Evaluation of Westwood Larva (Cirina forda) Meal as feed for Broiler Production

Автори

  • Kolapo Kabir ARASI Dept. of Animal Nutrition and Biotechnology, Ladoke Akinola University of Technology, Ogbomoso Автор
  • Sadiq Gbolagade ADEMOLA Dept. of Animal Nutrition and Biotechnology, Ladoke Akinola University of Technology, Ogbomoso Автор
  • Muritala Daniel SHITTU Dept. of Animal Production and Health, Ladoke Akinola University of Technology, Ogbomoso Автор
  • Akinyinka Olu AKINWUMI Dept. of Animal Nutrition and Biotechnology, Ladoke Akinola University of Technology, Ogbomoso Автор
  • Adeyinka Adeniyi ODUNSI Dept. of Animal Nutrition and Biotechnology, Ladoke Akinola University of Technology, Ogbomoso Автор
  • Mary Eniola TOGUN Dept. of Animal Nutrition and Biotechnology, Ladoke Akinola University of Technology, Ogbomoso Автор

Ключови думи :

Insect larva meal, fishmeal, broiler, growth performance, serum enzymes, meat

Абстракт

One hundred and ninety eight (198) day old broiler chicks of Arbor Acre strain were used to
determine the performance, nutrients digestibility, serum enzymes and organoleptic properties of
broiler chickens fed graded levels of Westwood larva meal (WLM) as a replacement for local fishmeal
(Schilbe mystus) and imported fishmeal. Six experimental diets were fed in a completely randomized
design. Diet without fishmeal served as Negative Control (NC). Diet containing 100% imported
fishmeal (IF) was the Positive Control (PC). Westwood larva meal replaced imported fishmeal as well
as Schilbe mystus fishmeal (SMF) at 50% and 100% in the other four diets. Data were collected on
performance, serum enzymes and organoleptic properties. Data were analyzed using one-way analysis
of variance. The WLM, IF and SMF respectively contained 42.7%, 60.9% and 54.6% crude protein.
Westwood Larva meal showed high lysine (7.05%) and low methionine (0.91%) content. The final
body weight (FBW) and average daily gain (ADG) of broiler chicken fed 50% WLM as replacement
for SMF were significantly higher than those fed 100% SMF. Feeding 100% WLM to broiler chicken
caused elevated level of serum alanine aminotransferase (ALT). Highest ether extract, crude fibre
and nitrogen-free extract digestibility were noticed in broilers fed 100% SMF, 100% WLM and NC,
respectively. Thigh meat of broilers fed diet 100% WLM (T6) had the best colour, flavour, juiciness
and acceptability than those fed other diets.
It is concluded that WLM could optimally replace SMF and IF in broilers diet at 50% to support
maximum growth rate.

Литература (библиография)

Abu, O. A., Olaleru, I. F., Oke, T. D., Adepegba, V. A., & Usman, B. (2015). Performance of broiler chicken fed diets containing cassava peel and leaf meals as replacements for maize and soya bean meal. International Journal of Science and Technology, 4(4), 169-173. http://www.researchgate.net/publication/308016538

Ademola, S. G., Shittu, M. D., Owoeye, T. T., Ayoade, T. O., & Akintola, K. A. (2017). Response of broilers to improved and local fishmeal. Nigerian Journal of Animal Science, 19(2), 132-139.

Akinnawo, O., & Ketiku, A. O. (2000). Chemical composition and fatty acid profile of edible larva of Cirina forda (Westwood). African Journal of Biomedical Research, 3(2), 93-96.

Akintola, A. J., & Oyegoke, O. O. (2002).Feeding trials of the larva of the edible insect, Cirina forda (Westwood) on African Catfish, Clarias gariepinus (Geoffrey).World J. Biotech. 3 (2): 487-491. http://www.iosrjournals.org

Amao, O. A., Oladunjoye, I. O., Togun, V. A., Olubajo, K., & Oyaniyi, O. (2010). Effect of Westwood (Cirina forda) larva meal on the laying performance and egg characteristics of laying hen in a tropical environment. International Journal of Poultry Science, 9(5), 450-

http://doi.org/10.3923/jips.2010.450.454

Banjo, A. D., Lawal, O. A., & Songonuga, E. A. (2006). The nutritional value of fourteen species of edible insects in southwestern Nigeria. African journal of Biotechnology, 5(3), 298-301. http://doi.org/ 10.5897/AJB05.250

Bibiana, D. I., Chia, .A., & Comfort, U. I. (2014). Nutritional and Microbial Quality of Dried Larva of Cirina forda. International Journal of Nutrition and Food Sciences, 3(6), 602-606. http://doi.org/10.11648/j.ijnfs.20140306.28

Cho, J. H., & Kim, I. H. (2011). Fish meal–nutritive value. Journal of Animal Physiology and Animal Nutrition, 95(6), 685-692. http://doi.org/10.1111/j.1439-0396.2010.01109.x

De Marco, M., Martínez, S., Hernandez, F., Madrid, J., Gai, F., Rotolo, L., Belfor–ti, M., Bergero, D., Katz, H., Dabbou, S., Kovitvadhi, A., Zoccarato, I., Gas –co, L., & Schiavone, A. (2015). Nutritional value of two insect larval meals (Tenebrio molitor and Hermetia illucens) for broiler chickens: Apparent nutrient digestibility, apparent ileal amino acid digestibility and apparent metabolizable energy. Animal Feed Science and Technology, 209, 211-218. http://doi.org/10.1016/j.anifeedsci.2015.08.006

Guyton, A. C. (1991). Textbook of medical physiological. Philadelphia, Saunders. 1120-1168.

