The effect of diets supplemented with Coriandrum sativum seeds on carcass performance, immune system, blood metabolites, rumen parameters and meat quality of lambs

  • Hassan Khamisabadi Agricultural Research, Education and Extension Organization
  • Javad Ahmadpanah Agricultural Research, Education and Extension Organization
Palavras-chave: Sanjabi lambs; fattening period; Coriander seed; growth performance.

Resumo

A trial was conducted to investigate the effects of dietary Coriandrum sativum seeds on carcass performance, immune system, blood metabolites, rumen parameters and meat quality of Lambs. 16 Sanjabi lambs of 27 ± 5.1 kg during post-weaning (97 d of age) period were randomly selected. Four diets including 0, 1, 3, and 5% coriander seeds, replaced by Alfa alfa in the diet, were considered. A 30:70 alfalfa hay: concentrate diet for a period of time (97 to 187 d of age) was used. The results showed that feed intake was significantly increased by adding coriander seeds, linearly. There was no significant difference for apparent digestibility of crude protein, crude fat, neutral and acidic detergent fiber, crude ash, rumen fluid pH and ammonia nitrogen at 0, 2 and 4 h after feeding, Meat dry matter, ash, crude protein and fat, and the meat’s fatty acid profile (p > 0.05). Dietary coriander seeds had a significant effect on neutrophils, lymphocytes, monocytes and eosinophil’s (in days 7 and 14 of trial) and blood metabolites at the middle of trial. Obtained results suggested that supplementation of coriander seed may have limited effects on nutrient digestibility, ruminal parameters, meat quality, blood cells and metabolites.

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Referências

Abd El-Hady, A. M., El-Ghalid, O. A. H., & El-Raffa, A. M. (2013). Influnce of a herbal feed additives (digestarom) on productive performance and blood constituents of growing Rabbits. Egyptian Journal of Animal Production, 50(1), 27-37. Recovered from https://www.researchgate.net/publication/304461256_Influence_of_a_herbal_feed_additives_DigestaromR_on_productive_performance_and_blood_constituents_of_growing_rabbits_Egyptian

Agle, M., Hristov, A. N., Zaman, S., Schneider, C., Ndegwa, P. M., & Vaddella, V. K. (2010). Effect of dietary concen-trate on rumen fermentation, digestibility, and nitrogen losses in dairy cows. Journal of Dairy Science, 93(9), 4211-4222. doi: 10.3168/jds.2009-2977

Aguerre, M. J., Wattiaux, M. A., Powell, J. M., Broderick, G. A., & Arndt, C. (2011). Effect of forage-to-concentrate ratio in dairy cow diets on emission of me-thane, carbon dioxide, and ammonia, lactation perfor-mance and manure excretion. Journal of Dairy Science, 94(6), 3081-3093. doi: 10.3168/jds.2010-4011

Al-Zwein, D. H. Y. (2011). Effect of coriander seeds [Coriandrum sativum] on some haematological and immunological parameters of awassi ewes. Al-Anbar Journal of Veterinary Sciences, 4(1), 92-102. Recovered from https://www.iasj.net/iasj/article/37816

Anita, D., Sharad, A., Amanjot, K., & Ritu, M. (2014). Antioxidant profile of Coriandrum sativumm ethanolic extract. International Research Journal of Pharmacy, 5(3), 220-224. doi: 10.7897/2230-8407.050347

Association of Official Analytical Chemists [AOAC]. (2000). Official methods of analysis of the AOAC (18th ed.). Washington, DC: AOAC.

Benchaar, C., McAllister, T. A., & Chouinard, P. Y. (2008). Digestion, ruminal fermentation, ciliate protozoal populations, and milk production from dairy cows fed cinnamaldehyde, quebracho condensed tannin, or Yucca schidigera saponin extracts. Journal of Dairy Science, 91(12), 4765-4777. doi: 10.3168/jds.2008-1338

Broderick, G. A., & Kang, J. H. (1980). Automated simultaneous determination of ammonia and total amino acids in ruminal fluid and in vitro media. Journal of Dairy Science, 63(1), 64-75. doi: 10.3168/jds.s0022-0302(80)82888-8

Burdock, G. A., & Carabin, I. G. (2009). Safety assessment of coriander [Coriandrum sativum l.] essential oil as a food ingredient. Food and Chemical Toxicology, 47(1), 22-34. doi: 10.1016/j.fct.2008.11.006

