Effects of in ovo nutrition on broiler performance: a review

Authors

DOI:

https://doi.org/10.33448/rsd-v10i2.12307

Keywords:

Feed in ovo; Embryo development; Hatchability; Embryo nutrition; Performance.

Abstract

The productive efficiency obtained through broiler chicken' breeding promoted a greater need for embryonic nutritional supply. For this, the in ovo inoculation of solutions containing nutrients and exogenous substances has become an important technique to increase energy reserves and, consequently, obtain better performance of birds after hatching. Thus, our objective was to review both the methodologies and nutrients used at the in ovo nutrition. Furthermore, we focused on the effects of this technique on the broilers' production. Carbohydrates are used as one of the primary sources of energy for the post-hatch embryo, as they guarantee an increase in glucose availability. Proteins and amino acids are essential for the efficiency of protein deposition after hatching. Probiotics and prebiotics provide better gastrointestinal' development and integrity, and consequently, guarantee animals' intestinal health. Finally, the use of vitamins and minerals contributes to animals' immunity, skeletal development during the incubation and post-hatch periods, between several other functions. Given this, in ovo nutrition techniques might promote zootechnical efficiency of broiler chicken in the post-hatch period, contributing to better performance of the animals until slaughter.

References

Adhikari, P. A., & Kim, W. K. (2017). Overview of Prebiotics and Probiotics: Focus on Performance, Gut Health and Immunity – A Review. Annals of Animal Science, 17(4), 949–966. doi:10.1515/aoas-2016-0092.

Agyare, C., Etsiapa Boamah, V., Ngofi Zumbi, C., & Boateng Osei, F. (2019). Antibiotic Use in Poultry Production and Its Effects on Bacterial Resistance. Antimicrobial Resistance - A Global Threat. doi:10.5772/intechopen.79371.

Alsultan, O. M., Al-Khafaji, F. R. A., & Gmash, H. N. (2020). Effects of combining in ovo injection by nutritive solutions and early post-hatch nutrition on productive performance of broiler. Plant Archives, 20(2), 1584-1591. Recuperado de: http://www.plantarchives.org/SPL%20ISSUE%2020-2/261__1584-1591_.pdf.

Alves, L. K. S., Viana, G. P., Santos, T. S., Reis, B. Q. dos., Guimarães, E. B. B., Nascimento, R. A., Raineri, C., & Araújo, C. S. S. (2020). In-ovo feeding: a review. Veterinária Notícias, 26(1), 18-18. Recuperado de: http://www.seer.ufu.br/index.php/vetnot/article/view/51611/29670.

Amaral, V. T. (2019). Incubação de ovos férteis e o desenvolvimento embrionário. Trabalho de Conclusão de Curso (Bacharelado em Zootecnia) – Unidade Acadêmica de Garanhuns, Universidade Federal Rural de Pernambuco, Garanhuns. p. 33. Recuperado de: https://repository.ufrpe.br/handle/123456789/1920.

Angwech, H., Tavaniello, S., Ongwech, A., Kaaya, A. N., & Maiorano, G. (2019). Efficacy of In Ovo Delivered Prebiotics on Growth Performance, Meat Quality and Gut Health of Kuroiler Chickens in the Face of a Natural Coccidiosis Challenge. Animals, 9(11), 876. doi:10.3390/ani9110876.

Araújo, I. C. S. (2017). Suplementação in ovo de vitamina E e cantaxantina para embriões de frango de corte. Tese (Doutorado em Zootecnia) – Universidade Federal de Goiás, Goiânia. p. 71. Recuperado de: https://repositorio.bc.ufg.br/tede/handle/tede/8003.

Araújo, I. C. S., Café, M. B., Noleto, R. A., Martins, J. M. S., Ulhoa, C. J., Guareshi, G. C., Reis, M. M., & Leandro, N. S. M. (2018). Effect of vitamin E in ovo feeding to broiler embryos on hatchability, chick quality, oxidative state, and performance. Poultry Science, 98(9), 3652-3661. doi:10.3382/ps/pey439.

Azhar, M., Rahardja, D. P., & Pakiding, W. (2016). Embryo development and post-hatch performances of kampung chicken by in ovo feeding of L-Arginine. Media Peternakan, 39(3), 168-172. doi:10.5398/medpet.2016.39.3.168.

