Reproductive parameters and weight gain of roosters fed with waste oil from olive culture

  • Carolina Oreques de Oliveira Universidade Federal de Pelotas https://orcid.org/0000-0002-1949-8457
  • Amauri Telles Tavares Universidade Federal de Pelotas
  • Júlia Parada Nobre Castro Universidade Federal de Pelotas
  • Sérgio Leandro Costa de Ávila Universidade Federal de Pelotas
  • Stela Mari Meneghello Gheller Universidade Federal de Pelotas https://orcid.org/0000-0002-6466-9702
  • Sara Lorandi Soares Universidade Federal de Pelotas
  • Fernanda Medeiros Gonçalves Universidade Federal de Pelotas
  • Denise Calisto Bongalhardo Universidade Federal de Pelotas
Palavras-chave: broiler breeders; industrial waste; males; olive trees; semen.

Resumo

Um óleo usado da indústria de extração de azeite foi usado em vez do óleo de soja na dieta de galos pesados, a fim de avaliar os parâmetros reprodutivos dos animais. Um total de 40 galos foram alojados individualmente em boxes de 1,2 m². Duas dietas experimentais foram utilizadas: dieta controle, à base de milho, farelo de soja e óleo de soja, e dieta teste (OR), onde o óleo de soja foi totalmente substituído pelo óleo residual. Para verificar o ganho de peso e o consumo de ração, os animais foram pesados ​​individualmente, semanalmente. Sete coletas de sêmen foram realizadas a cada 15 dias. As variáveis ​​reprodutivas analisadas foram volume seminal, motilidade, concentração e morfologia espermática.  Não houve diferença estatística (p>0,05) entre os tratamentos nos diferentes períodos de coleta para as variáveis ​​volume seminal, motilidade e concentração espermática. Houve diferença significativa entre os tratamentos para peso corporal nos períodos 3 (p=0.04) e 7 (p=0.04). Diferenças estatísticas (p=0.01) também foram observadas entre os tratamentos para morfologia espermática anormal. Entre os períodos de coleta, observou-se diferença estatística para motilidade (p=0.00) e concentração espermática (p=0.01). A substituição total do óleo de soja pelo óleo residual da extração do azeite de oliva na dieta de galos pesados ​​jovens não afeta o volume, a motilidade e a concentração espermática, reduz defeitos na cauda do espermatozoide e promove o melhor controle de ganho de peso.

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Referências

Al-ani, N. K. H. (2013). Protective influence of olive oil on reproductive parameters in male rat treated with cadmium. Global Journal of Bio-Science and Biotechnology, 2(4), 500-505.

Alqaisi, O., Ndambi, O.A. & Williams, R.B. (2017). Time series livestock diet optimization: cost-effective broiler feed substitution using the commodity price spread approach. Agricultural and and Food Economics, 5(25). DOI: https://doi.org/10.1186/s40100-017-0094-9

An-im, N., Kirkwood, M., Techakumphu, M., & Tantasuparuk, W. (2011). Lipid profiles of sperm and seminal plasma from boars having normal or low sperm motility. Theriogenology, 75(5), 897-903. DOI: https://doi.org/10.1016/j.theriogenology.2010.10.032

Banihani, S. A. (2017). Semen quality as affected by olive oil. International Journal of Food Properties, 20(2), 1901-1906. DOI: https://doi.org/10.1080/10942912.2017.1357044

Bongalhardo, D., Dionello, N. J., Cardellino, R. A., & Braccini Neto, J. (1994). Repetibilidade e correlações fenotípicas do caráter volume de sêmen de galos Withe Leghorn. Revista da Sociedade Brasileira de Zootecnia, 23(6), 1002-1007. DOI: https://doi.org/10.1590/S1516-35982000000500009

Bongalhardo, D. C. (2013). Production and preservation of rooster semen. Revista Brasileira de Reprodução Animal, 37(2), 131-135.

