Schinus terebinthifolius raddi pepper oil used as na addictive in Hyphessobrycon eques steindachner fish diet

Authors

DOI:

https://doi.org/10.33448/rsd-v9i6.3118

Keywords:

Ornamental fish; Pigmentation; Serpae tetra.

Abstract

Pepper fruit oil has antioxidant and antifungal properties that can benefit the health and well-being of fish. The objective of this study was to evaluate the benefits of the inclusion of brazillian pepper crude oil in the development and staining of Mato Grosso fish (Hyphessobrycon eques Steindachner, 1882). A total of 68 specimens of bush were distributed in four 10 L units in an individual recirculation system and thermostat water at 28° C. During the 60-day test, the fish were fed commercial diet (DC) and commercial diet supplemented with brazillian pepper essential oil (5g.kg-1) (DP). At the end of the experimental period, survival, growth, staining and thermogenicity were evaluated. Data were analyzed by the Tukey test (P>0.05). The addition of brazzilian pepper oil promoted higher fish survival (94.11%) and better condition factor (1.87). There was no difference in diet consumption by fish. However, the growth factors were smaller compared to the control group, except for the gain in length. The control group presented more homogenous weight, while the best size uniformity was obtained for the DP group. In highlight the DP provided an increase in fish thermogenicity and also increased staining in the L* and a* indices. It is concluded that this dose of pink pepper oil is not recommended as a complement to optimize color in ornamental fish, however, the substance is shown as a promising bioactive for the development of the immune system of these fish.

Author Biographies

Everton Luís Nascimento Porto, Universidade Federal da Grande Dourados

Faculdade de Ciências Agrárias

Rebeca Maria Sousa, Universidade Federal da Grande Dourados

Faculdade de Ciências Agrárias

Wesley Clovis Barbieri Mendonça, Universidade Federal da Grande Dourados

Faculdade de Ciências Agrárias

Claucia Aparecida Honorato, Universidade Federal da Grande Dourados

Faculdade de Ciências Agrárias

References

Abe, H.A., Dias, J.A.R., Reis, R.G.A., Couto, M.V.S., Menezes, J.O. & Fujimoto, R.Y. (2016). Extrato aquoso de canela como promotor de crescimento para larvas do peixe ornamental amazônico Pyrrhulina brevis. Boletim de Indústria Animal, 73(4):267–271. http://dx.doi.org/10.17523/bia.v73n4p267

Barbosa, L.C.A., Demuner, A.J., Clememte, A.D., Paula, V.F. & Ismail, FM (2007). Seasonal variation in the composition of volatile oils from Schinus terebinthifolius raddi. Química Nova, 30(8):1959-1965, https://doi.org/10.1590/S0100-40422007000800030

Braga, F.M.S. (1997). Análise da equação alométrica na relação peso e comprimento e o fator de condição em Plagioscion squamosissimus (Teleostei, Scianidae). Revista Brasileira de Biologia, 57(1):417-425.

Basumatary, S & Nath, N. (2018). Assessment of Chemical Compositions and in vitro Antioxidant Properties of Musa balbisiana Colla Inflorescence. International Journal of Pharmaceutical Research, 10(1).

Citarasu, T, Babu, M.M., Sekar, R.R.J. & Petermarian, M. (2002). Developing Artemia enriched herbal diet for producing quality larvae in Penaeus monodon, Fabricius. Asian Fisheries Society, Manila, Philippines 15(1):21–32.

Filho, W.D.N., Franco, C.R (2015). Avaliação do Potencial dos Resíduos Produzidos Através do Processamento Agroindustrial no Brasil. Revista Virtual de Química, 7(6):968-1987. https://doi.org/10.5935/1984-6835.20150116

Furuya, W.M., Souza, S.R., Furuya, V.R.B., Hayashi, C, Ribeiro, R.P (1998). Dietas peletizadas e extrusadas para machos revertidos de tilápias do Nilo (Oreochromis niloticus L.), na fase de terminação. Ciência Rural, 28(3):483–487. http://dx.doi.org/10.1590/S0103-84781998000300022

Gazzaneo, L.R.S., Lucena, R.F.P., Albuquerque, U.P (2005). Knowledge and use of medicinal plants by local specialists in a region of Atlantic Forest in the state of Pernambuco (Northeastern Brazil). J. Ethnobiol Ethnomedicine, 1(9):1-8. https://doi.org/10.1186/1746-4269-1-9