Beck, C. N., McDaniel, C. D., Wamsley, K. G. S., & Kiess, A. S. (2019). The potential for inoculating Lactobacillus animalis and Enterococcus faecium alone or in combination using commercial in ovo technology without negatively impacting hatch and post-hatch performance. Poultry Science, 98 (12), 7050-7062. doi:10.3382/ps/pez441.

Berrocoso, J. D., Kida, R., Singh, A. K., Kim, Y. S., & Jha, R. (2016). Effect of in ovo injection of raffinose on growth performance and gut health parameters of broiler chicken. Poultry Science, pew430. doi:10.3382/ps/pew430.

Bhanja, S. K., Goel, A., Pandey, N., Mehra, M., Majumdar, S., & Mandal, A. B. (2014). In ovo carbohydrate supplementation modulates growth and immunity-related genes in broiler chickens. Journal of Animal Physiology and Animal Nutrition, 99(1), 163–173. doi:10.1111/jpn.12193.

Biria, A., Navidshad, B., Mirzaei Aghjehgheshlag, F., Nikbin, S. 2020. Effect of in ovo Supplementation of Nano Zinc Oxide Particles on Hatchability and Post-Hatch Immune System of Broiler Chicken. Iranian Journal of Applied Animal Science, 10(3), 547-553. Recuperado de: http://ijas.iaurasht.ac.ir/article_675497.html.

Bogucka, J., Dankowiakowska, A., Elminowska-Wenda, G., Sobolewska, A., Szczerba, A., & Bednarczyk, M. (2016). Effects of prebiotics and synbiotics delivered in ovo on broiler small intestine histomorphology during the first days after hatching. Folia Biologica, 64(3), 131-143. doi: 10.3409/fb64_3.131.

Castañeda, C. D., Dittoe, D. K., Wamsley, K. G. S., McDaniel, C. D., Blanch, A., Sandvang, D., & Kiess, A. S. (2020). In ovo inoculation of an Enterococcus faecium - based product to enhance broiler hatchability, live performance, and intestinal morphology. Poultry Science, 99(11), 6163–6172. doi:10.1016/j.psj.2020.08.002.

Coskun, I., Akkan, A., & Erener, G. (2018). Effects of in ovo injection of lysine and methionine into fertile broiler (parent stock) eggs on hatchability, growth performance, caecum microbiota, and ileum histomorphology. Revista Brasileira de Zootecnia, 47. doi:10.1590/rbz4720170220.

Costa, F. G., Silva, J. H. V., Goulart, C. C., Nogueira, E. T. & Sá, L. M. (2014). Exigência de aminoácidos para aves. In: Nutrição de não ruminantes. Jaboticabal: Funep-Unesp, cap. 4, 240-261.

Dal Pont, G. C., Goes, E. C., Araujo, R. A., Oliveira, S. G., Rocha, C., & Maiorka, A. (2019). Glycerol inoculation in eggs of young broiler breeders at different embryonic periods. Poultry Science, 98(9), 3989-3993. doi:10.3382/ps/pez141.

Dal’ Alba, G. M. (2018). Efeito da nutrição in ovo de mel de abelhas apis mellifera sobre o desempenho e rendimento de carcaça de frangos de corte. Dissertação (Mestrado) – Universidade do Estado de Santa Catarina, Chapecó. p. 49. Recuperado de: http://sistemabu.udesc.br/pergamumweb/vinculos/000047/0000477f.pdf.

Dal’Alba, G. M., Melek, C., Schneider, M., Deolindo, G. L., Boiago, M. M., Faria, G. A., Stefani, L. M., Silva, A. S. da., & Araujo, D. N. (2020). Nutrição in ovo usando mel: efeitos sobre eclodibilidade, desempenho e rendimento de carcaça em frangos de corte. Research, Society and Development, [S. l.], 9(8), e43985178. doi:10.33448/rsd-v9i8.5178.

Damasceno, J. L., Cruz, F. G. G., Melo, R. D., Feijó, J. C., Rufino, J. P. F., Valentins, F. M., & Oliveira, J. P. C. (2017). Inoculação de proteína isolada de soja em ovos embrionados oriundos de matrizes semipesadas com diferentes idades. Arquivo Brasileiro de Medicina Veterinária e Zootecnia, 69(5),1259-1266. doi:10.1590/1678-4162-9069.

