Recent Advances and Future Directions in Poultry Nutrition- An Overview
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Keywords:
Antibiotic alternative, feed, nutrient, nutrition, poultryAbstract
The poultry industry in India has made a remarkable growth and it is currently emerging as a sunrise sector. The worldwide consumption of poultry products such as meat plus eggs are currently high and tends to grow continuously as compared to other livestock products. So, it is important to know what were the recent advances that were made and what will be the future directions in poultry nutrition in a brief. Recent advances that have made includes defining nutrient requirements and nutrient composition, least cost feed formulations based on amino acid and energy, use of biotechnological products in poultry feeding as well as nano minerals supplementation. There are certain future directions like use of alternative raw material, use of phytogenic feed additives as alternative to antibiotic growth promoter, focus on gizzard development and gut health, use of next generation feed enzymes and in ovo nutrition are of prime importance.
References
Adil, S. and Magray, S. N. 2012. Impact and manipulation of gut microflora in poultry: a review. J. Anim. Vet. Adv. 11: 873-877.
Aftab, U. 2009. Utilization of alternative protein meals with or without multiple-enzyme supplementation in broilers fed low-energy diets. J. Appl. Poult. Res. 18: 292-296.
Akyurek, H. and Orhan, Z.C. 2016. "Effects of phytase supplementation on the performance and egg quality of free-range layers", Int. J. Curr. Res. 8: 44142-44147.
Alagawany, M., Elnesr, S. S. and Farag, M. R. 2018. The role of exogenous enzymes in promoting growth and improving nutrient digestibility in poultry. Iranian J. Vet. Res. 19: 157-164.
Alloui, M. N., Szczurek, W. and Swiatkiewicz, S. 2013. The Usefulness of Prebiotics and Probiotics in Modern Poultry Nutrition: a Review. Annals Ani. Sci. 13: 17-32.
Amerah, A. M. 2015. Interactions between wheat characteristics and feed enzyme supplementation in broiler diets. Ani. Feed Sci. and Tech. 199: 1-9.
Amerah, A. M. and Ravindran, V. 2008. Influence of method of whole-wheat feeding on the performance, digestive tract development and carcass traits of broiler chickens. Ani. Feed Sci. and Tech. 147: 326-339.
Amerah, A. M., Ravindran, V., Lentle, R. G. and Thomas, D. G. 2007. Feed particle size: Implications on the digestion and performance of poultry. World's Pout. Sci. J. 63: 439-455
Angel, R., Saylor, W. W., Mitchell, A. D., Powers, W. and Applegate, T. J. 2006. Effect of dietary phosphorus, phytase, and 25-hydroxycholecalciferol on broiler chicken bone mineralization, litter phosphorus, and processing yields. Pout. Sci. 85: 1200-1211.
Anonymous. 2019. 20th livestock census-2019 all India report, Ministry of Fisheries, Animal Husbandry & Dairying, Department of Animal Husbandry & Dairying Animal Husbandry statistics division, Krishi bhawan, New Delhi. Pp:13-15
Applegate, T. J., Joern, B. C., Nussbaum-Wagler, D. L. and Angel, R. 2003. Water-soluble phosphorus in fresh broiler litter is dependent upon phosphorus concentration fed but not on fungal phytase supplementation. Poult. Sci. 82: 1024-1029.
Ashayerizadeh, A., Dastar, B., Shargh, M. S., Mahoonak, A. S. and Zerehdaran, S. 2018. Effects of feeding fermented rapeseed meal on growth performance, gastrointestinal microflora population, blood metabolites, meat quality, and lipid metabolism in broiler chickens. Livestock Sci. 216: 183-190.
Asmare, B. 2014. Biotechnological advances for animal nutrition and feed improvement. World J. Agri. Res. 2: 115-118.
Asmare, B. and Negewo, T. 2019. The potential of nutrigenomics from viewpoint of animal nutrition: a mini review. SVU-Int. J. Vet. Sci. 2: 75-81.
Bedford, M. and Cowieson, A. J. 2012. Exogenous enzymes and their effects on intestinal microbiology. Anim. Feed Sci. Tech. 173: 76-85.
Beski, S. S., Swick, R. A. and Iji, P. A. 2015. Specialized protein products in broiler chicken nutrition: A review. Anim. Nut. 1: 47-53.
Bolan, N. S., Szogi, A. A., Chuasavathi, T., Seshadri, B., Rothrock Jr, M. J. and Panneerselvam, P. 2010. Uses and management of poultry litter. World's Poult. Sci. J. 66: 673-698.
Bryden, W. L., Li, X., Ravindran, G., Hew, L. I. and Ravindran, V. 2009. Ileal Digestible Amino Acid Values in Feedstuffs for Poultry. Rural Industries Research and Development Corporation, Australia, 76 .
Cowieson, A. J., Bedford, M. R. and Ravindran, V. 2010. Interactions between xylanase and glucanase in maize-soy-based diets for broilers. British Poult. Sci.51(2): 246-257.