Calsamiglia, S., Busquet, M., Cardozo, P. W., Castillejos, L., & Ferret, A. 2007. Invited review: essential oils as modifiers of rumen microbial fermentation. Journal of Dairy Science, 90(6), 2580-2595. doi: 10.3168/jds.2006-644

Cardozo, P. W., Calsamiglia, S., Ferret, A., & Kamel, C. (2005). Screening for effects of natural extracts at different pH on in vitro rumen fermentation of high-concentrate diet for beef cattle. Journal of Animal Science, 83(11), 2572-2579. doi: 10.2527/2005.83112572x

Chaves, A. V., Stanford, K., Dugan, M. E. R., Gibson, L. L., McAllister, T. A., Van Herk, F., & Benchaar, C. (2008). Effects of cinnamaldeheyde, garlic and juniper berry essential oils on rumen fermentation, blood metabolites, growth performance, and caracass characteristics of growing lambs. Livestock Science, 117, 215-224. doi: 10.1016/j.livsci.2007.12.013

Chitra, V., & Leelamma, S. (1997). Hypolipidemic effect of coriander seeds (Coriandrum sativum): mechanism of action. Plant Foods for Human Nutrition, 51, 167-172. doi: 10.1023/A:1007975430328

Çabuk, M. C., Alçiçek, A., Bozkurt, M., & Imre, N. (2003). Antimicrobial properties of the essential oils isolated from aromatic plants and using possibility as alternative feed additives. In Proceedings of the 11th National Animal Nutrition Congress (p. 184-187), Konya, Turkey.

El-Zaeddi, H., Martínez-Tomé, J., Calín-Sánchez, A., Burló, F., & Carbonell-Barrachina, A. A. (2016). Volatile composition of essential oils from different aromatic herbs grown in mediterranean regions of spain. Foods, 5(2), 41. doi 10.3390/foods5020041

Evans, J. D., & Martin, S. A. (2000). Effects of thymol on ruminal microorganisms. Current Microbiology, 41, 336-340. doi: 10.1007/s002840010145

Fakhraei, J., Siahkamari, Gh., Mansoori Yarahmadi, H., & Khamisabadi, H. (2019). Antimicrobial and Antioxidant effects of Coriandarm sativum extract on the quality and shelf life of lambs meat during the refrigerated storage. Scandinavian Journal of Laboratory Animal Science, 45, 1-7. Recovered from https://www.researchgate.net/publication/328064159.

Franz, C., Baser, K. H. C., & Windisch, W. (2010). Essential oils and aromatic plants in animal feeding. A European perspective. A review. Flavour and Fragrance Journal, 25(5), 327-340. doi: 10.1002/ffj.1967

Ganesan, P., Phaiphan, A., Murugan, Y., & Baharin, B. S. (2013). Comparative study of bioactive compounds in curry and coriander leaves: an update. Journal of Chemistry and Pharmacy Research, 5(11), 590-594. Recovered from https://www.researchgate.net/publication/279554918_Comparative_study_of_bioactive_

compounds_in_curry_and_coriander_leaves_An_update

Hassan, S. A., Hassan, K. M., & Al-Rubeii, A. (2010). Carcass characteristics of Karadi lambs as affect by different levels of dietary supplement of rumen degradable nitrogen fed with Nigella sativa. African Journal of Biotechnology, 9(27), 4295-4299. Recovered from file:///C:/Users/Adriana/AppData/Local/Temp/82648-Article%20Text-198914-1-10-20121025.pdf

Hosoda, K., Kuramoto, K., Eruden, B., Nishida, T., & Shioya, S. (2006). The effects of three herbs as feed supplements on blood metabolites, hormones, antioxidant activity, IgG concentration, and ruminal fermentation in holstein steers. Asian-Australian Journal of Animal Sciences, 19(1), 35-41. doi: 10.5713/ajas.2006.35

Ibrahim, M. (2013). Effect using of fenugreek seeds on some physiological and biochemical characters of blood in Damascus goat. Journal of Tikrit Agriculture Sciences, 13(3), 218-225. Recovered from https://www.iasj.net/iasj/download/c3728ddf5d12c2ab