Dankowiakowska, A., Bogucka, J., Sobolewska, A., Tavaniello, S., Maiorano, G., & Bednarczyk, M (2019). Effects of in ovo injection of prebiotics and synbiotics on the productive performance and microstructural features of the superficial pectoral muscle in broiler chickens. Poultry Science, 98(10), 5157-5165. doi:10.3382/ps/pez202.

De Meyer, F., Eeckhaut, V., Ducatelle, R., Dhaenens, M., Daled, S., Dedeurwaerder, A., De Gussem, M., Haesebrouck, F., Deforce, D., & Van Immerseel, F. (2019). Host intestinal biomarker identification in a gut leakage model in broilers. Veterinary Research, 50(1), 14. doi:10.1186/s13567-019-0663-x.

Dorigam, J. C. P. (2016). Relação ideal dos aminoácidos essenciais para mantença, crescimento e produção de aves. Tese (Doutorado em Zootecnia) – Universidade Estadual Paulista, Faculdade de Ciências Agrárias e Veterinárias, Jaboticabal. p. 193. Recuperado de: https://repositorio.unesp.br/handle/11449/137840.

Ebrahimi, M., Janmohammadi, H., Daghigh Kia, H., Moghaddam, G., Rajabi, Z., Abbas Rafat, S., & Javanmard, A. (2017). The effect of L-lysine in ovo feeding on body weight characteristics and small intestine morphology in a day-old Ross broiler chicks. Revue de Medecine Veterinaire, 168, 116-125. Recuperado de: https://www.revmedvet.com/2017/RMV168_116_125.pdf.

El‐Deep, M. H., Amber, K. A., Elgendy, S., Dawood, M. A. O., & Zidan, A. (2020). In ovo injection of nano‐selenium spheres mitigates the hatchability, histopathology image and immune response of hatched chicks. Journal of Animal Physiology and Animal Nutrition, 104(5), 1392-1400. doi:10.1111/jpn.13379.

El-Moneim, A. E.-M. E. A., El-Wardany, I., Abu-Taleb, A. M., Wakwak, M. M., Ebeid, T. A., & Saleh, A. A. (2019). Assessment of In Ovo Administration of Bifidobacterium bifidum and Bifidobacterium longum on Performance, Ileal Histomorphometry, Blood Hematological, and Biochemical Parameters of Broilers. Probiotics and Antimicrobial Proteins, 12, 439-450. doi:10.1007/s12602-019-09549-2.

El-Senousey, H. K., Chen, B., Wang, J. Y., Atta, A. M., Mohamed, F. R., & Nie, Q. H. (2017). In ovo injection of ascorbic acid modulates antioxidant defense system and immune gene expression in newly hatched local Chinese yellow broiler chicks. Poultry Science, 97(2), 425–429. doi:10.3382/ps/pex310.

Gao, T., Zhao, M. M., Li, Y. J., Zhang, L., Li, J. L., Yu, L. L., Gao, F., & Zhou, G. H. (2017). Effects of in ovo feeding of L-arginine on the development of digestive organs, intestinal function and post-hatch performance of broiler embryos and hatchlings. Journal of Animal Physiology and Animal Nutrition, 102(1), 166-175. doi:10.1111/jpn.12724.

Garcia, D. A., & Gomes, D. E. (2019). A Avicultura Brasileira e Os Avanços Nutricionais. Revista Científica, 1(1). Recuperado de: http://revistas.unilago.edu.br/index.php/revista-cientifica/article/view/167.

Givisiez, P. E. N., Moreira Filho, A. L. B., Santos, M. R. B., Oliveira, H. B., Ferket, P. R., Oliveira, C. J. B., & Malheiros, R. D. (2020). Chicken embryo development: metabolic and morphological basis for in ovo feeding technology. Poultry Science, 99(12), 6774–6782. doi:10.1016%2Fj.psj.2020.09.074.

Gonçalves, F. M., Santos, V. L., Contreira, C. L., Farina, G., Kreuz, B. S., Gentilini, F. P., Anciuti, M. A., & Rutz, F. (2013). Nutrição in ovo: estratégia para nutrição de precisão em sistemas de produção avícola. Archivos de Zootecnia, 62(237), 54-55. doi:10.21071/az.v62i237.1956.