Dahiya, J. P., Wilkie, D. C., Van Kessel, A. G. and Drew, M. D. 2006. Potential strategies for controlling necrotic enteritis in broiler chickens in post-antibiotic era. Anim. Feed Sci. Tech. 129: 60-88.
Das, L., Bhaumik, E., Raychaudhuri, U. and Chakraborty, R. 2012. Role of nutraceuticals in human health. J. Food Sci.Tech. 49: 173-183.
Feng, M., Wang, Z. S., Zhou, A. G., and Ai, D. W. 2009. The effects of different sizes of nanometer zinc oxide on the proliferation and cell integrity of mice duodenum-epithelial cells in primary culture. Pak. J. Nut. 8: 1164-1166.
Gao, D., Chen, T. B., Liu, B., Zheng, Y. M., Zheng, G. and Li, Y. X. 2006. Releases of pollutants from poultry manure in China and recommended strategies for the pollution prevention. Geo. Res. 25: 311-319.
Ghormade, V., Khare, A. and Baghel, R. P. S. 2011. Nutrigenomics and its applications in animal science. Vet. Res. Forum, 147-155.
Hashemi. S.R. and Davoodi. H. 2010. Phytogenics as New Class of Feed Additive in Poultry Industry. J. Ani. Vet. Adv. 9: 2295-2304.
Hassan, S., Hassan, F. U. and Rehman, M. S. U. 2020. Nano-particles of trace minerals in poultry nutrition: Potential applications and future prospects. Bio. Trace Element Res. 195: 591-612.
Huyghebaert, G., Ducatelle, R. and Van Immerseel, F. 2011. An update on alternatives to antimicrobial growth promoters for broilers. The Vet. J. 187: 182-188.
Jha, R. and Berrocoso, J. D. 2015. Dietary fiber utilization and its effects on physiological functions and gut health of swine. Animal. 9: 1441-1452.
Jha, R., Singh, A. K., Yadav, S., Berrocoso, J. F. D. and Mishra, B. 2019. Early nutrition programming (in ovo and post-hatch feeding) as a strategy to modulate gut health of poultry. Front. Vet. Sci. 6: 82.
Kabir, S. M. 2009. The role of probiotics in the poultry industry. Int. J. Mol. Sci. 10: 3531-3546.
Karangiya, V. K., Savsani, H. H., Patil, S. S., Garg, D. D., Murthy, K. S., Ribadiya, N. K. and Vekariya, S. J. 2016. Effect of dietary supplementation of garlic, ginger and their combination on feed intake, growth performance and economics in commercial broilers. Vet. World, 9: 245.
Khan, M., Chand, N., Khan, S., Khan, R. U. and Sultan, A. 2018. Utilizing the house fly (Musca Domestica) larva as an alternative to soybean meal in broiler ration during the starter phase. Brazilian J. Poult. Sci. 20: 9-14.
Kolluri, G., Tyagi, J. S. and Sasidhar, P. V. K. 2020. Research Note: Indian poultry industry vis-Ã -vis coronavirus disease 2019: a situation analysis report. Poult. Sci. 100: 100828
Kore, K. B., Pathak, A. K. and Gadekar, Y. P. 2008. Nutrigenomics: Emerging face of molecular nutrition to improve animal health and production. Vet. World, 1: 285-286.
Latshaw, J. D. and Moritz, J. S. 2009. The partitioning of metabolizable energy by broiler chickens. Poult. Sci. 88: 98-105.
Leeson, S. 2008. Predictions for commercial poultry nutrition. J. Appl. Poult. Res. 17: 315-322.
Leytem, A. B., Plumstead, P. W., Maguire, R. O., Kwanyuen, P. and Brake, J. 2007. What aspect of dietary modification in broilers controls litter waterâ€soluble phosphorus: leesDietary phosphorus, phytase, or calcium?. J. Env. Quality, 36: 453-463.
Meremikwu, V. N., and Obikaonu, H. O. 2020. Effect of phase feeding on performance and economy of production of heavy broiler chickens. Nigerian J. Anim. Sci. 22: 186-193.
Mishra, A., Swain, R. K., Mishra, S. K., Panda, N. and Sethy, K. 2014. Growth performance and serum biochemical parameters as affected by nano zinc supplementation in layer chicks. Indian J. Anim. Nut. 31: 384-388.
Morozova, O. and Marra, M. A. 2008. Applications of next-generation sequencing technologies in functional genomics. Genomics, 92: 255-264.
Murphy, S. P. and Allen, L. H. 2003. Nutritional importance of animal source foods. The J. Nut. 133: 3932S-3935S.
Nisha, A. R. 2008. Antibiotic residues-a global health hazard. Vet. World, 1: 375-377.
Ordovas, J. M. and Mooser, V. 2004. Nutrigenomics and nutrigenetics. Curr. opinion Lipid. 15: 101-108.
Patra, A. and Lalhriatpuii, M. 2019. Progress and prospect of essential mineral nanoparticles in poultry nutrition and feeding—a Review. Bio. Trace Element Res.1-21.
Peebles, E. D. 2018. In ovo applications in poultry: a review. Poult. Sci. 97: 2322-2338.
