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CONCLUSIONS
The use of P. amboinicus as an alternative to replace GPA as
growth promoters in broilers feed had no effect on the evaluated
slaughter, carcass and visceral variables, due to the aforementioned
and according to the results of this experiment, it could work with
doses of 0.25% or more of inclusion of the dehydrated product in
the animal's diet.
Despite of being a pure phytobiotic (ground dehydrated leaf),
P.amboinicus does not have a detrimental effect on the proportions
or percentages of red and white viscera, which conrms its safety
margin and its potential use in feed for the safety of broilers.
The results obtained suggest that P. amboinicus can be used
without impacting the nal product (poultry protein).
ACKNOWLEDGMENT
To the authorities of the Technical University of Machala for their
support in the doctoral training and to the Faculty of Agricultural
Sciences for their collaboration in the development of this research.
Conict of interest
The authors declare no conict of interest.
BIBLIOGRAPHIC REFERENCES
[1] Sarmiento–García A. Efecto de las condiciones de crianza sobre
la producción y la calidad de la carne de pollos ecológicos.
[doctoral thesis on the Internet]. Spain: Universidad of
Salamanca; 2019; 267 p. Spanish. doi: https://doi.org/k7sg
[2] Rivas–López C. Estudio de caracterización y conversión de
una explotación campera avícola de puesta a la producción
ecológica en Andalucía. [master's thesis on the Internet]. Spain:
International University of Andalucía; 2021 [cited July 22 2023];
99 p. Available in: https://bit.ly/3t3LGOv.
[3] Hoffmann TM, Bueno DJ. Resistencia antimicrobiana en
avicultura. Negoc. Avicult. [Internet]. 2019 [cited June 22 2023];
16(86):4–14. Available in: https://bit.ly/3Ru14gs
[4] Gao P, Ma C, Sun Z, Wang L, Huang S, Su X, Xu J, Zhang H. Feed–
additive probiotics accelerate yet antibiotics delay intestinal
microbiota maturation in broiler chicken. Microbiome. [Internet].
2017; 5(1):1–14. doi: https://doi.org/gbtct9
[5] Mehdi Y, Létourneau–Montminy M, Gaucher M, Chor Y, Suresh G,
Rouissi T, Brar S, Côté C, Ramirez A, Godbout S. Use of antibiotics
in broiler production: global impacts and alternatives. Animal
Nutr. [Internet]. 2018; 4(2):170–178. doi: https://doi.org/gp9h
[6] De Castro–Borba E, Ferreira H, Mubárack T, Luz T, Silveira D,
Silva A, Silva P, Monteiro O, Fernandes Y, Vilanova C, Coutinho
D. Technological Prospection of the biological activities of
Plectranthus amboinicus (Loureiro) Sprengel: an Integrative
review. Res. Society Develop. [Internet]. 2021; 10(5):1–15. doi:
https://doi.org/k7sr
[7] González–Eras G, Vargas–González O, Sánchez–Quinche A. Use
of Moringa oleífera in chickens and its effect on Productive and
Economic parameters. Rev. Científ. FCV–LUZ. [Internet]. 2022;
32:1–7. doi: https://doi.org/kvdp
[8] Ramírez–Rojas C, Pimbosa–Ortiz D, Sánchez–Quinche A. Effects
of the use of Moringa oleífera in the feeding of broilers on carcass
and visceral yields. Rev. Científ. FCV–LUZ. [Internet]. 2022;
32:1–6. doi: https://doi.org/k7ss
[9] De Blas–Beorlegui C, Rebollar P, Mateos G, Gorrochategui M,
Cegarra–De Heus SAU, Méndez J, Santomá G, De Ayala P. Tablas
FEDNA de composición y valor nutritivo de alimentos para la
fabricación de piensos compuestos [Internet]. 4th Ed. Madrid:
Fundación Española para el Desarrollo de la Nutrición Animal. 2019
[cited 12 Aug. 2023]; 604 p. Available in: https://bit.ly/3TbQ0Ww.
[10] Santomá G, Mateos G. Necesidades Nutricionales en Avicultura.
[Internet]. Madrid: Fundación Española para el Desarrollo de la
Nutrición Animal. 2018 [cited 12 Aug. 2023]; 195 p. Available in:
https://bit.ly/3WnUicB.
[11] Sánchez–Quinche A, Ibáñez–Loja A, Dean–Gutiérrez D. Use of
Plectranthus amboinicus in chickens and its effect on productive
and economic parameters. Rev. Científ. FCV–LUZ. [Internet].
2023; 33(2):7. https://doi.org/k7st
[12] SAS Institute Inc. SAS/TOOLKIT™ Software: Usage and Reference.
Version 6. Cary, NC, USA: SAS Institute Inc. 1991. 761 p.
[13] Rewatkar H, Vipin K, Pramod K. Assessment of supplementation
of oregano oil and probiotic on carcass yields of broiler chicken.
The Pharma Innovat. J. [Internet]. 2020; 9(3):668–671. doi:
https://doi.org/k7sv
[14] Campozano–Marcillo G, Antonio–Hurtado E, Arteaga–Chávez F,
Pérez–Bello A, García–Díaz J, Garzón–Jarrin R. Aceite esencial
de orégano (Origanum vulgare L.) y sexo como factores en la
respuesta productiva en pollos de engorde. Rev. Prod. Anim.
[Internet]. 2021 [cited 5 Aug. 2023]; 33(1):37–48. Available in:
https://bit.ly/3sVFHvn.
[15] Batista A, Pilay K, Torres Y, Álvarez A, Monge–Freile M, Culcay
M, Santana W. Antibioterapia natural para el tratamiento de la
coccidiosis y su repercusión en el comportamiento productivo
del broiler. Cien. Lat. Rev. Científ. Multidiscipl. [Internet]. 2021;
5(6):11481–11495. doi: https://doi.org/k7sx
[16] Sandra IO, Gomes FA, Freitas HJ, Santos FGA, Almeida–Filho JA,
Guamán CAG, Zanfagnini LG, Nascimento AM, Alencar IC. Oregano
extract (Origanum vulgare) in female broiler chickens of free–range
strain raised in the Western Amazon. Rev. Brasileira Saúde e
Produção Anim. [Internet]. 2023; 24:01–13. doi: https://doi.org/k7sz
[17] Languido L, Marcos M, Gaffud, O. Performance of Bounty
Fresh Broiler Chicken Fed Diet Supplemented with Oregano
(Plectranthus amboinicus L.) Leaf Meal. European J. Agricult.
Food Sci. [Internet]. 2020; 2(2):1–5. doi: https://doi.org/kvdr