Use of Carica papaya leaf as growth promoter and anti-parasitic in guinea fowl in Benin

Authors

  • Goué Géorcelin Alowanou Laboratoire d’Ethnopharmacologie et de Santé Animale, Faculté des Sciences Agronomiques, Université d’Abomey-Calavi, 01 PO Box 526 Cotonou, Benin Republic.
  • Vidjinnangni Fifamè Grâce Nadège Dedehou Laboratoire d’Ethnopharmacologie et de Santé Animale, Faculté des Sciences Agronomiques, Université d’Abomey-Calavi, 01 PO Box 526 Cotonou, Benin Republic.
  • Fréjus Tanguy Ablo Zinsou Laboratoire d’Ethnopharmacologie et de Santé Animale, Faculté des Sciences Agronomiques, Université d’Abomey-Calavi, 01 PO Box 526 Cotonou, Benin Republic.
  • Boris Milognon Béhingan Faculté des Sciences Agronomiques, Université d’Abomey-Calavi, 01 PO Box 509, Republic of Benin.
  • Delmas Yelognisse Kodjo National University of Science, Technology, Engineering and Mathematics (UNSTIM) of Abomey, Republic of Benin PO Box 133, Benin Republic.
  • Florent Mahugnon Guegni National University of Science, Technology, Engineering and Mathematics (UNSTIM) of Abomey, Republic of Benin PO Box 133, Benin Republic.
  • Sylvie Mawulé Hounzangbé-Adoté Laboratoire d’Ethnopharmacologie et de Santé Animale, Faculté des Sciences Agronomiques, Université d’Abomey-Calavi, 01 PO Box 526 Cotonou, Benin Republic.

Abstract

Carica papaya is a widespread plant in the tropics that has shown excellent nutritional potential. This plant is also rich in bioactive compounds. This study aimed at determining the effect of different levels of Carica papaya leaf meal (PLM) on growth parameters of guinea fowl and its use for pest control. Feeding trial was conducted on forty-five growing guinea fowls for six weeks. The anti-parasitic effect evaluation trial was realized for six weeks using also forty-five eight-week-old guinea fowl. For the two trials, 3 treatments with 3 replicates (5 birds per replicate) were made. A completely randomized design was arranged with R5 (Diet with 5% PLM), R10 (Diet with 10% PLM), Control (Diet without PLM). The parameters measured were feed intake, daily weight gain, feed convertion ratio (FCR) and faecal egg count. The results for the animal performances showed a significant weight difference in favor of groups R5 and R10 compared to the control group. The incorporation of PLM in the diets led to a significant increase (p < 0.01) in daily weight gain compared to the control group. There was no significant difference (p > 0.05) among the treatments for the feed intake and FCR. The inclusion of PLM in the diets at 5% and 10% (R5 and R10) significantly decreased EPG count for Ascaridia spp (p < 0.01), Eimeria spp (p < 0.001), Heterakis spp (p < 0.01), Syngamus spp (p < 0.01) compared to control group. It can be concluded that PLM can be used at the rates of 5% and 10% of feed for guinea fowls with benefit effect on growth performance and health.

References

Abd-ELGhany, F.T.F., EL-Gebali, M.M., Gad Ghada, G., 2021. Influence of papaya leaves and their extract supplementation on growing rabbit performance, physiological traits, immune responses and oxidative enzyme status. Egypt. J. Rabbit Sci., 31(2), 171-198.

Ali, A., Devarajan, S., Waly, M., Essa, M.M., Rahman, M., 2011. Nutritional and medicinal value of papaya (Carica papaya L.), in Natural Products and Bioactive Compounds in Disease Prevention. Nova Sci. Publ., 34-42.

Ayodele, S.O., Oloruntola, O.D., Agbede, J.O., 2016. Effect of Alchornea cordifolia leaf meal inclusion and enzyme supplementation on performance and digestibility of rabbits. World Rabbit Sci., 24, 201-206. doi: 10.4995/wrs.2016.3933

Banjoko, O.J., Adebayo, I.A., Osho, I.B., Olumide, M.D., Fagbiye, O.O.A., Ajayi, O.A., Akinboye, O.E., 2020. Evaluation of varying levels of Carica papaya leaf meal on growth, carcass, hematological parameters and its use as anticoccidial for broiler chicken. Niger. J. Anim. Sci., 22(3), 229-241.

Carré, P., 2020. Transformation du soja à la ferme, technologies disponibles. ITAB Edition.

Cringoli, G., Rinaldi, L., Maurelli, M.P., Utzinger, J., 2010. FLOTAC: new multivalent techniques for qualitative and quantitative copromicroscopic diagnosis of parasites in animals and humans. Nat. Protoc., 5, 503-515. DOI:10.1038/nprot.2009.235

Dahouda, M., Senou, M., Toleba, S.S., Boko, C.K., Adandedjan, J.C., Hornick, J.L., 2008. Comparaison des caractéristiques de production de la pintade locale (Numida meleagris) en station et dans le milieu villageois en zone soudano guinéenne du Bénin. Livest. Res. Rural. Dev., 20, 1-12.

Ebenebe, C.I., Itefue, O., Ebere-Ohameje, T.C., Okonkwo, J.C., 2011. Fortification of the nutritive value of Mushroom (Termitomyces microcarpus) with paw-paw leaf meal for broiler chicks diet. Pak. J. Nutr., 10(2), 155-158.

FAO, 2015. Secteur Avicole Bénin. Revues nationales de l’élevage de la division de la production et de la santé animales de la FAO. No. 10. Rome.

