PERBEDAAN PERFORMA AYAM BIBIT INDUK PEDAGING JANTAN DAN BETINA
Kata Kunci:
ayam bibit induk pedaging, jenis kelamin, performa, konsumsi pakan, keseragamanAbstrak
Permintaan daging ayam global diketahui cenderung meningkat setiap tahun. Optimalisasi unggas bibit diperlukan agar produksi ayam konsumsi lebih efisien sehingga dapat memenuhi permintaan yang terus
meningkat. Penelitian ini bertujuan untuk membandingkan performa ayam bibit induk pedaging jantan dan betina dari segi konsumsi pakan, bobot badan, keseragaman, dan tingkat deplesi. Penelitian dilakukan di
PT. Japfa Comfeed Indonesia Tbk. Unit Cipunagara 1 menggunakan ayam Strain Lohmann Indian River berusia 12 minggu, terdiri dari 14.799 ekor jantan dan 103.621 ekor betina. Data dikumpulkan melalui laporan performa mingguan dari kandang, dan analisis dilakukan dengan uji-t dua sampel dengan varians yang sama untuk menilai perbedaan antara jenis kelamin. Hasil penelitian menunjukkan bahwa ayam jantan memiliki konsumsi pakan dan bobot badan yang lebih tinggi, yang mencerminkan pertumbuhan yang lebih cepat dan kebutuhan nutrisi yang lebih besar. Sedangkan, ayam betina menunjukkan keseragaman populasi yang lebih baik serta tingkat deplesi yang lebih rendah, yang dipengaruhi oleh perilaku yang lebih tenang, dominansi yang lebih rendah, dan respons imun yang lebih stabil. Perbedaan dalam keseragaman juga dipengaruhi oleh tingkat persaingan pakan dan perilaku agresif yang lebih tinggi pada jantan. Tingginya deplesi pada jantan berkaitan dengan stres metabolik, sensitivitas terhadap suhu tinggi, dan agresivitas sosial. Secara keseluruhan, perbedaan antara jenis kelamin memiliki dampak signifikan terhadap performa ayam bibit, sehingga manajemen pemeliharaan yang spesifik untuk setiap jenis kelamin sangat dibutuhkan. Penelitian ini menyimpulkan bahwa dalam hal pertumbuhan, jantan menunjukkan keunggulan, sementara betina lebih unggul dalam hal keseragaman dan daya hidup.
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Referensi
Afrouziyeh, M., Zukiwsky, N. M., and Zuidhof, M. J. 2021. Timing of growth affected broiler breeder feeding motivation and Reproductive traits. Poultry science. 100(9): 101375 https://doi.org/10.1016/j.psj.2021.101375
Arrazola, A., Widowski, T. M., Guerin, M. T., Kiarie, E. G., and Torrey, S. 2019. The effect of alternative feeding strategies for broiler breeder pullets: 2. Welfare and performance during lay. Poultry Science. 98(12):
6205-6216. https://doi.org/10.3382/ps/pez447.
Barbour, E. K., Hamadeh, S. K., Hilan, C., and Abbas, S. S. 1995. Comparison of immunity and resistance to diseases in male and female poultry breeders in lebanon. Tropical Animal Healt and Production. 27: 65–
70. https://doi.org/10.1007/BF02236311
Cui, L., Zhang, X., Cheng, R., Ansari, A. R., Elokil, A. E., Hu, Y., Chen, Y., Nafady, A. A., and Liu, H. 2021. Sex differences in growth performance are related to cecal microbiota in chicken. Microbial Pathogenesis.
150: 104710. https://doi.org/10.1016/j.micpath.2020.104710
Da Costa, M. J., Zaragoza-Santacrus, S., Frost, T. J., Halley, J., and Pesti, G. M. 2017. Straight-run vs. Sex separate rearing for 2 broiler genetic lines part 1: live production parameters, carcass yield, and feeding behavior.
Poultry Saince. 96(8) :2641-2661. https://doi.org/10.3382/ps/pex035
England, A. D., Gharib-,Naseri, K., Kheravii, S. K., and Wu, S. 2022. Influence of sex and rearing method on performance and flock uniformity in broilers-implications for research settings. Animal nutrition. 12:
276–283. https://doi.org/10.1016/j.aninu.2022.12.003
England, A. D., Gharib-Naseri, K., Kheravii, S. K., and Wu, S. 2022. Rearing broilers as mixed or single-sex:
relevance to performance, coefficient of variation, and flock uniformity. Poultry Science. 101(12):
102176. https://doi.org/10.1016/j.psj.2022.102176
England, A. D., Heras-Saldana, S., Gharib-Naseri, K., Kheravii, S. K., and Wu, S. 2024. The effect of sex and dietary crude protein level on nutrient transporter gene expression and cecal microbiota populations in broiler
chickens. Poultry Science. 103(2): 103268. https://doi.org/10.1016/j.psj.2023.103268
Gafar, E. G., Abdo, S. G., Mahrous, M. Y., and Kamal, M. A. 2022. Effect of strain and sex on productive performance and carcass traits in some broiler chickens. Archives of agriculture. Sciences Journal.
