CORRELATION BETWEEN CONDENSED TANNIN AND FIBER CONTENT OF IRRADIATED POMEGRANATE SEED

  • Mohsen Zarei M.sc. graduate of Razi University, Kermanshah, Iran
  • Parvin Shawrang

Sažetak


Electron beam and gamma ray irradiation exposed to pomegranate seed at doses of 5, 10, 15 and 20 kGy to study the relationships between their condensed tannin, NDF, ADF content, in vitro rumen methane production and protozoa population. Data were analyzed by using the GLM procedure. Orthogonal contrast showed that gamma irradiation significantly increased NDF content of pomegranate seed as compared to control, however electron beam irradiation did not significantly affect NDF%. Condensed tannin content of pomegranate seed was significantly decrease by gamma and electron beam irradiation compared to control. Our results showed that there was a negative correlation between methane production and NDF content of gamma irradiated pomegranate seed. This means that the methane production of gamma irradiated pomegranate seed decreased with increasing NDF%. Therefor it seems that in addition to tannin, the reduction of CH4 production was affected by cell wall content. Generally, cell wall contents may be more important than tannins in limiting microbial and in vitro fermentation.

Biografije autora

Mohsen Zarei, M.sc. graduate of Razi University, Kermanshah, Iran
Department of Animal Science, Razi University, Kermanshah, Iran
Parvin Shawrang

Agricultural Research School, Nuclear Science and Technology Research Institute, Atomic Energy Organization of Iran, Karaj, Iran

Reference

Abreu A, Carulla JE, Lascano CE, Diaz TE, Kreuzer M, Hess HD. (2004) Effects of Sapindus saponaria fruits on rumen fermentation and duodenal nitrogen flow of sheep fed a tropical grass diet with and without legume. J Anim Sci. 82:1392-1400.

Animut G, Puchala R, Goetsch AL, Patra AK, Sahlu T, Varel VH, Wells J. (2008) Methane emission by goats consuming diets with different levels of condensed tannins from lespedeza. Anim Feed Sci Technol. 144:212-227.

Baker SK. (1999) Rumen methanogens and inhibition of methanogenesis. Aust J Agric Res. 50:1293-1298.

Behgar M, Ghasemi S, Naserian A, Borzoie A, Fatollahi H. (2011) Gamma radiation effects on phenolics, antioxidants activity and in vitro digestion of pistachio (Pistachia vera) hull. Radiat Phys Chem. 80:963-967.

Benchaar C, McAllister TA, Chouinard PY. (2008) Digestion ruminal fermentation ciliate protozoal populations and milk production from dairy cows fed cinnamaldehyde quebracho condensed tannin or Yucca schidigera saponin extract. J Dairy Sci. 91:4765-4777.

Bhat R, Sridhar KR. (2008) Nutritional quality evaluation of electron beam- irradiated lotus (Nelumbo nucifera) seeds. Food Chem. 107:174-184.

Bhatta R, Uyeno Y, Tajima K, Takenaka A, Yabumoto Y, Nonaka I, Enishi O, Kurihara M. (2009) Difference in the nature of tannins on in vitro ruminal methane and volatile fatty acid production and on methanogenic archaea and protozoal populations. J Dairy Sci. 92:5512-5522.

Charlesby A. (1981) Crosslinking and degradation of polymers Radiation Physics and Chemistry. 18:59-66.

Chesson A, Stewart CS, Wallace RJ. (1982) Influence of plant phenolic acids on growth and cellulolytic activity of rumen bacteria. Appl Environ Microbiol. 44:597-603.

De Toledo, T.C.F., Canniatti-Brazaca, S.G., Arthur, V., Piedade, S.M.S. (2007) Effects of gamma radiation on total phenolics, trypsin and tannin inhibitors in soybean grains. Radiat. Phys. Chem. 76, 1653–1656.

Dehority, B. A. (1993) Laboratory Manual for Classification and Morphology of Rumen Cilate Protozoa. CRC Press, Boca Raton, FL.

Dehority, B. A. (1984) Evaluation of subsampling and fixation procedures used for counting rumen protozoa. Appl. Microbiol. 48:182–185.

Dehority, B. A. (1998) Generation times of Epidinium caudatum and Entodinium caudatum determined in vitro by transferring at various time intervals. J. Anim. Sci. 76:1189–1196.

Dela Rosa AM, Dela Mines AS, Banzon RB, Simbul Nuguid ZF. (1983) Radiation pretreatment of cellulose for energy production. Radiat Phys Chem. 22:861.

Demeyer, D., De Meulemeester, M., De Graeve, K., Gupta, BW. (1988) Effect of fungal treatment on nutritive value of straw. Med. Fac. Landbouww. Rijksuniv. Gent. 53, 1811–1819.

