 | 2 |

Tytuł artykułu

The response of rats to solanidine glycoalkaloids and trypsin inhibitor present in potato protein concentrates, and to glycoalkaloids provided by potato sprouts

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The effects of potato protein concentrates (PPC) differing in dietary solanidine glycoalkaloids (SGA) and trypsin inhibitor activity (TI), and of potato sprouts with differing SGA levels, were studied in rats. In Experiment 1, semi-purified isoprotein diets containing casein or one of six PPC contributing from 116 to 439 mg SGA · kg–1 and from 0.13 to 0.45 mg · g–1 of TI activity, were used. Weight gain was significantly greater on the diet containing PPC with low SGA and low TI than on PPC with high SGA and moderate TI contents, and also higher than on casein. Weight gain was also slightly depressed on diets with the highest TI activity. Substitution of PPC for casein resulted in lowering the pH of caecal digesta and increasing short-chain fatty acids concentration. Feeding diets with the greatest SGA content induced depression of protein and organic matter digestibility while diets with the greatest TI activity decreased protein digestibility but did not affect pancreas weight. In Experiment 2, a commercial rat diet, supplemented with increasing amounts of potato sprout meal providing SGA in the range from 0 to 300 mg · kg–1, was used. Neither growth performance, organ weights, caecal parameters, nor enzyme activities were affected by the diet. It is postulated that the less evident response of rats to SGA in the natural ingredient than in the semi-purified diet was due to the attenuating effect of more intensive bacterial fermentation. Potato trypsin inhibitor should be considered as an antinutritional factor in PPC; interactive effects of SGA and TI are presumable.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

22

Numer

2

Opis fizyczny

p.130-136,ref.

Twórcy

autor
  • The Kielanowski Institute of Animal Physiology and Nutrition, Polish Academy of Sciences, 05-110 Jablonna, Poland
  • The Kielanowski Institute of Animal Physiology and Nutrition, Polish Academy of Sciences, 05-110 Jablonna, Poland
autor
  • The Kielanowski Institute of Animal Physiology and Nutrition, Polish Academy of Sciences, 05-110 Jablonna, Poland
autor
  • The Kielanowski Institute of Animal Physiology and Nutrition, Polish Academy of Sciences, 05-110 Jablonna, Poland
autor
  • The Kielanowski Institute of Animal Physiology and Nutrition, Polish Academy of Sciences, 05-110 Jablonna, Poland