Gonzalez, J. M., & Jackson, A. R. (2020). In ovo feeding of nicotinamide riboside affects broiler pectoralis major muscle development 1,2. Translational Animal Science, 4(3). doi:10.1093/tas/txaa126.

Han, G., Ouchi, Y., Hirota, T., Haraguchi, S., Miyazaki, T., Arakawa, T., Masuhara, N., Mizunoya, W., Tatsumi, R., Tashiro, K., Bungo, T., Furuse, M., & Chowdhury, V. S. (2020). Effects of L-leucine in ovo feeding on thermotolerance, growth and amino acid metabolism under heat stress in broilers. Animal, 14(8), 1701-1709. doi:10.1017/S1751731120000464.

Hollemans, M. S., Vries, S., Lammers, A., & Clouard, C. (2018). Effects of early nutrition and transport of 1-day-old chickens on production performance and fear response. Poultry science, 97(7), 2534-2542. doi:10.3382/ps/pey106.

Jha, R., Singh, A. K., Yadav, S., Berrocoso, J. F. D., & Mishra, B. (2019). Early nutrition programming (in ovo and post-hatch feeding) as a strategy to modulate gut health of poultry. Frontiers in Veterinary Science, 6, 82. doi:10.3389/fvets.2019.00082.

Joshua, P. P., Valli, C., & Balakrishnan, V. (2016). Effect of in ovo supplementation of nano forms of zinc, copper, and selenium on post-hatch performance of broiler chicken. Veterinary world, 9(3), 287. doi:10.14202%2Fvetworld.2016.287-294.

Kadam, M. M., Barekatain, M. R., Bhanja, S. K., & Iji, P. A. (2013). Prospects of in ovo feeding and nutrient supplementation for poultry: The science and commercial applications—a review. Journal of the Science of Food and Agriculture, 93, 3654–3661. doi:10.1002/jsfa.6301.

Kanagaraju, P. & Rathnapraba, S. (2019). Effect of in-ovo injection of glucose and egg white protein on the production performance and gut histomorphometry of broiler chicken. Indian Journal of Animal Research, 53(5), 675-679. doi:10.18805/ijar.B-3555.

Kermanshahi, H., Golian, A., Khodambashi Emami, N., Daneshmand, A., Ghofrani Tabari, D., & Ibrahim, S. A. (2016). Effects of in ovo injection of threonine on hatchability, intestinal morphology, and somatic attributes in Japanese quail (Coturnix japonica). Journal of Applied Animal Research, 45(1), 437–441. doi:10.1080/09712119.2016.1206902.

Leitão, R. A., Leandro, N. S. M., Stringhini, J. H., Café, M. B., Matos, M. S., & Andrade, M. A. (2014). Inoculação de maltose e/ou sacarose em ovos leves embrionados. Ciência Animal Brasileira, Goiânia, 15(1), 55-63. doi:10.5216/cab.v15i1.13974.

Li, T., Castañeda, C. D., Miotto, J., McDaniel, C., Kiess, A. S., & Zhang, L. (2020). Effects of in ovo probiotic administration on the incidence of avian pathogenic Escherichia coli in broilers and na Evaluation on their virulence and antimicrobial resistance properties. Poultry Science. doi10.3382/ps/pez202.

Lima, M. D., Lopes, I. M. G., Silva, K. F., Miranda, H. A. F., Almeida, A. C., & Duarte, E. R. (2020). Uso de aditivos em dietas para leitões em fase de creche: uma revisão. Research, Society and Development, [S. l.], 9(12), e26491211081. doi:10.33448/rsd-v9i12.11081.

Madej, J. P., & Bednarczyk, M. (2015). Effect ofin ovo-delivered prebiotics and synbiotics on the morphology and specific immune cell composition in the gut-associated lymphoid tissue. Poultry Science, 95(1), 19–29. doi:10.3382/ps/pev291.

Maia, G. D. (2018). Avaliação da inoculação de aminoácidos in ovo sobre a taxa de eclosão e qualidade de pintos de corte. Trabalho de Conclusão de Curso (Bacharelado em Zootecnia) – Universidade Tecnológica Federal do Paraná. Dois Vizinhos. p. 35. Recuperado de: http://repositorio.utfpr.edu.br/jspui/handle/1/11328.