5(1):77-87. https://dx.doi.org/10.21608/aasj.2022.233391
Garcia-Morales, C., Nandi, S., Zhao, D., Sauter, K. A., Vervelde, L., McBride, D., Sang, H. M., Clinton, M., and Hume, D. A. (2015). Cell-autonomous sex differences in gene expression in chicken bone marrow-derived
macrophages. Journal of Immunology. 194(5): 2338–2344.
https://doi.org/10.4049/jimmunol.1401982.
Hartcher, K. M., and Lum, H. K. 2019. Genetic selection of broilers and welfare consequences: a review. World’s
Poultry Science Journal. 76(1): 154–167. https://doi.org/10.1080/00439339.2019.1680025
Heijmans, J., Duijster, M., Gerrits, W. J. J., Kemp, B., Kwakkel, R. P., and Brand, H. 2021. Impact of growth curve and dietary energy-to-protein ratio on productive performance of broiler breeders. Poultry cience.
100(7): 101131. https://doi.org/10.1016/j.psj.2021.101131
Lee, k., Kil, D. Y., and Sul, W. J. 2017. Cecal microbiome divergence of broiler chickens by sex and body weight. Journal of Microbiology. 55: 939–945. https://doi.org/10.1007/s12275-017-7202-0
Liu, L., Ren, M., Ren, K., Jin, Y., and Yan, M. 2020. Heat stress impacts on broiler performance: a systematic review and meta-analysis. Poultry Science. 99(11): 6205-6211. https://doi.org/10.1016/j.psj.2020.08.019.
Maynard, C. J., Maynard, C. W., Jackson, A. R., Kidd, M. T., Rochell, S. J., and Owens, C. M. (2023). Characterization of growth patterns and carcass characteristics of male and female broilers from four commercial strains
fed high or low density diets. Poultry science. 102(3):102435. https://doi.org/10.1016/j.psj.2022.102435
Millman, S. T., Duncan, I. J. H., and Widowski, T. M. 2000. Male broiler breeder fowl display high levels of agression toward females. Poultry Science. 79(9): 1233-1241. https://doi.org/10.1093/ps/79.9.1233.
Mphepya., L. C., van Rensburg, W. J., Mpofu, T. J., Mtileni, B., and Nephawe, K. A. 2019. Influence of male-male competition on reproductive performance and mortality of broiler breeders following intra-spiking.
Poultry Science. 98(10): 4549-4554. https://doi.org/10.3382/ps/pez273.
OECD/FAO 2025. OECD-FAO agricultural outlook 2025-2034, Paris and Rome, https://doi.org/10.1787/601276cd-en.
Riber, A. B. and Wurtz, K. E. 2024. Impact of growth rate on the welfare of broiler. Animals,. 14(22): 3330.
https://doi.org/10.3390/ani14223330.
Tumova., A. and Chodova, D. 2018. Performance and changes in body composition of broiler chickens depending on feeding regime and sex. Czech Journal of Animal Science. 63(12): 518-525.
https://doi.org/10.17221/125/2018-CJAS
van Emoues, R. A., Mens, A. J. W., and Winkel, A. 2021. Effects of diet density and feeding frequency during the rearing period on broilerbreeder performance. British Poultry Science. 62(5): 686-694.
https://doi.org/10.1080/00071668.2021.1918634
van Emous, R. A., Kwakkel, R. P., van Krimppen, M. M., van den Brand, H., and Hendriks, W. H. 2015. Effects of growth patterns and dietary protein levels during rearing of broiler breeders on fertility, hatchability, embryonic mortality, and offspring performance. Poultry Science. 94(4): 681-691. https://doi.org/10.3382/ps/pev024.
Xiao, Y., Wu, C., Li, K., Gui, G., Zhang, G., and Yang, H. 2017. Association of growth rate with hormone levels and myogenic gene expression profil in broilers. Journal of Animal Science and Biotechnology. 8(43): 1-7. https://doi.org/10.1186/s40104-017-0170-8
Yerpes, M., Lionch, P., and Manteca, X. 2020. Factors associated with cumulative first-week mortality in broiler chicks. Animals. 10(2): 310. https://doi.org/10.3390/ani10020310
Yuan, T., Lien, R. J., and McDaniel, G. R. 1994. Effects of increased rearing period body weights and early photo
stimulation on broiler breeder egg production. Poultry science. 73(6):792–800. https://doi.org/10.3382/ps.0730792
Zuidhof, M. J. 2021. Lifetime productivity of conventionally and precision-fed broiler breeders. Poultry Science.
97(11): 3921-3937. https://doi.org/10.3382/ps/pey252
Zuidhof, M. J., Holm, D. E., Renema, R. A., Jalal, M. A., and Robinson, F. E. 2015. Effects of broiler breeder management on pullet body weight and carcass uniformity. Poultry Science. 94(6): 1389-1397. https://doi.org/10.3382/ps/pev064
Zuidhof, M. J., Fedorak, M. V., Ouellette, C. A., and Wenger, I. I. 2017. Precision feeding: innovative management of broiler breeder feed intake and flock uniformity. Poultry Science. 96(7): 2254–2263.
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Hak Cipta (c) 2025 Ahmad Muzakki, Ismoyowati Ismoyowati, Imam Suswoyo (Penulis)

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