Gawlik-Dziki, U (2012). Changes in the antioxidant activities of vegetables as a consequence of interactions between active compounds. Journal of Functional Foods, 4(4):872-882. https://doi.org/10.1016/j.jff.2012.06.004

Güroy, B, Sahin, I, Mantoğlu, S, Kayal, S (2012). Spirulina as a natural carotenoid source on growth, pigmentation and reproductive performance of yellow tail cichlid Pseudotropheus acei. Aquaculture Internatinal, 20:869–878. https://doi.org/10.1007/s10499-012-9512-x

Gomis, D.B., Palomino, N.F., Alonso, J.J.M (2001). Capillary liquid chromatographic determination of neutral phenolic compounds in apple juices. Analytica Chimica Acta, 426(1):111-117. https://doi.org/10.1016/S0003-2670(00)01171-5

Honorato, C.A., Tesser, M.B., Portella, M.C., Carneiro, D.J (2012). Microdietas na alimentação da Tilápia do Nilo durante a fase de reversão sexual. Nucleus Animalium, 4(1):27–36. http://dx.doi.org/10.3738/1982.2278.651

Leão, A.C. Gerenciamento de cores para imagens digitais. Belo Horizonte, MG. 2005. 135 f. (Dissertação de Mestrado em Artes Visuais, Curso de Mestrado em Artes Visuais, Escola de Belas Artes). Disponível em: < http://hdl.handle.net/1843/JSSS-7XGFG3> Acesso em 25 set. 2018.

Lima, M.R.F., Ximenes, E.C.P.A., Luna, J.S., Sant'Ana, A.E.G (2006). The antibiotic activity of some Brazilian medicinal plants. Revista Brasileira Farmacognosia, 16(3):300-306. https://doi.org/10.1590/S0102-695X2006000300004

Liu, H.W., Tong, J.M., Zhou, D.W (2011). Utilization of Chinese herbal feed additives in animal production. Agricultural Sciences in China, 10(8):1262–1272. https://doi.org/10.1016/S1671-2927(11)60118-1

Martínez, M.J., Betancourt, J., Alonso-González, N., Jauregui, A (1996). Screening of some Cuban medicinal plants for antimicrobial activity. Journal Ethnopharmacol, 52(3):171-174. https://doi.or/10.1016/0378-8741(96)01405-5

Martínez Guerra, M.J., Barreiro, M.L., Rodríguez, Z.M., Rubalcaba, Y (2019). Actividad antimicrobiana de un extracto fluido al 80% de Schinus terebinthifolius raddi (copal). Revista Cubana de Plantas Medicinales, 5(1):23-25.

Melo Junior, E.J.M., Raposo, M.J., Sant'Ana, A.E.G., Lisboa Neto, J.A., Diniz, M.F.A (2000). Estudo de plantas medicinais com atividade antimicrobiana sobre microrganismos presentes na alveolite. Revista ABO Nacional, 8(4):220-226.

Oliveira, R.H.F., Pereira-da-Silva, E.M., Bueno, R.S. & Barone, A.A.C. (In Memorian) (2010). O extrato de maracujá sobre a morfometria de hepatócitos da tilápia do Nilo. Ciência Rural, 40(12):2562–2567. https://doi.org/10.1590/S0103-84782010001200020

Fidrianny, I., Anggraeni, N.A.S., Insanu, M (2018). Antioxidant properties of peels extracts from three varieties of banana (Musa sp.) grown in West Java-Indonesia. International Food Research Journal, 25(1):57-64.

Pereira, A.S. et al. (2018). Metodologia do trabalho científico. [e-Book]. Santa Maria. Ed. UAB/NTE/UFSM. Available at: https://repositorio.ufsm.br/bitstream/handle/1/15824/Lic_Computacao_Metodologia-Pesquisa-Cientifica.pdf?sequence=1. Accessed on: March. 21, 2020.

Rocha, E.C., Sartori, R.C., Navarro, F.F (2016). A aplicação de alimentos antioxidantes na prevenção do envelhecimento cutâneo. Revista Científica da FHO –UNIARARAS, 4(1):19-26.