Martins, B. B. Probiótico administrado em embriões e pintos de frangos de corte na redução da colonização por Salmonella Heideberg e integridade entérica. Tese de Doutorado.

Programa de Pós Graduação em Zootecnia, Universidade Estadual Paulista – Faculdade de Medicina Veterinária e Zootecnia, Câmpus de Botucatu, SP. p. 118. Recuperado de: https://repositorio.unesp.br/handle/11449/158308.

Martins, R. A., Almeida A., & Andrey, S. (2018). Importância dos aminoácidos na nutrição de frangos de corte. Revisão de Literatura. Revista Brasileira de Higiene e Sanidade Animal, 12(4), 539-554. Recuperado de: http://www.higieneanimal.ufc.br/seer/index.php/higieneanimal/article/view/484.

Miśta, D., Króliczewska, B., Pecka-Kiełb, E., Kapuśniak, V., Zawadzki, W., Graczyk, S., Kowalczyk, A., Lukaszewicz, E., & Bednarczyk, M. (2017). Effect of in ovo injected prebiotics and synbiotics on the caecal fermentation and intestinal morphology of broiler chickens. Animal Production Science, 57(9), 1884-1892. doi:10.1071/AN16257.

Moreira Filho, A. L. B., Oliveira, C. J. B. de., Freitas Neto, O. C. de., Leon, C. M. C. G. de., Saraiva, M. M. S., Andrade, M. F. S., White, B., & Givisiez, P. E. N. (2018). Intra-Amnionic Threonine Administered to Chicken Embryos Reduces Salmonella Enteritidis Cecal Counts and Improves Post hatch Intestinal Development. Journal of Immunology Research, 1-10. doi:10.1155/2018/9795829.

Neveling, D. P., & Dicks, L. M. T. (2020). Probiotics: an Antibiotic Replacement Strategy for Healthy Broilers and Productive Rearing. Probiotics and Antimicrobial Proteins. doi:10.1007/s12602-020-09640-z.

Neves, D. G. (2019). In ovo injection of glycerol and insulin-like growth factor (IGF-I) for broilers. Tese (Doutorado em Zootecnia) – Universidade Federal de Lavras, Lavras. p. 111. Recuperado de: https://pesquisa.bvsalud.org/portal/resource/pt/vtt-212692.

Neves, D. G. das., Retes, P. L., Alves, V. V., Pereira, R. S. G., Bueno, Y. do C., Alvarenga, R. R., & Zangeronimo, M. G. (2020). In ovo injection with glycerol and insulin-like growth factor (IGF-I): hatchability, intestinal morphometry, performance, and carcass characteristics of broilers. Archives of Animal Nutrition, 74(4), 325-342. doi:10.1080/1745039X.2020.17473.

Neves, D. G., Retes, P. L., Rocha, R. R., Ferreira, L. G., Naves, L. P., Alvarenga, R. R., Fassani, E. J., Pereira, L. J., Sousa, R. V., & Zangeronimo, M. G. (2016). Effects of in ovo feeding with glycerol for broilers. Journal of Animal Physiology and Animal Nutrition, 101(3), 434-440. doi:10.1111/jpn.12578.

Nunes, J. R. da. S., Cruz, F. G. G., Chagas, E. O., Maquiné, L. C., Melo, J. B. S., & Miller, W. P. M. (2018). Inoculação de glicose e clara de ovo em ovos embrionados– Relato de caso. Revista Científica de Avicultura e Suinocultura, 4(1). Recuperado de: https://periodicos.ufam.edu.br/index.php/RECAS/article/view/4949.

Oladokun, S., Koehler, A., MacIsaac, J., Ibeagha-Awemu, E. M., Adewole, D. I. (2020). Bacillus subtilis delivery route: effect on growth performance, intestinal morphology, cecal short-chain fatty acid concentration and cecal microbiota in broiler chickens. Poultry Science. S0032579120308269–. doi:10.1016/j.psj.2020.10.063.

Oliveira, T. F. B., Bertechini, A. G., Bricka, R. M., Kim, E. J., Gerard, P. D., & Peebles, E. D. (2015). Effects of in ovo injection of organic zinc, manganese, and copper on the hatchability and bone parameters of broiler hatchlings. Poultry Science, 94(10), 2488–2494. doi:10.3382/ps/pev248.

