Jenis Pakan Dan Kebiasaan Makan Ayam Buras Pada Sistem Pemeliharaan Ekstensif Di Lingkungan Rumah Tangga
DOI:
https://doi.org/10.70134/jipena.v3i1.1374Keywords:
Baumata Village, Dryland, Feed Identification, Native Chicken, ScavengingAbstract
This study aims to identify the profile of natural feed sources and domestic waste, as well as to analyze the dietary adaptation patterns of native chickens in response to limited conventional feed inputs in Baumata Village, a semi-arid region of East Nusa Tenggara (NTT). The method employed was direct field observation (case study) to map feed types and poultry feeding behavior. The results indicated that the identified feed sources were categorized into three main groups: plant-based domestic waste (leftover rice and tuber peels) as the primary energy source, natural feed (termites, insect larvae, and young leaf shoots) as sources of protein and fiber, and natural supplements (surface water and grit) to support digestion. Native chickens exhibited adaptive responses through increased scavenging duration (6–8 hours per day) during the morning to mitigate heat stress and cover nutritional deficits. Although this system minimizes production costs, the lack of bone residue in household waste in Baumata Village potentially leads to mineral deficiencies (Ca and P), which may hinder growth and eggshell quality. It is recommended to implement mineral supplementation based on local potential and develop alternative protein sources from insects (BSF maggots) to maintain sustainable native chicken productivity in dryland areas.
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References
Akhadiarto, S. (2019). “Prospek Pembuatan Pakan Ayam Dari Bahan Baku Lokal (Contoh Kasus Gorontalo)”. Jurnal Sains Dan Teknologi Indonesia, 17(1). https://doi.org/10.29122/jsti.v17i1.3420
Benbow, M., Barton, P., Ulyshen, M., Beasley, J., DeVault, T., Strickland, M., … & Pechal, J. (2018). “Necrobiome framework for bridging decomposition ecology of autotrophically and heterotrophically derived organic matter.” Ecological Monographs, 89(1). https://doi.org/10.1002/ecm.1331
Bingqian, N., Shah, A., Matra, M., Wanapat, M., Khan, R., Ahmad, S., … & Shah, M. (2023). “Insect bioactive compounds and their potential use in animal diets and medicine.” Entomological Research, 53(11), 429-443. https://doi.org/10.1111/1748-5967.12682
Bjone, H. and Fitches, E. (2021). “Which insect species and why?.” 8-16. https://doi.org/10.1079/9781789245929.0002
Edi, D. (2021). “Bahan Pakan Alternatif Sumber Energi untuk Subtitusi Jagung pada Unggas (Ulasan)”. Jurnal Peternakan Indonesia (Indonesian Journal of Animal Science), 23(1), 43-61. https://doi.org/10.25077/jpi.23.1.43-61.2021
Eeva, T. and Lehikoinen, E. (2009). “Polluted environment and cold weather induce laying gaps in great tit and pied flycatcher.” Oecologia, 162(2), 533-539. https://doi.org/10.1007/s00442-009-1468-9
Fathi, M., Galal, A., Radwan, L., Abou‐Emera, O., & Al‐Homidan, I. (2022). “Using major genes to mitigate the deleterious effects of heat stress in poultry: an updated review.” Poultry Science, 101(11), 102157. https://doi.org/10.1016/j.psj.2022.102157
Guntoro, S., Dinata, A., & Sudarma, I. (2016). “Combination of Using Cow Feces Powder and Probiotic in Feed for Layer Native Chicken”. Jurnal Biologi Udayana, 20(2), 47. https://doi.org/10.24843/jbiounud.2016.v20.i02.p01
Khalifah, A., Abdalla, S., Rageb, M., Maruccio, L., Ciani, F., & El‐Sabrout, K. (2023). “Could Insect Products Provide a Safe and Sustainable Feed Alternative for the Poultry Industry? A Comprehensive Review.” Animals, 13(9), 1534. https://doi.org/10.3390/ani13091534
Komi, A., Foenay, T., & Koni, T. (2021). “Tulang Tibia Ayam Kampung Super yang Diberi Pakan Mengandung Tepung Umbi Maek (Amorphophallus companulatus)”. Jurnal Veteriner, 22(4), 575-582. https://doi.org/10.19087/jveteriner.2021.22.4.575
Manno, N., Estraver, W., Tafur, C., Torres, C., Schwarzinger, C., List, M., … & Paoletti, M. (2018). “Edible Insects and Other Chitin-Bearing Foods in Ethnic Peru: Accessibility, Nutritional Acceptance, and Food-Security Implications.” Journal of Ethnobiology, 38(3), 424. https://doi.org/10.2993/0278-0771-38.3.424