Ebrahimi SR, Nikkhah A, Sadeghi AA, Raisali G. (2009) Chemical composition secondary compounds ruminal degradation and in vitro crude protein digestibility of gamma irradiated canola seed. Anim Feed Sci Technol. 151:184-193.

Ebrahimi-Mahmoudabad SR, Taghinejad-Roudbaneh M. (2011) Investigation of electron beam irradiation effects on anti-nutritional factors, chemical composition and digestion kinetics of whole cottonseed, soybean and canola seeds. Radi Phys Chem. 80:1441-1447.

El-Niely, H.F.G. (2007) Effect of radiation processing on antinutrients, in vitro protein digestibility and protein efficiency ratio bioassay of legume seeds. Radiat. Phys. Chem. 76, 1050–1057.

Fievez, V., O. J. Babayemi, and D. Demeyer. (2005) Estimation of direct and indirect gas production in syringes: a tool to estimate short chain fatty acid production requiring minimal laboratory facilities. Anim Feed Sci. Technol., 123 – 124: 197-210.

Galyean, M. L. (1997) Laboratory procedure in animal nutrition research. Texas A&M Research and Extension Center, Amarillo. USA.

Hess HD, Beuret RA, Lotscher M, Hindrichsen IK, Machmuller A, Carulla JE, Lascano CE, Kreuzer M. (2004) Ruminal fermentation methanogenesis and nitrogen utilization of sheep receiving tropical grass hay-concentrate diets offered with Sapindus saponaria fruits and Cratylia argentea foliage. Anim Sci. 79:177-189.

Hess HD, Monsalve LM, Lascano CE, Carulla JE, Díaz TE, Kreuzer M. (2003) Supplementation of a tropical grass diet with forage legumes and Sapindus saponaria fruits: effects on in vitro ruminal nitrogen turnover and methanogenesis. Aust J Agric Res. 54:703-713.

Holm, N.W., Berry, R.J. (1970) Manual on Radiation Dosimetry. Dekker, New York, USA.

Huang XD, Liang JB, Tan HY, Yahya R, Ho YW. (2011) Effects of Leucaena condensed tannins of differing molecular weights on in vitro CH4 production. Anim Feed Sci Technol. 166,167:373–376.

Jackson FS, Barry TN, Lascano C, Palmer B. (1996) The extractable and bound condensed tannin content of leaves from tropical tree. J Sci Food Agric. 71:103-110.

Jayanegara A, Togtokhbayar N, Makkar HPS, Becker K. (2009) Tannins determined by various methods as predictors of methane production reduction potential of plants by an in vitro rumen fermentation system. Anim Feed Sci Technol. 150:230-237.

Johnson, K.A. & Johnson, D.E. (1995) Methane emissions from cattle. J. Anim. Sci. 73: 2483–2492.

Kamalak A, Canbolat O, Gurbuz Y, Ozay O, Ozkan CO, Sakarya M. (2004) Chemical composition and in vitro gas production characteristics of several tannin containing tree leaves. Livest Res Rural Dev. 16:6. Available from http://www.lrrd.orgS/.

Kamra DN, Agarwal N, Chaudhary LC. (2006) Inhibition of ruminal methanogenesis by tropical plants containing secondary compounds. Int Congress Ser. 1293:156-163.

Kamra, D.N., Sawal, R.K., Pathak, N.N., Kewalramani, N., Agarwal, N. (1991) Diurnal variation in ciliate protozoa in the rumen of black buck (Antilope cervicapra) fed green forage. Lett. Appl. Microbiol. 13, 165–167.

Khan F, Ahmad SR, Kronfli E. (2006) c-Radiation induced changes in the physical and chemical properties of lignocellulose. Biomacromolecules. 7:2303-2309.

Khosravi F, Fathi Nasri MH, Modaresi SJ, Fazaeli Rad A. (2012) [Effect of electron beam irradiation on phenolic compound content and rumen degradability parameters of pomegranate seed pulp]. In: Proceedings of National congress of animal and poultry science in north of country: p 2491-2495.

Larbi A, Smith JW, Kurdi IO, Adekunle IO, Raji AM, Lapido DO. (1998) Chemical composition, rumen degradation and gas production characteristics of some multipurpose fodder tree shrubs during wet and dry seasons in the humid tropics. Anim Feed Sci Technol. 72:81-96.

Makkar, H.P.S., Francis, G. & Becker, K. (2007) Bioactivity of phytochemicals in some lesser-known plants and their effects and potential applications in livestock and aquaculture production systems. Animal. 1: 1371–1391.

Mueller-Harvey I. (2006) Unravelling the conundrum of tannins in animal nutrition and health. J Sci Food Agri. 86:2010-2037.