Bootwalla, S. M., & Miles, R. D. (1992). Development of diluents for domestic fowl semen. World's Poultry Science Journal, 48(2), 121-128. DOI: https://doi.org/10.1079/WPS19920012

Borges, C. A. Q., Rostagno, H. S., Silva, J. H. V., Albino, L. F. T., Torres, C. A. A., Jordão Filho, J., & Ribeiro, M. L. G. (2006). Protein requirements and carcass composition of male broiler breeders from 27 to 61 weeks. Revista da Sociedade Brasileira de Zootecnia, 35(5), 1971-1977. DOI: https://doi.org/10.1590/S1516-35982006000700013

Burrows, W. H., & Quinn, J. P. (1937). The collection of spermatozoa from the domestic fowl and turkey. Poultry Science, 16(1), 19-24. DOI: https://doi.org/10.3382/ps.0160019

Cardoso, T. F., Varela Junior, A. S., Silva, E. F., Vilela, J., Hartmann, A., Jardim, R. D., ... Corcini, C. (2014). Influence of mineral, olive or sunflower oils on male reproductive parameters in vitro – the wild rodent Calomys laucha. Andrologia, 46(7), 722-725. DOI: https://doi.org/10.1111/and.12138

Cioffi, G., Pesca, M. S., Caprariis, P., Braca, A., Severino, L., & Tommasi, N. (2010). Phenolic compounds in olive oil and olive pomace from Cilento (Campania, Italy) and their antioxidant activity. Food Chemistry, 121(1), 105-111. DOI: https://doi.org/10.1016/j.foodchem.2009.12.013

D’amato, R., Proietti, P., Nasini, L., Del Buono, D., Tedeschini, E., & Businelli, D. (2014). Increase in the selenium content of extra virgin olive oil: quantitative and qualitative implications. Grasas & Aceites, 65(2), 1-9. DOI: https://doi.org/10.3989/gya.097313

Daramola, J. O., Adekunle, E. O., Onagbesan, O. M., Oke, O. E., Ladokun, A. O., Abiona, J. A., … Adeleke, M. A. (2016). Protective effects of fruit-juices on sperm viability of West African Dwarf goat bucks during cryopreservation. Animal Reproduction, 13(1), 7-13. DOI: https://doi.org/10.4322/1984-3143-AR726

Dermeche, S., Nadour, M., Larroche, C., Moulti-mati, F., & Michaud, P. (2013). Olive mill wastes: Biochemical characterizations and valorization strategies. Process Biochemistry, 48(10), 1532-1552. DOI: https://doi.org/10.1016/j.procbio.2013.07.010

Djermanovic, V., Mitrovic, S., & Djekic, V. (2013). Rooster body weight influence on the reproductive performance of the broilerparents. Biotechnology in Animal Husbandry, 29(1), 83-91. DOI: https://doi.org/10.2298/BAH1301083D

El-kholy, T. A. F., Al-abbadi, H. A., Qahwaji, D., Al-ghamdi, A. K., Shelat, V. G., Sobhy, H. M., & Hilal, M. A. (2015). Ameliorating effect of olive oil on fertility of male rats fed on genetically modified soya bean. Food & Nutrition Research, 59(1), 1-6. DOI: https://doi.org/10.3402/fnr.v59.27758

Feng, Y., Ding, Y., Liu, J., Tian, Y., Yang, Y., Guan, S., & Zhang, C. (2015). Effects of dietary omega-3/omega-6 fatty acid ratios on reproduction in the young breeder rooster. BMC Veterinary Research, 11(73), 1-7. DOI: https://doi.org/10.1186/s12917-015-0394-9

Garrido, M., Gonzáles-flores, D., Marchena, A. M., Prior, E., García-Parra, J., Barriga, C., & Moratinos, A. B. R. (2012). A lycopene-enriched virgin olive oil enhances antioxidant status in humans. Journal of the Science of Food and Agriculture, 93(8), 1820-1826. DOI: https://doi.org/10.1002/jsfa.5972