Penn, C. J., Mullins, G. L., Zelazny, L. W., Warren, J. G. and McGrath, J. M. 2004. Surface runoff losses of phosphorus from Virginia soils amended with turkey manure using phytase and high available phosphorus corn diets. J. Env. Quality, 33: 1431-1439.
Rahim, F., Sabrina, S., Rusmawati, R., & Syibli, M. 2007. Broiler small intestine villi response to feed containing palm kernel cake which fermented with Rhizopus sp. J. Indonesian Tropical Anim. Agri., 32: 251-256.
Ravindran, V. 2012. Advances and Future Directions in Poultry Nutrition: An Overview. Korean J. Poult. Sci. 39: 53-62.
Ravindran, V. 2013. Poultry feed availability and nutrition in developing countries. Poult. Development Rev. 2: 60-63.
Ravindran, V. and Abdollahi, M. R. 2017. Achieving sustainable production of poultry meat Volume 2, In: Advances and future directions in poultry feeding: an overview. 1st ed. Burleigh Dodds Science Publishing. New-zealand. 113-130.
Restaino, E. A., Fernández, E. G., La Manna, A. and Cozzolino, D. 2008. Prediction of the nutritive value of pasture silage by near infrared spectroscopy (NIRS). Chilean J. Agri. Res. 69: 560-566.
Sakomura, N. K., Silva, E. P., Dorigam, J. C., Gous, R. M. and St-Pierre, N. 2015. Modeling amino acid requirements of poultry. J. Appl. Poult. Res. 24: 267-282.
Saminathan, M., Sieo, C. C., Kalavathy, R., Abdullah, N. and Ho, Y. W. 2011. Effect of prebiotic oligosaccharides on growth of Lactobacillus strains used as a probiotic for chickens. African J. Micro. Res. 5: 57-64.
Selle, P. H. and Ravindran, V. 2007. Microbial phytase in poultry nutrition. Anim. Feed Sci. Tech. 135: 1-41.
Singh, J and Gaikwad, D. S. 2020. Phytogenic Feed Additives in Animal Nutrition. In Natural Bioactive Products in Sustainable Agriculture. Springer, Singapore. pp - 273-289.
Singh, P., V.K. Singh, D. Tiwari, S. Gautam, V.B. Singh and Vipin. 2020. Effect of Phytobiotic and Exogenous Enzyme Supplementation on Economic Efficiency and Cost of Production of Broiler Chickens. Int. J. Curr. Micro. Appl. Sci. 9: 1852-1860.
Stoimenov, P. K., Klinger, R. L., Marchin, G. L. and Klabunde, K. J. 2002. Metal oxide nanoparticles as bactericidal agents. Langmuir, 18: 6679-6686.
Svihus, B. 2011. The gizzard: function, influence of diet structure and effects on nutrient availability. World's Poult. Sci. J. 67: 207-224.
Swain, P. S., Prusty, S., Rao, S. B. N., Rajendran, D. and Patra, A. K. 2021. Advances in Poultry Nutrition Research In: Essential Nanominerals and Other Nanomaterials in Poultry Nutrition and Production. IntechOpen.
Upadhaya, S. D., Ahn, J. M., Cho, J. H., Kim, J. Y., Kang, D. K., Kim, S. W., Kim, B.H. and Kim, I. H. 2021. Bacteriophage cocktail supplementation improves growth performance, gut microbiome and production traits in broiler chickens. J. Anim. Sci. Biotech. 12: 1-12.
Vieira, S. L., Stefanello, C. and Cemin, H. S. 2016. Lowering the dietary protein levels by the use of synthetic amino acids and the use of a mono component protease. Anim. Feed Sci. Tech. 221: 262-266.
Waldroup, P. W., Jiang, Q. and Fritts, C. A. 2005. Effects of supplementing broiler diets low in crude protein with essential and nonessential amino acids. Int. J. Poult. Sci. 4: 425-431.
Willemsen, H., Debonne, M., Swennen, Q., Everaert, N., Careghi, C., Han, H., and Decuypere, E. 2010. Delay in feed access and spread of hatch: importance of early nutrition. World's Poult. Sci. J. 66: 177-188.
Windisch, W., Schedle, K., Plitzner, C. and Kroismayr, A. 2008. Use of phytogenic products as feed additives for swine and poultry. J. Anim. Sci. 86: 140-148.
Yakubu, H. G., Kovacs, Z., Toth, T. and Bazar, G. 2020. The recent advances of near-infrared spectroscopy in dairy production—a review. Critical Rev. Food Sci. Nut. 1-22.
Zhou, J. B., Jiang, M. M. and Chen, G. Q. 2007. Estimation of methane and nitrous oxide emission from livestock and poultry in China during 1949–2003. Energy Policy, 35: 3759-3767.
Zhu, Y. F., Li, S. Z., Sun, Q. Z. and Yang, X. J. 2019. Effect of in ovo feeding of vitamin C on antioxidation and immune function of broiler chickens. Animal, 13: 1927-1933.
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