Omidi, S., Ebrahimi, M., Janmohammadi, H., Moghaddam, G., Rajabi, Z., & Hosseintabar‐Ghasemabad, B. (2019). The impact of in ovo injection of l ‐arginine on hatchability, immune system and caecum microflora of broiler chickens. Journal of Animal Physiology and Animal Nutrition, 104(1), 178-185. doi:10.1111/jpn.13222.

Peebles, E. D. (2018). In ovo applications in poultry: a review. Poultry science, 97(7), 2322-2338. doi:10.3382/ps/pey081.

Pereira, A. S., Shitsuka, D. M., Parreira, F. J., & Shitsuka, R. (2018). Metodologia da pesquisa científica. [e-book]. Santa Maria. Ed. UAB/NTE/UFSM. Recuperado de: http://repositorio.ufsm.br/handle/1/15824.

Pruszynska-Oszmalek, E., Kolodziejski, P. A., Stadnicka, K., Sassek, M., Chalupka, D., Kuston, B., Nogowski, L., Mackowiak, P., Maiorano, G., Jankowski, J., & Bednarczyk, M. (2015). In ovo injection of prebiotics and synbiotics affects the digestive potency of the pancreas in growing chickens. Poultry Science, 94(8), 1909–1916. doi:10.3382/ps/pev162.

Reis, T. L. (2018). Nutrição precoce de pintos de corte. Ciência Animal, 28(1), 82-97. Recuperado de: http://www.uece.br/cienciaanimal/dmdocuments/v28p82-97.pdf.

Reis, T. L., & Vieites, F. M. (2019). Antibiótico, prebiótico, probiótico e simbiótico em rações de frangos de corte e galinhas poedeiras. Ciência Animal, 29(3), 133-147. Recuperado de: https://pesquisa.bvsalud.org/portal/resource/pt/vti-745192.

Rocha, J. S. R. (2011). Efeito da cantaxantina dietética para matrizes pesadas com idade avançada e do período de armazenamento dos ovos sobre a fertilidade, rendimento de incubação, nutrientes da gema e desenvolvimento embrionário. Tese (Doutorado em Zootecnia) – Universidade Federal de Minas Gerais, Escola de Veterinária. p. 80. Recuperado de: http://hdl.handle.net/1843/BUOS-8FWL4A.

Rosalen, K., Camerini, N. L., Piazzetta, H. V. L., Berenchtein, B., & Mota, D. A. (2020). Avaliação da temperatura corporal de frangos de corte usando imagens termográficas. Brazilian Journal of Development, 6(6), 42176-42184. doi:10.34117/bjdv6n6-671.

Roto, S. M., Kwon, Y. M., & Ricke, S. C. (2016). Applications of In Ovo Technique for the Optimal Development of the Gastrointestinal Tract and the Potential Influence on the Establishment of Its Microbiome in Poultry. Frontiers in Veterinary Science, 3. doi:10.3389/fvets.2016.00063.

Saeed, M., Babazadeh, D., Naveed, M., Alagawany, M., Abd El-Hack, M. E., Arain, M. A., Tiwari, R., Sachan, S., Karthik, K., Dhama, K., Elnesr, S. S., & Chao, S. (2019). In ovo delivery of various biological supplements, vaccines and drugs in poultry: Current knowledge. Journal of the Science of Food and Agriculture, 99(8), 3727-3739. doi:10.1002/jsfa.9593.

Sahr, W. B. K., Odutayo, O. J., Sogunle, O. M., Ayo-Ajasa, O. Y., Fafiolu, A. O., & Fatunmbi, F. A. (2020). Effects of in ovo injection og inorganic salts of Zn, Cu, and Mn on hatching traits and post-hatch performance of broiler chickens in the tropics. Nigerian Journal of Animal Science, 22(1), 113-125. Recuperado de: https://www.ajol.info/index.php/tjas/article/view/197156.

Schmidt, M., Gomes, P. C., Rostagno, H. S., Albino, L. F. T., Nunes, R. V., & Mello, H. H. C. M. (2011). Níveis nutricionais de metionina + cistina digestível para poedeiras leves no segundo ciclo de produção. Revista Brasileira de Zootecnia, 40(1), 142-147. doi:10.1590/S1516-35982011000100020.