Hall, P. F., Irby, D. C., & Kretser, D. M. (1969). Conversion of cholesterol to androgens by rat tests: Comparison of interstitial cells and seminiferous tubules. Endocrinology, 84(3), 488-496. DOI: https://doi.org/10.1210/endo-84-3-488

Hocking, P. P., & Bernard, R. (2000). Effects of the age of male and female broiler breeders on sexual behaviour, fertility and hatchability of eggs. British Poultry Science, 41(3), 370-388. DOI: https://doi.org/10.1080/713654925

Kacel, A., & Iguer-ouada, M. (2018). Effects of olive oil dietary supplementation on sperm quality and seminal biochemical parameters in rooster. Journal of Animal Physiology and Animal Nutrition, 102(6), 1608-1614. DOI: https://doi.org/10.1111/jpn.12983

Karaca, A. G., Parker, H. M., & Mcdaniel, C. D. (2002). Elevated body temperature directly contributes to heat stress infertility of broiler breeder males. Poultry Science, 81(12), 1892-1897. DOI: https://doi.org/10.1093/ps/81.12.1892

Khdair, A. I., Abu-rumman, G., & Khdair, S. I. (2019). Pollution estimation from olive mills wastewater in Jordan. Heliyon, 5(8), 1-6. DOI: https://doi.org/10.1016/j.heliyon.2019.e02386

Lancellotti, T. E. S., Boarelli, P. V., Romero, A. A., Funes, A. K., Cid-Barria, M., Cabrillana, M. E., ... Fornés, M. W. (2013). Semen quality and sperm function loss by hypercholesterolemic diet was recovered by addition of olive oil to diet in rabbit. Plos One, 8(1), 1-8. DOI: https://doi.org/10.1371/journal.pone.0052386

Lara, L. J. C. (2015). Reprodução nas aves: desafios do manejo e da nutrição. Revista Brasileira de Reprodução Animal, 39(1), 85-90.

Lara, L. J., & Rostagno, M. A. (2013). Impact of heat stress on poultry production. Animals, 3(2), 356-369. DOI: https://doi.org/10.3390/ani3020356

Malik, A., Haron, A. W., Yusoff, R., Nesa, M., Bukar, M., & Kasin, A. (2013). Evaluation of the ejaculate quality of the red jungle fowl, domestic chicken and bantam chicken in Malaysia. Turkish Journal of Veterinary and Animal Science, 37(5), 564-568. DOI: https://doi.org/10.3906/vet-1107-26

Mangiagalli, M. G., Martino, P. A., Smajlovic, T., Cavalchini, L. G., & Marelli, S. P. (2010). Effect of lycopene on semen quality, fertility and native immunity of broiler breeder. British Poultry Science, 51(1), 152-157. DOI: https://doi.org/10.1080/00071660903401540

Mendoza, M. F., Gordillo, C. M., Expósito, J. M., Casas, J. S., Cano, M. M., Vertedor, D. M., & Baltasar, M. N. F. (2013). Chemical composition of virgin olive oils according to the ripening in olives. Food Chemistry, 141(3), 2575-2581. DOI: http://dx.doi.org/10.1016/j.foodchem.2013.05.074

Moyle, J. R., Yoho, D. E., Whipple, S. M., Donoghue, A. M., & Bramwell, R. K. (2012). Sperm production and testicular development of broiler breeder males reared on shortened growth cycles. Journal of Applied Poultry Research, 21(1), 88-94. DOI: https://doi.org/10.3382/japr.2011-00363

Nunes, H., Zanine, A. M., Machado, T. M. M., & Carvalho, F. C. (2007). Foods Alternative in diet of sheep. Archivos Latinoamericanos de Producción Animal, 15(4), 141-151.

Rosa, A. P., Stefanello, C., & Ferrufino, R. (2012). Influence of total or partial withdrawal of the crest on the reproductive status of broiler males. Revista Portuguesa de Ciências Veterinárias, 107(581-582), 63-68.