Bibliografia

  • AOAC, 2000. Association of Official Analytical Chemists, Official Methods of Analysis. 17th Edition. Arlington, VA
  • Bajko K., Szałaj W., Gabryelewicz A., Musiałowicz B., Worowski K., 1979. Effect of potato inhibitor of proteolytic enzymes on activity and morphology of the rat pancreas. Acta Physiol. Pol. 30, 365–371
  • Barszcz M., Taciak M., Skomiał J., 2011. A dose-response effects of tannic acid and protein on growth performance, caecal fermentation, colon morphology, and ß-glucuronidase activity of rats. J. Anim. Feed Sci. 20, 613–625
  • Bergers W.W.A., 1980. A rapid quantitative assay for solanidine glycoalkaloids in potatoes and industrial potato protein. Potato Res. 23, 105–110
  • Fernando P.S., Rose S.P., Mackenzie A.M., Silva S.S.P., 2011. Effects of diets containing potato protein or soya bean meal on the incidence of spontaneously-occuring subclinical necrotic enteritis and the physiological response in broiler chickens. Brit. Poultry Sci. 52, 106–114
  • Friedman M., Henika P.R., Mackey B.E., 1996. Feeding potato, tomato and eggplant alkaloids affects food consumption and body and liver weights in mice. J. Nutr. 126, 989–999
  • Jin Z., Yang Y.X., Choi J.Y., Shinde P.L., Yoon S.Y., Hahn T.-W., Lim H.T., Park Y., Hahm K.-S., Joo J.W., Chae B.J., 2008. Potato (Solanum tuberosum L. cv. Gogu valley) protein as a novel antimicrobial agent in weanling pigs J. Anim. Sci. 86, 1562–1572
  • Kakade M.L., Rackis J.J., McGhee J.E., Puski G., 1974. Determination of trypsin inhibitor activity of soy products: A collaborative analysis of an improved procedure. Cereal Chem. 51, 376–382
  • Kerr C.A., Goodband R.D., Smith J.W., Musser R.E., Bergstrom J.R., Nessmith W.B., Tokach M.D., Nelssen J.L., 1998. Evaluation of potato protein on the growth performance of early weaned pigs. J. Anim. Sci. 76, 3024–3033
  • Kim J.-Y., Park S.-C., Kim M.-H., Lim H.-T., Park Y., Hahm K.-S., 2005. Antimicrobial activity studies on a trypsin – chymotrypsin protease inhibitor obtained from potato. Biochem. Biophys. Res. Commun. 330, 921–927
  • Kuiper-Goodman T., Nawrot P.S., 1996. Solanine and Chaconine. In: Toxicological Reports on Alkaloids. http:// www.nopotato.com
  • Lee S.S., Liener I.E., Desborough S., 1985. Comparative effects of feeding a protease inhibitor enriched potato protein concentrate and soy flour to rats. Plant Food Hum. Nutr. 35, 9–19
  • Lynch B., Simon R.R., van Otterdijk F.M., Emmen H.H., Giuseppin M.L.F., Kemme-Kroonsberg C., 2012. Subchronic toxicity evaluation of potato protein isolates. Food Chem. Toxicol. 50, 373–384
  • Morita T., Kasaoka S., Kiriyama S., 2004. Physiological functions of resistant proteins: proteins and peptides regulating large bowel fermentation of indigestible polysaccharides. J. AOAC Int. 87, 792–796
  • Ohh S.H., Shinde P.L., Jin Z., Choi J.Y., Hahn T.-W., Lim H.T., Kim G.Y., Park Y., Hahm K.-S., Chae B. J., 2009. Potato (Solanum tuberosum L. cv. Gogu valley) protein as an antimicrobial agent in the diets of boilers. Poultry Sci. 88, 1227–1234
  • Palliyeguru M.W.C.D., Rose S.P., Mackenzie A.M., 2010. Effect of dietary protein concentrates on the incidence of subclinical necrotic enteritis and growth performance of broiler chickens. Poultry Sci. 89, 34–43
  • Park Y., Choi B.H., Kwak J.-S., Kang C.-W., Lim H.-T., Cheong H.- S., Hahm K.-S., 2005. Kunitz-type serine protease inhibitor from potato (Solanum tuberosum L. cv. Jopung). J. Agr. Food Chem. 53, 6491–6496
  • Pastuszewska B., Taciak M., Tuśnio A., Mazurczyk W., 2009. Variability in the composition of potato protein concentrates produced in different starch factories. A preliminary survey. Anim. Feed Sci. Tech. 154, 260–264
  • Taciak M., Pastuszewska B., 2007. Potato protein concentrate - nutritional value and effects on gut morphology, ileal digestibility, and caecal fermentation in rats. In: I. Ortigues-Marty, N. Miraux, W. Brand-Williams (Editors). Energy and Protein Metabolism and Nutrition. EAAP Publications No. 124, Vichy (France), pp. 627–628
  • Tuśnio A., Pastuszewska B., Święch E., Taciak M., 2011. Response of young pigs to feeding potato protein and potato fibre - nutritional, physiological and biochemical parameters. J. Anim. Feed Sci. 20, 361–378
  • Tuśnio A., Pastuszewska B., Taciak M., Mieczkowska A., Smulikowska S., 2013. Response of growing chicken to potato protein concentrates providing different amounts of solanidine glycoalkaloids and trypsin inhibitor. Arch. Geflügelk. 77, 51–58
  • Xie S., Jokumsen A., 1997. Replacement of fish meal by potato protein concentrate in diets for rainbow trout, Oncorhynchus mykiss (Walbaum): growth, feed utilization and body composition. Aquacult. Nutr. 3, 65–69

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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