Jahani-Azizabadi, H., Danesh Mesgaran, M., Vakili, A. R., Rezayazdi, K., & Hashemi, M. (2011). Effect of various medicinal plant essential oils obtained from semi-arid climate on rumen fermentation characteristics of a high forage diet using in vitro batch culture. African Journal of Microbiology Research, 5(27), 4812-4819. Recovered from https://academicjournals.org/journal/AJMR/article-full-text-pdf/6B67D7816122.pdf

Kalemba, D., & Kunicka, A. (2003). Antibacterial and antifungal properties of essential oils. Current Medicinal Chemistry, 10(10), 813-829. doi: 10.2174/0929867033457719

Khamisabadi, H., Kafilzadeh, F., & Charaien, B. (2016). Effect of thyme (Thymus vulgaris) or peppermint (Mentha piperita) on performance, digestibility and blood metabolites of fattening Sanjabi lambs. Biharean Biologist, 10(2), 118-122. Recovered from https://www.researchgate.net/publication/

_Effect_of_thyme_Thymus_vulgaris_or_peppermint_Mentha_piperita_on_performance_digestibility_and_blood_metabolites_of_fattening_Sanjabi_lambs

Malecky, M., & Broudiscou, L. P. (2009). Disappearance of nine monoterpenes exposed in vitro to the rumen microflora of dairy goats: effects of inoculum source, redox potential, and vancomycin. Journal of Animal Science, 87(4), 1366-1373. doi: doi.org/10.2527/jas.2008-1419

Mandal, S., & Mandal, M. (2015). Coriander (Coriandrum sativum L.) essential oil: Chemistry and biological activity. Asian Pacific Journal of Tropical Biomedicine, 5(6), 421-428. doi: 10.1016/j.apjtb.2015.04.001

Mansour, R. S., Adnan, K. N., & Nader, Y. A. (2013). The effect of different Nigella sativa L. seed [cake] concentrations on leukocytes counts and some serum immunological parameters in calves. Tikrit Journal of Pure Science, 18(3), 1813-1662.

Mohammed, S. F., Saeed, A. A., & Al-Jubori, O. S. (2018). Effect of daily supplement of coriander seeds powder on weight gain, rumen fermentation, digestion and some blood characteristics of Awassi ewes. Journal of Research in Ecology, 6(2), 1762-1770. Recovered from http://ecologyresearch.info/documents/

EC0570.pdf

Moriguchi, S., & Muraga, M. (1999). Vitamin E and immunity. Vitamins and Hormones, 59, 305-336. doi: 10.1016/s0083-6729(00)59011-6

Naseri, V., Hozhabri, F., & Kafilzadeh, F. (2013). Assessment of in vitro digestibility and fermentation parameters of alfalfa-based diet following direct incorporation of fenugreek seed (Trigonella foenum) and asparagus root (Asparagus offocinalis). Journal of Animal Physiology and Animal Nutrition, 97(4), 773-785. doi: 10.1111/j.1439-0396.2012.01318.x

Nasser, A. K., Shams Al-dain, Q. Z., Abou, N. Y., & Mahmood, A. B. (2013). Using fenugreek seeds powder as a feed additive in rations of Sharabi local cows and its effect on some hematological and biochemical parameters. Iraqi Journal of Veterinary Sciences, 27(1), 13-19. doi: 10.33899/ijvs.2013.82854

National Research Council [NRC]. (2007). Nutrient requirements of small ruminants: sheep, goats cervids, and new world camelids (6th ed.). Washington, DC: National Academy Press.

Nute, G. R., Richardson, R. I., Wood, J. D., Hughes, S. I., Wilkinson, R. G., Cooper, S. L., & Sinclair, L. A. (2007). Effect of dietary oil source on the flavour and the colour and lipid stability of lamb meat. Meat Science, 77, 547-555. doi 10.1016/j.meatsci.2007.05.003

Odhaib, K. J., Adeyeme, K. D., & Sazili, A. Q. (2018). Carcass traits, fatty acid composition, gene expression, oxidative stability and quality attributes of different muscles in Dorper lambs fed Nigella sativa seeds, Rosmarinus officinalis leaves and their combination. Asian-Australasian Journal of Animal Science, 31(8), 1345-1357. doi: 10.5713/ajas.17.0468

Oganesyan, E., Nersesyan, Z., & Parkhomenko, A. Y. (2007). Chemical composition of the above-ground part of Coriandrum sativum. Pharmaceutical Chemistry Journal, 41(3), 149-153. doi: 10.1007/s11094-007-0033-2