Sharma, J. M., & Witter, R. L. (1983). Embryo vaccination against Marek's disease with serotypes 1, 2 and 3 vaccines administered singly or in combination. Avian diseases, 27(2), 453-463. doi:10.2307/1590171.

Shokraneh, M., Sadeghi, A. A., Mousavi, S. N., Esmaeilkhanian, S., & Chamani, M. (2020). Effects of in ovo injection of nano-selenium and nano-zinc oxide and high eggshell temperature during late incubation on antioxidant activity, thyroid and glucocorticoid hormones and some blood metabolites in broiler hatchlings. Acta Scientiarum Animal Sciences, 42(1), e46029. doi:10.4025/actascianimsci.v42i1.46029.

Silva, I. G. D. da. (2016). Efeito da inoculação in ovo de probiótico e produto de exclusão competitiva em frangos de corte desafiados com Salmonella Heidelberg. Dissertação (Mestrado) – UNESP- Botucatu. p. 58. Recuperado de: https://repositorio.unesp.br/handle/11449/143436.

Siwek, M., Slawinska, A., Stadnicka, K., Bogucka, J., Dunislawska, A., & Bednarczyk, M. (2018). Prebiotics and synbiotics – in ovo delivery for improved lifespan condition in chicken. BMC Veterinary Research, 14(1). doi:10.1186/s12917-018-1738-z.

Skjøt-Rasmussen, L., Sandvang, D., Blanch, A., Nielsen, J. M., Styrishave, T., Schnabl, J., Brockmann, E., Beck, C. N., & Kiess, A. S. (2019). Post hatch recovery of a probiotic Enterococcus faecium strain in the yolk sac and intestinal tract of broiler chickens after in ovo injection. FEMS Microbiology Letters, 366(7), 13. doi:10.1093/femsle/fnz078.

Slawinska, A., Plowiec, A., Siwek, M., Jaroszewski, M., & Bednarczyk, M. (2016). Long-Term Transcriptomic Effects of Prebiotics and Synbiotics Delivered In Ovo in Broiler Chickens. PLOS ONE, 11(12), e0168899. doi:10.1371/journal.pone.0168899.

Slawinska, A., Zampiga, M., Sirri, F., Meluzzi, A., Bertocchi, M., Tavaniello, S., & Maiorano, G. (2019). Impact of galactooligosaccharides delivered in ovo on mitigating negative effects of heat stress on performance and welfare of broilers. Poultry Science, 99(1), 407-415. doi:10.3382/ps/pez512.

Sobolewska, A., Elminowska-Wenda, G., Bogucka, J., Dankowiakowska, A., Kułakowska, A., Szczerba, A., Stadnicka, K., Szpinda, M., & Bednarczyk, M. (2017). The influence of in ovo injection with the prebiotic DiNovo® on the development of histomorphological parameters of the duodenum, body mass and productivity in large-scale poultry production conditions. Journal of Animal Science and Biotechnology, 8(1), 45. doi:10.1186/s40104-017-0176-2.

Sun, X., Lu, L., Liao, X., Zhang, L., Lin, X., Luo, X., & Ma, Q. (2018). Effect of In Ovo Zinc Injection on the Embryonic Development and Epigenetics-Related Indices of Zinc-Deprived Broiler Breeder Eggs. Biological Trace Element Research, 185(2), 456–464. doi:10.1007/s12011-018-1260-y.

Tainika, B., & Şekeroğlu, A. (2020). In ovo Feeding Technology for Optimization of Incubation and Hatching in Broiler Chickens. Turkish Journal of Agriculture – Food Science and Tecnology, 8. doi:10.24925/turjaf.v8isp1.183-186.4086.

Tavaniello, S., Slawinska, A., Prioriello, D., Petrecca, V., Bertocchi, M., Zampiga, M., Salvatori, M., & Maiorano, G. (2019). Effect of galactooligosaccharides delivered in ovo on meat quality traits of broiler chickens exposed to heat stress. Poultry Science. 99(1), 612-619. doi:10.3382/ps/pez556.