Francis, G., Kerem, Z., Makkar, H.P.S., Becker, K., 2002. The biological action of saponins in animal systems. Br. J. Nutr., 88, 587-605.

Hossain, M.A., Iji, P.A., Islam, A.M.F., 2016. Gross responses and apparent digestibility of amino acid and mineral in broiler chickens fed vegetable-based starter diets supplemented with microbial enzymes. Turk. J. Vet. Anim. Sci., 40, 1-7. doi: 10.3906/vet-1504-65

Kadiri, O., Olawoye, B., Fawale, O.S., Adalumo, O.A., 2016. Nutraceutical and antioxidant properties of the seeds, leaves and fruits of Carica papaya: Potential relevance to human diet, the food industry and the pharmaceutical industry: A review. Turk. J. Agr. Food Sci. Tech., 4(12), 1039-1052, doi: 10.24925/turjaf.v4i12.1039-1052.569

Lombo, Y., Tona, K., Talaki, E., Bonfoh, B., 2018. Effet de l’alimentation sur la croissance des pintadeaux au nord du Togo. Int. J. Biol. Chem., 12(5), 2109-2118.

Makkar, H.P.S., 2003. Tannin assays, effects end fate of tannins, and strategies to overcome detrimental effects of feeding tannin-rich tree and shrub foliage. Small Rumin. Res., 49, 241-256.

Musundire, M.T., Halimani, T.E., Chimonyo, M., 2017. Physical and chemical properties of meat from scavenging chickens and helmeted guinea fowls in response to age and sex. Br. Poult. Sci., 58, 390-396.

Odhong, C., Wahome, R.G., Vaarst, M., Nalubwama, S.W., Kiggundu, M., Halb, N., Githigia, S., 2014. In vitro anthelmintic effects of crude aqueous extracts of Tephrosia vogelii, Tephrosia villosa and Carica papaya leaves and seeds. Afr. J. Biotech., 13(52), 4667-4672.

Ogbuokiri, U.D.E., Iheanacho, A., Osuji, A.L., Okoli, I.C., Ekenyem, B.U., 2014. Effect of pawpaw leaf (Carica papaya, linn.) meal on some performance attributes of starter broiler chicks. J. Anim. Sci. Adv., 4(5), 826-832.

Onyimonyi, A.E., Onu, E., 2009. An assesment of pawpaw leaf meal as protein ingredient for finishing broiler. Int. J. Poult. Sci., 8(10), 995-998.

Quinsac, A., Labalette, F., Carre, P., Janowski, M., Fine, F., 2012. Comment valoriser dans l’alimentation animale, les graines de soja produites en France? Comparaison de deux procédés de transformation: l’aplatissage-cuisson-pression et l’extrusion-pression. Oilseeds and fats, Crops and Lipids, 19(6), 347-357.

R Core Team, 2018. A language and environment for statistical computing: R Foundation for Statistical Computing, Vienna, Austria. http:// www.R-project.org/. Accessed 24 Feb 2022

Saarinen, M.T., Kettunen, H., Pulliainen, K., Peuranen, S., Tiihonen, K., Remus, J., 2001. A novel method to analyze betaine in chicken liver: effect of dietary betaine and choline supplementation on the hepatic betaine concentration in broiler chicks. J. Agr. Food Chem., 49, 559-563.

Sanfo, R., Traoré, F., Yougbare, B., Ouali, W., 2018. Effet du poids de l’œuf de pintade (Numida meleagris) sur les paramètres de reproduction et de croissance des pintadeaux au Burkina Faso. Rev. Elev. Med. Vet. Pays. Trop., 70(4), 121-125.

Sarker, S.K., Begum, N., Mondal, D., Siddique, M.A., Rashid, M.A., 2010. In vitro study of antiamoebic effect of methanol extract of mature seeds of Carica papaya on trophozoites of Entamoeba histolytica. Bangladesh J. Pharmacol., 5(1), 45-47.

Saulawa, L.A., Sabo, M.N., Garba, M.G., 2015. Performance of weaner rabbits fed diets supplemented with Pawpaw (Carica Papaya) leaf meal. Sci. J. Anim. Sci., 4, 187-191.

Shrivastava, H.P., Sadagopan, V.R., Johri, T.S., Chand, S., 1981. Sunflower seed meal for poultry-a review. Indian Poult. Gazette, 65, 100-112.

Unigwe, C.R., Okorafor, U.P., Ogbu, U.M., Nwufoh, O.C., 2014. The nutritive profile of sun-dried paw-paw (Carica Papaya) leaf meal and its effect on the growth performance of broiler chickens. Int. J. Pure Appl. Sci., 20(2), 72-78.

Zhang, T., Chen, W., 2017. The candida albicans inhibitory activity of the extract from papaya (Carica papaya L.) seed relates to mitochondria dysfunction. Int. J. Mol. Sci., 18, 1858. doi: 10.3390/ijms18091858

Published

2022-10-17

How to Cite

Alowanou, G. G. ., Dedehou, V. F. G. N., Zinsou, F. T. A. ., Béhingan, B. M. ., Kodjo, D. Y. ., Guegni, F. M. ., & Hounzangbé-Adoté , S. M. . (2022). Use of Carica papaya leaf as growth promoter and anti-parasitic in guinea fowl in Benin. Scientific Journal of Zoology, 10(5), 758-766. Retrieved from http://sjournals.com/index.php/sjz/article/view/1724

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Original Article