Hasan, M. R. (Ed.). (2007). Economics of aquaculture feeding practices in selected Asian countries (No. 505). Food & Agriculture Org. Rome, Italy. http://tinyurl.com/ybbv25a9.

Khan, S., Khan, R. U., Sultan, A., Khan, M., Hayat, S. U., & Shahid, M. S. (2016). Evaluating the suitability of maggot meal as a partial substitute of soya bean on the productive traits, digestibility indices and organoleptic properties of broiler meat. Journal of Animal Physiology and Animal Nutrition, 100(4), 649-656. http://doi.org/10.1111/jpn.12419

Khatoon, S., Hanif, N. Q., & Malik, N. (2006). Status of fish meal available for poultry rations in Pakistan. Pakistan Veterinary Journal, 26(2), 97-98. https://www.researchgate.net/publication/26520668

Litton, E. (1993). Grasshopper consumption by humans and freerange chickens reduces pesticide use in the Philippines. Food Insects Newsletter, 6(3).

Lucas, J. S., & Southgate, P. C. (2012). Farming Aquatic Animals and Plants. John Wiley and Sons, Chichester, UK, 648. http://www.wiley.com/en-us/aquaculture

Maidala, A., Ahmad, M., & Dafuwa, T. N. (2016). Nutritive Value of Locally Prepared Fishmeal (Winnows) on Growth Performance and Economics of Production of Broiler Chicken. Intl. J. Agri. E. Sci. 2(1):31-38. http://www.iiardpub.org

Malaisse, F. (1980). Les chenilles comestibles du Shaba méridional (Zaïre). Les Nathal Belges, 61: 2-24.

Omotoso, O. T. (2006). Nutritional quality, functional properties and anti-nutrient compositions of the larva of Cirina forda (Westwood)(Lepidoptera: Saturniidae). Journal of Zhejiang University Science B, 7(1), 51-55. http://doi.org/10.1631/jzus.2006.B0051

Osasona, A. I., & Olaofe, O. (2010). Nutritional and functional properties of Cirina forda larva from Ado-Ekiti, Nigeria. African Journal of Food Science, 4(12), 775-777.

Oyegoke, O. O., Akintola, A. J., & Fasoranti, J. O. (2006). Dietary potentials of the edible larvae of Cirina forda (westwood) as a poultry feed. African Journal of Biotechnology, 5(19), 1799-1802. http://doi.org/10.5897/AJB06.189

Oyegoke, O. O., Ayandiran, T. A., & Akintola, A. J. (2013). Cost effectiveness of replacing fish meal with cirina forda (westwood) larva in the diets of broilers. Agr Biol JN Am, 3(4), 55-59. http://doi.org/10.5251/abjna.2013.4.5.555.559

Riaz, M. N. (2005). Soy applications in food. CRC press, Boca Raton, FL, USA, 304.

Singh, U., Jambunathan, R., Saxena, K., & Subrahmanyam, N. (1990). Nutritional quality evaluation of newly developed high‐protein genotypes of pigeonpea (Cajanus cajan). Journal of the Science of Food and Agriculture, 50(2), 201-209. http://doi.org/10.1002/jsfa.2740500208

Van Huis, A. (2013). Potential of insects as food and feed in assuring food security. Ann. Rev. Ento. 58, 563-583. http://doi.org/10.1146/annurev-ento-120811-153704

Victor, O. O. (2017). Performance and meat quality of broiler chicken fed diets enriched with black soldier fly (Hermetia illucens) larvae meal (Doctoral dissertation, University of Nairobi) , Kenya.

Yen, A. L. (2010). Edible insects and other invertebrates in Australia: future prospects. In Forest Insects as Food: Humans Bite Back, Proceedings of a Workshop on Asia-Pacific Resources and their Potential for Development, edited by PB Durst, DV Johnson, RL Leslie and K.

Shono (pp. 65-84). Bangkok, FAO Regional Office for Asia and the Pacific.

American Meat Science Association (AMSA). (1995). Reserach guidelines for cookery, sensory evaluation and instrumental tenderness measurement for fresh meat. Chicago, IL: American Meat Science Association.

Association of Official Analytical Chemist (AOAC). (2000). Official Methods of Analysis.19th Edn.Washington, DC., USA.

Fishmeal International Network (FIN). (2015). Fishmeal for Poultry- A feed with a healthy future. Gafta House Rivington,London. http://www.gafta.com/FIN.html

Food and Agriculture Organisation (FAO). (2007). The state of world fisheries and aquaculture. FAO, Rome, Italy, 108.

Statistical Analysis System (SAS). (1999). Statistical Analysis System User Guide Statistics. SAS Insitute Inc. Cary NC 27513 USA

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Публикуван

28.06.2022

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Фуражи и хранене

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Как да цитирате

ARASI, K. K., ADEMOLA, S. G., SHITTU, M. D., AKINWUMI, A. O., ODUNSI, A. A., & TOGUN, M. E. (2022). Evaluation of Westwood Larva (Cirina forda) Meal as feed for Broiler Production . Животновъдни науки, 59(3), 32-42. https://agriacad.eu/ojs/index.php/bjah/article/view/87