O’Grady, M. N., Maher, M., Troy, D. J., Moloney, A. P., & Kerry, J. P. (2006). An assessment of dietary supplementation with tea catechins and rosemary extract on the quality of fresh beef. Meat Science, 73(1), 132-143. doi: 10.1016/j.meatsci.2005.11.008

Özdogan, M., O., Önenç, S. S., & Önenç, A. (2011). Fattening performance, blood parameters and slaughter traits of Karya lambs consuming blend of essential oil compounds. African Journal of Biotechnology, 10(34), 6663-6669. Recovered from https://www.researchgate.net/publication/235798382_

Fattening_performance_blood_parameters_and_slaughter_traits_of_Karya_lambs_consuming_blend_of_essential_oil_compounds

Patra, A. K., & Saxena, J. (2009). Dietary phytochemicals as rumen modifiers: a review of the effects on microbial populations. Antonie Van Leeuwenhoek, 96(4), 363-375. doi: 10.1007/s10482-009-9364-1

Seifzadeh, S., Farzad, M. A., Hossein, A., Jamal, S., & Bahman, N. (2016). The effects of a medical plant mix and probiotic on performance and health status of suck-ling Holstein calves. Italian Journal of Animal Science, 16(1), 44-51. doi: 10.1080/1828051x.2016.1249421

Shahabi, H., & Chashnidel, Y. (2014). The effects of canola oil and oregano essential oil on performance, blood parameters, and chemical carcass compositions of Dalagh fattening lambs. Journal of Ruminant Research, 2(1), 1-8.

Smeti, S., Atti, N., Mahouachi, M., & Munoz, F. (2013). Use of dietary rosemary (Rosmarinus officinalis L.) essential oils to increase the shelf life of Barbarine light lamb meat. Small Ruminant Research, 113(s 2-3), 340-345. doi: 10.1016/j.smallrumres.2013.04.001

Smeti, S., Hajji, H., Mekki, I., Mahouachi, M., & Atti, N. (2017). Effects of dose and administration form of rosemary essential oils on meat quality and fatty acid profile of lamb. Small Ruminant Research, 158, 62-68. doi: 10.1016/j.smallrumres.2017.10.007

Statistical Analysis System [SAS]. (2003). MedCalc Statistical Software: version 4.9. Cary, NC: SAS institute Inc.

Vasta, V., Aouadi, D., Brogna, D. M. R., Scerra, M., Luciano, G., Priolo, A., & Ben Salem, H. (2013). Effect of the dietary supplementation of essential oils from rosemary and artemisia on muscle fatty acids and volatile compound profiles in Barbarine lambs. Meat Science, 95(2), 235-241. doi: 10.1016/j.meatsci.

12.021

Yang, W. Z., Ametaj, B. N., Benchaar, C., & Beauchemin, K. A. (2010). Dose response to cinnamaldehyde supplementation in growing beef heifers: ruminal and intestinal digestion. Journal of Animal Science, 88(2), 680-688. doi: 10.2527/jas.2008-1652

Yeung, E. C., & Bowra, S. (2011). Embryo and endosperm development in coriander (Coriandrum sativum). Botany, 89(4), 263-273. doi: 10.1139/b11-013

Yusuf, L., Goh, Y. M., Samsudin, A. A., Alimon, A. R. & Sazili, A. Q. (2014). Growth performance, carcass characteristics and meat yield of boer goats fed diets containing leaves or whole parts of Andrographis paniculata. Asian Australasian Journal of Animal Science, 27(4), 503-510. doi: 10.5713/ajas.2013.13533

Zhang, K. Y., Yan, F., Keen, C. A., & Waldroup, P. W. (2005). Evaluation of microencapsulated essential oils and organic acids in diets for broiler chickens. International Journal of Poultry Science, 4(9), 612-619. doi: 10.3923/ijps.2005.612.619

Publicado
2020-11-06
Como Citar
Khamisabadi, H., & Ahmadpanah, J. (2020). The effect of diets supplemented with Coriandrum sativum seeds on carcass performance, immune system, blood metabolites, rumen parameters and meat quality of lambs. Acta Scientiarum. Animal Sciences, 43(1), e52048. https://doi.org/10.4025/actascianimsci.v43i1.52048
Seção
Nutrição de Ruminantes

0.9
2019CiteScore
 
 
29th percentile
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