Sadamade, A., Oyedepo, T. A., & Bolaji, O. S. (2013). Fatty acids composition of three different vegetable oils (soybean oil, groundnut oil and coconut oil) by high performance liquid chromatography. Chemistry and Materials Research, 3(7), 26-29.

Silva, S. V., & Guerra, M. M. P. (2011). Cryopreservation effects on sperm cells and alternatives for crioinjury reduction. Revista Brasileira de Reprodução Animal, 35(4), 370-384.

Silveira, M. M., Freitas, A. G., Moraes, C. A., Gomes, S. F., Litz, S. H., Martins, J. M. S., ... Fernandes, E. A. (2014). Feeding management strategy for male broiler breeders and its effects on body weight, hatchability and fertility. Brazilian Journal of Poultry Science, 16(4), 397-402. DOI: http://dx.doi.org/10.1590/1516-635x1604397-402

Simonato, B., Trevisan, S., Tolve, R., Favati, F., & Pasini, G. (2019). Pasta fortification with olive pomace: Effects on the technological characteristics and nutritional properties. LWT - Food Science and Technology, 114(8), 1-6. DOI: https://doi.org/10.1016/j.lwt.2019.108368

Tinôco, I. F. F. (2001). Industrial aviculture: New concepts of materials, conceptions and constructive techniques available for Brazilian poultry houses. Revista Brasileira de Ciências Avícolas, 3(1), 1-26. DOI: https://doi.org/10.1590/S1516-635X2001000100001

Triques, G. E., Schimidt, J. M., Oro, C. S., Bordignon, H. F., Donin, D. G., & Fernandes, J. I. M. (2016). Effect of dietary antioxidant supplementation on reproductive characteristics of male broiler breeders during the post-peak production phase. Semina: Ciências Agrárias, 37(4), 2557-2566. DOI: https://doi.org/10.5433/1679-0359.2016v37n4Supl1p2557

Wedyan, M., Abu Hanieh, B., Al Harasheh, A., & Altawaha, A. R. (2017). Chemical characterization of olive pomace in the northern region of Jordan. Bulgarian Journal of Agricultural Science, 23(5), 866-872. DOI: https://doi.org/10.20944/preprints201703.0150.v1

Wilson, J. L., Krista, L. M., Mcdaniel, G. R., & Sutton, C. D. (1988). Correlation of broiler breeder male semen production and tests morphology. Poultry Science, 67(4), 660-668. DOI: https://doi.org/10.3382/ps.0670660

Zambiazi, R. C., Przybylski, R., Zambiazi, M. W., & Mendonça, C. B. (2007). Fatty acid composition of vegetable oils and fat. B. CEPPA Digital Library of Journals, 25(1), 111-120. DOI: http://dx.doi.org/10.5380/cep.v25i1.8399

Zhang, Z. F., Zhou, T. X., & Kim, I. H. (2013). Effects of dietary olive oil on growth performance, carcass parameters, serum characteristics, and fatty acid composition of breast and drumstick meat in broilers. Asian-Australasian Journal of Animal Sciences, 26(3), 416-422. DOI: https://doi.org/10.5713/ajas.2012.12486

Zhang, S., Su, H., Zhou, Y., Li, X., Feng, J., & Zhang, M. (2016). Effects of sustained cold and heat stress on energy intake, growth and mitochondrial function of broiler chickens. Journal of Integrative Agriculture, 15(10), 2336-2342. DOI: https://doi.org/10.1016/S2095-3119(15)61314-4

Publicado
2021-12-22
Como Citar
Oliveira, C. O. de, Tavares, A. T., Castro, J. P. N., Ávila, S. L. C. de, Gheller, S. M. M., Soares, S. L., Gonçalves, F. M., & Bongalhardo, D. C. (2021). Reproductive parameters and weight gain of roosters fed with waste oil from olive culture. Acta Scientiarum. Animal Sciences, 44(1), e53597. https://doi.org/10.4025/actascianimsci.v44i1.53597
Seção
Nutrição de Não-Ruminantes

0.9
2019CiteScore
 
 
29th percentile
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