Nasri S, Ben Salem H. (2012) Effect of oral administration of Agave americana or Quillaja saponaria extracts on digestion and growth of Barbarine female lamb. Livest Sci. 147:59-65.

Ndlovu LR, Nherera FV. (1997) Chemical composition and relationship to in vitro gas production of Zimbabwean browsable indigenous tree species. Anim Feed Sci Technol. 69:121-129.

Nsahlai, I.V., Siaw, D.E.K.A., Osuji, P.O. (1994) The relationship between gas production and chemical composition of 23 browses of the genus Sesbania. J. Sci. Food Agric. 65, 13–20.

Patra AK, Kamra DN, Agarwal N. (2006) Effect of plant extracts on in vitro methanogenesis, enzyme activities and fermentation of feed in rumen liquor of buffalo. Anim Feed Sci Technol. 128:276-291.

Patra AK, Saxena J. (2011) Exploitation of dietary tannins to improve rumen metabolism and ruminant nutrition. J Sci Food Agric. 91:24-37.

Pekel N, Yoshii F, Kume T, Guven O. (2004) Radiation crosslinking of biodegradable hydroxypropylmethylcellulose. Carbohyd Polym. 55:139-147.

Pellikaan WF, Stringano E, Leenaars J, Bongers DJGM, van Laar-van Schuppen S, Plant J, Mueller-Harvey I. (2011) Evaluating effects of tannins on extent and rate of in vitro gas and CH4 production using an automated pressure evaluation system (APES). Anim Feed Sci Technol. 166,167:377-390.

Polvi J, Nordlund K. (2014) Low-energy irradiation effects in cellulose. J Appl Phys. 115:1-8.

Raghuvansi SKS, Tripathi MK, Mishr AS, Chaturvedi OH, Prasad R, Saraswat BL, Jakhmola RC. (2007) Feed digestion, rumen fermentation and blood biochemical constituents in Malpura rams fed a complete feed-block diet with the inclusion of tree leaves. Anim Feed Sci Technol. 71:21-30.

Riley RA. (1994) Free radicals in biology: oxidative stress and the effects of ionizing radiation. Inter J Radi Bio. 65:27-33.

Roth, S.; Steingasss, H.; Drochner, W. Minderung von. (2002) Methane emission und optimierung der N-Versor-gung bei Wiederkauern durch die Behandlung von Futtermitteln mit Tanninen. In: R. Bocker (ed.), 34 Hohenheimer Umwelttagu. Verlag Gunter Heimbach, Stuttgart, Germany, pp. 181–186.

Shawrang, P., Sadeghi, A.A., Behgar, M., Zareshahi, H., Shahhoseini, G. (2011) Study of chemical compositions, anti-nutritional contents and digestibility of electron beam irradiated sorghum grains. Food Chem. 125, 376–379.

Tahan GH, Fathi Nasri MH, Riasi A, Behgar M, Farhang far H. (2012) Effect of electron radiation on degradation characteristics, ruminal and post ruminal DM and CP digestion of some plant protein resources. Iranian J Anim Sci Res. 3:422-434.

Topuz, A., Ozdemir, F. (2004) Influences of gamma irradiation and storage on the capsaicinoids of sun-dried and dehydrated paprika. Food. 86, 509–515.

Variyar, P.S., Bandyopadhyay, C., Thomas, P. (2003) Effect of gamma-irradiation on the phenolic acids of some Indian spices. Int. J. Food Sci. Technol. 1998; 33, 533–537.

Waghorn GC, McNabb WC. (2003) Consequences of plant phenolic compounds for productivity and health of ruminants. Proc Nutr Soc. 62:383-392.

Waghorn GC, Tavendale MH, Woodfield DR. (2002) Methanogenesis from forages fed to sheep. Proc N Z Grassland Assoc. 64:167-171.

Wallace RJ, McEwan NR, McIntosh FM, Teferedegne B, Newbold CJ. (2002) Natural products as manipulators of rumen fermentation. Asia Aust J Anim Sci. 15:1458-1468.

Woodward, S.L., Waghorn, G.C., Lassey, K.R., Laboyrie, P.G. (2002) Does feeding sulla (Hedysarum coronarium) reduce methane emissions from dairy cows. Proc. N. Z. Soc. Anim. Prod. 62, 227–230.

Woodward, S.L., Waghorn, G.C., Ulyatt, M.J., Lassey, K.R. (2001) Early indications that feeding Lotus will reduce methane emissions from ruminants. Proc. N. Z. Soc. Anim. Prod. 61, 23–26.

Yanez Ruiz DR, Moumen A, Martin Garcia AI, Molina Alcaide E. (2004) Ruminal fermentation and degradation patterns, protozoa population and urinary purine derivatives excretion in goats and wethers fed diets based on two-stage olive cake: effect of PEG supply. J Anim Sci. 85:2023-2032.

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