Nitharwal, M., Kumawat, S., Jatav, H., Khan, M., Chandra, K., Attar, S., … & Dhaka, S. (2022). “Edible Insects a Novel Food Processing Industry: An Overview.” Agricultural Reviews. https://doi.org/10.18805/ag.r-2357
Ordóñez-Araque, R., Quishpillo-Miranda, N., & Ramos, L. (2022). “Edible Insects for Humans and Animals: Nutritional Composition and an Option for Mitigating Environmental Damage.” Insects, 13(10), 944. https://doi.org/10.3390/insects13100944
Papastavropoulou, K., Xiao, J., & Proestos, C. (2022). “Edible insects: Tendency or necessity (a review).” Efood, 4(1). https://doi.org/10.1002/efd2.58
Pardo, J., Bermejo, J., Ariza, A., Jurado, J., & Vallejo, M. (2025). “The effect of photoperiod, environmental temperature and wind speed on external quality of free-range turkey eggs.” Plos One, 20(6), e0326308. https://doi.org/10.1371/journal.pone.0326308
Prajalika, K. (1970). “Pengaruh Pemberian Berbagai Macam Gula Alami Terhadap Profil Darah Dan Performans Ayam Jawa Super Fase Starter”. Wahana Peternakan, 2(2). https://doi.org/10.37090/jwputb.v2i2.109
Samara, M., Robbins, K., & Smith, M. (1996). “Interaction of Feeding Time and Temperature and Their Relationship to Performance of the Broiler Breeder Hen.” Poultry Science, 75(1), 34-41. https://doi.org/10.3382/ps.0750034
Sankara, F., Pousga, S., Dao, N., Gbemavo, D., Clottey, V., Coulibaly, K., … & Kenis, M. (2018). “Indigenous knowledge and potential of termites as poultry feed in Burkina Faso.” Journal of Insects as Food and Feed, 4(4), 211-218. https://doi.org/10.3920/jiff2017.0070
Sanou, A., Sankara, F., Pousga, S., Coulibaly, K., Nacoulma, J., Kenis, M., … & Ouédraogo, I. (2018). “Indigenous practices in poultry farming using maggots in western Burkina Faso.” Journal of Insects as Food and Feed, 4(4), 219-228. https://doi.org/10.3920/jiff2018.0004
Sc, G. (2023). “Backyard poultry production: the future source of egg and meat under fast changing climatic scenario.” International Journal of Avian & Wildlife Biology, 7(1), 21-25. https://doi.org/10.15406/ijawb.2023.07.00186
Singh, M., Mollier, R., Paton, R., Pongener, N., Yadav, R., Singh, V., … & Mishra, V. (2022). “Backyard poultry farming with improved germplasm: Sustainable food production and nutritional security in fragile ecosystem.” Frontiers in Sustainable Food Systems, 6. https://doi.org/10.3389/fsufs.2022.962268
Siregar, D., Warisman, W., Setyaningrum, S., & Amrul, H. (2022). “Pemanfaatan Larva Lalat Black Solder Fly (Hermetia illucens) dengan Berbagai Media Berbeda sebagai Pakan Puyuh untuk Meningkatkan Pendapatan Masyarakat”. Jpkmi (Jurnal Pengabdian Kepada Masyarakat Indonesia), 3(1), 88-95. https://doi.org/10.36596/jpkmi.v3i1.332
Sriyanto, S., Putra, I., & Dharma, I. (2017). “Analisis Pendapatan Usaha Peternakan Ayam Buras Petelur dengan Menerapkan Teknologi Pakan Limbah Ternak Sapi (Studi Kasus di Kelompok Tani Ternak Sato Nadi, Kecamatan Tembuku, Kabupaten Bangli)”. Jurnal Agribisnis Dan Agrowisata. https://doi.org/10.24843/jaa.2017.v06.i01.p10
Sumiati, S., Erwan, E., Purnamasari, D., Syamsuhaidi, S., & Suhartini, S. (2021). “Potensi Kerabang Telur dalam Pakan Ayam Ras Telur Telur.” Jurnal Sains Teknologi & Lingkungan, 287-296. https://doi.org/10.29303/jstl.v0i0.281
Syafwan, W. “Effects of dietary changes on heat stress in broiler and Kampung chickens.” https://doi.org/10.18174/192420
Wibowo, B. (2017). “Dynamics Performance of Native Chicken Agribusiness in Indonesia”. Indonesian Bulletin of Animal and Veterinary Sciences (Wartazoa), 26(4), 191. https://doi.org/10.14334/wartazoa.v26i4.1398
Williams, D. and Williams, S. (2017). “Aquatic Insects and their Potential to Contribute to the Diet of the Globally Expanding Human Population.” Insects, 8(3), 72. https://doi.org/10.3390/insects8030072
Yen, A. (2009). “Edible insects: Traditional knowledge or western phobia?.” Entomological Research, 39(5), 289-298. https://doi.org/10.1111/j.1748-5967.2009.00239.x
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