Teymouri, B., Ghiasi Ghalehkandi, J., Hassanpour, S., & Aghdam-Shahryar, H. (2019). Effect of In Ovo Feeding of the Vitamin B12 on Hatchability, Performance and Blood Constitutes in Broiler Chicken. International Journal of Peptide Research and Therapeutics, 26, 381-387. doi:10.1007/s10989-019-09844-0.

Toghyani, M., Tahmasebi, S., Modaresi, M., & Ale Saheb Fosoul, S. S. (2018). Effect of arginine and threonine in ovo supplementation on immune responses and some serum biochemical attributes in broiler chickens. Italian Journal of Animal Science, 18(1), 342-349. doi:10.1080/1828051x.2018.1529545.

Torres, C. A., & Korver, D. R. (2018). Influences of trace mineral nutrition and maternal flock age on broiler embryo bone development. Poultry science, 97(8), 2996-3003. doi:10.3382/ps/pey136.

Van Milgen, J., & Dourmad, J.-Y. (2015). Concept and application of ideal protein for pigs. Journal of Animal Science and Biotechnology, 6(1). doi:10.1186/s40104-015-0016-1.

Wang, H., Ni, X., Qing, X., Liu, L., Lai, J., Khalique, A., Guangyao, L., Kangcheng, P., Bo, J., & Zeng, D. (2017). Probiotic Enhanced Intestinal Immunity in Broilers against Subclinical Necrotic Enteritis. Frontiers in Immunology, 8. doi:10.3389/fimmu.2017.01592.

Wang, J., Lin, J., Wang, J., Wu, S., Qi, G., Zhang, H., & Song, Z. (2020). Effects of in ovo feeding of N-acetyl-L-glutamate on early intestinal development and growth performance in broiler chicken. Poultry Science, 99(7), 3583-3593. doi:10.1016/j.psj.2020.04.003.

Wijnen, H. J., Molenaar, R., van Roovert-Reijrink, I. A. M., van der Pol, C. W., Kemp, B., & van den Brand, H. (2020). Effects of incubation temperature pattern on broiler performance. Poultry Science, 99(8), 3897-3907. doi:10.1016/j.psj.2020.05.010.

Yair, R., Shahar, R., & Uni, Z. (2015). In ovo feeding with minerals and vitamin D3 improves bone properties in hatchlings and mature broilers. Poultry Science, 94(11), 2695-2707. doi:10.3382/ps/pev252.

Yu, L. L., Gao, T., Zhao, M. M., Lv, P. A., Zhang, L., Li, J. L., Jiang, Y., Gao, F. & Zhou, G. H. (2017). In ovo feeding of L-arginine alters energy metabolism in post-hatch broilers. Poultry Science, 97(1), 140–148. doi:10.3382/ps/pex272.

Zhang, H., Elliott, K. E. C., Durojaye, O. A., Fatemi, S. A., Schilling, M. W., & Peebles, E. D. (2019). Effects of in ovo injection of L-ascorbic acid on growth performance, carcass composition, plasma antioxidant capacity, and meat quality in broiler chickens1,2,3. Poultry Science, 98(9), 3617-3625. doi:10.3382/ps/pez173.

Zhu, Y. F., Li, S. Z., Sun, Q. Z., & Yang, X. J. (2019). Effect of in ovo feeding of vitamin C on antioxidation and immune function of broiler chickens. Animal, 1–7. doi:10.1017/s1751731118003531.

Zhu, Y., Li, S., Duan, Y., Ren, Z., Yang, X., & Yang, X. (2020). Effects of in ovo feeding of vitamin C on post-hatch performance, immune status and DNA methylation-related genes expression in broiler chickens. British Journal of Nutrition, 124(9), 903-911. doi:10.1017/s000711452000210x.

Published

20/02/2021

How to Cite

MIRANDA, H. A. F. .; LOPES, I. M. G. .; LIMA, M. D. de .; FERREIRA, F.; PEREIRA , E. B. .; SILVA, L. F. da; COSTA, L. F. . Effects of in ovo nutrition on broiler performance: a review . Research, Society and Development, [S. l.], v. 10, n. 2, p. e38810212307, 2021. DOI: 10.33448/rsd-v10i2.12307. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/12307. Acesso em: 19 apr. 2024.

Issue

Section

Agrarian and Biological Sciences