Roy, M.K., Takenaka, M., Isobe, S., & Tsushida, T (2007). Antioxidant potential, antiproliferative activities, and phenolic content in water-soluble fractions of some commonly consumed vegetables: Effects of thermal treatment. Food Chemistry, 103(1):106-114. https://doi.org/10.1016/j.foodchem.2006.08.002

Safari, R., Hoseinifar, S.H., Nejadmoghadam, S., Jafar, A (2016). Transciptomic study of mucosal immune, antioxidant and growth related genes and non-specific immune response of common carp (Cyprinus carpio) fed dietary Ferula (Ferula assafoetida). Fish & Shellfish Immunology, 55:242–248. https://doi.org/10.1016/j.fsi.2016.05.038

Sampaio, G.R., Lobão, V.L., Rocco, S.C (2001). Uso de fosfatos como aditivos alimentares na redução de exsudato e nos atributos sensoriais da carne do camarão de água doce Macrobrachium rosenbergii, Boletim do Instituto de Pesca, São Paulo, 27(1):97–107.

Schmourlo, G., Mendonça-Filho, R.R., ALVIANO, C.S., COSTA, S.S (2005). Screening of antifungal agents using ethanol precipitation and bioautography of medicinal and food plants. Journal of Ethnopharmacology, 96:563-8.

Sefc, K.M., Brown, C., & Clotfelter, D (2014). Carotenoid-based coloration in cichlid fishes. Comparative Biochemistry and Physiology, Part A, 173:42–51. http://dx.doi.org/10.1016/j.cbpa.2014.03.006

Silva, C.M., Santos, R.A., & Cavalcante, C.F.C (2016). Os benefícios da nutrição na prevenção do envelhecimento cutâneo. Rev. Conexão Eletrônica –Três Lagoas, MS, 13(1).

Shah, M.P., Reddy, G.V., Banerjee, R., Babu, P.R., Kothari, I.L (2005). Microbial degradation of banana waste under solid state bioprocessing using two lignocellulolytic fungi (Phylosticta spp. MPS-001 and Aspergillus spp. MPS-002), Process Biochemistry, 40(1):445-451. https://doi.org/10.1016/j.procbio.2004.01.020

Sokmen, A., Sökmen, M., Daferera, D., Polissiou, M., Candan, F., Unlu, M., Akpulat, H.A. (2004). The in vitro antioxidant and antimicrobial activities of the essential oil and methanol extracts of Achillea biebersteini Afan. (Asteraceae), Phytotherapy Research, 18(6):451-6. https://doi.org/10.1002/ptr.1438

Tavares-Dias, M., Martins, M.L., Moraes, F.R (2000). Relação hepatossomática e esplenossomática em peixes teleósteos de cultivo intensivo. Rev. Bras. Zool, 17(1):273-281.

Vazzoler, A.E.A.M, Biologia da reprodução de peixes teleósteos: teoria e prática - Maringá : EDUEM ; São Paulo : SBI, 1996. 169 p: il. Co-edição com: CNPq e Nupelia (UEM). ISBN: 85-85545-16-X

Vetrani, C., Costabile, G., Di Marino, L., Rivellese, A.A (2012). Nutrition and oxidative stress: a systematic review of human studies. International Journal of Food Sciences and Nutrition, 1-15.

Wang, C.Y., Li, Z.B., Sun, Y.Z., Chen, Q., Li, W.J., Huang, Y.C., Lu, J (2018). Effects of Chinese herbal medicines mixture on growth performance digestive enzyme activity immune response of juvenile Japanese seabass Lateolabrax japonicus. Aquaculture Nutrition, 24(2):683–693. https://doi.org/10.1111/anu.12597

Weatherley, A.H., Gill, H.S., Casselman, J.M (1987) The biology of fish growth. New York: Academic Press, p. 443.

Downloads

Published

23/04/2020

How to Cite

PORTO, E. L. N.; LIMA, F. F. de; SOUSA, R. M.; BANHARA, D. G. de A.; MENDONÇA, W. C. B.; HONORATO, C. A. Schinus terebinthifolius raddi pepper oil used as na addictive in Hyphessobrycon eques steindachner fish diet. Research, Society and Development, [S. l.], v. 9, n. 6, p. e192963118, 2020. DOI: 10.33448/rsd-v9i6.3118. Disponível em: https://www.rsdjournal.org/index.php/rsd/article/view/3118. Acesso em: 16 apr. 2024.

Issue

Section

Agrarian and Biological Sciences