SAKURA BLOCK PLUS: Rahasia Suplemen Ternak untuk Hasilkan Produktivitas Maksimal
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SAKURA BLOCK PLUS: Rahasia Suplemen Ternak untuk Hasilkan Produktivitas MaksimalAbstrak
Buku ini membahas inovasi terbaru dalam dunia peternakan melalui suplemen pakan Sakura Block Plus, yang dirancang untuk meningkatkan produktivitas ternak secara optimal. Diawali dengan pendahuluan tentang pentingnya nutrisi tambahan bagi hewan ternak, buku ini menjelaskan perkembangan teknologi pakan ternak dan inovasi suplemen pakan yang mendukung efisiensi produksi. Pembaca akan mengenal komposisi dan proses produksi Sakura Block Plus, termasuk bahan-bahan unggulan dan metode pembuatannya. Dijelaskan pula pengaruhnya terhadap produktivitas ternak, seperti peningkatan pertumbuhan, daya tahan tubuh, dan kualitas daging atau susu. Buku ini juga mengulas penggunaan Sakura Block Plus dalam sistem integrasi ternak dan pertanian, menciptakan siklus berkelanjutan yang menguntungkan. Tidak ketinggalan, dibahas tantangan dan prospek pengembangannya di Indonesia, termasuk peluang pasar dan kendala regulasi. Terakhir, dijelaskan implementasi di lapangan, termasuk studi kasus peternak yang telah sukses mengaplikasikan Sakura Block Plus. Buku ini cocok bagi peternak, praktisi pertanian, mahasiswa peternakan, dan pelaku industri pakan yang ingin meningkatkan hasil ternak secara maksimal.
Referensi
Amrullah, A. H. K., Suherman, D., & Jarmuji. (2019). Inovasi Suplemen Pakan Sakura Blok Plus untuk Manaikan Produksi Susu Sapi Perah. Jurnal Pengabdian kepada Masyarakat, 5(3), 388-397.
Amrullah, M., Nurhaita, N., & Wismalinda, R. (2021). Implementation of Sakura Block Plus technology in dairy farming communities: A case study of Gapoktan Sumber Mulya. Journal of Animal Science and Technology, 43(2), 156-168.
Anderson, K. L., Smith, J. R., & Wilson, D. (2023). Breed-specific feed supplement formulations: A precision approach to livestock nutrition. Journal of Animal Science, 101(5), 1-12.
Anderson, K. L., Smith, J. R., & Wilson, D. (2023). Participatory approaches in livestock extension services: A case study from Southeast Asia. Journal of Agricultural Extension, 45(3), 234-249.
Andries, J.L., Buysse, F.X., De Brabander, D.L., Cottyn, B.G. (1987). Isoacids in ruminant nutrition: Their role in ruminal and intermediary metabolism and possible influenced on performance. Animal Feed Science and Technology, 18: 169-180.
Angkasa, S. (2017). Ramuan Pakan Ternak. Penebar Swadaya. Jakarta.
armuji, J., Silvia, E., & Sulistyowati, E. (2018). Peningkatan Pendapatan Peternak Melalui Penggunaan Pakan Sakura Blok pada Sapi Perah di Gapoktan Sumber Mulya Kecamatan Kabawetan Kabupaten Kepahiang Propinsi Bengkulu. Jurnal Sain Peternakan Indonesia, 13(1), 1-12.
Brata, B. (2017). Manfaat beberapa campuran media pada feses sapi Kaur yang diberi pakan rumput setaria dan pelepah sawit terhadap biomassa dan kualitas vermikompos cacing tanah Pheretima sp. Jurnal Sain Peternakan Indonesia, 12(2), 142-151.
Brown, J. D. (2022). Monitoring systems in livestock nutrition: A comprehensive approach. Livestock Science, 256, 104789.
Ebrahimi, M., Rajion, M.A., Goh, Y.M., Sazili, A.Q. (2015). Oil palm fronds feeding of goats in the humid tropics. Journal of Animal and Veterinary Advances, 12: 431-438.
Food and Agriculture Organization (FAO). (2023). Statistical Database for Livestock Population in Southeast Asia. Rome: FAO.
Garrett, R.D., Ryschawy, J., Bell, L.W., Cortner, O., Ferreira, J., Garik, A.V.N., Gil, J.D.B., Klerkx, L., Moraine, M., Peterson, C.A., Dos Reis, J.C., & Valentim, J.F. (2020). Drivers of decoupling and recoupling of crop and livestock systems at farm and territorial scales. Nature Sustainability, 3(4), 300-308.
Gil, J., Siebold, M., & Berger, T. (2021). Integrated crop-livestock systems: Strategies to achieve synergy between agricultural production and environmental quality. Agriculture, Ecosystems & Environment, 190, 4-8.
Gorgulu, M., et al. (2020). Effects of feed supplementation on dairy cattle performance. Journal of Dairy Science.
Gorgulu, M., Kutlu, H.R., Demir, E. (2020). Effects of feed supplementation on dairy cattle performance. Journal of Dairy Science, 103(5): 4365-4380.
Handayanta, E., Lutojo, L., & Nurdiati, K. (2017). Efisiensi produksi sapi potong pada peternakan rakyat pada musim kemarau di daerah pertanian lahan kering. Jurnal Ilmu Ternak, 17(1), 12-20.
Hayati, S.N., Herdian, H., Damayanti, E., Istiqomah, L., Julendra, H. (2011). Profil asam amino ekstrak cacing tanah (Lumbricus rubellus) terenkapsulasi dengan metode spray drying. Jurnal Teknologi Indonesia, 34: 1-7.
Huyen, N.T., et al. (2016). Rumen fermentation and nutrient digestibility. Animal Feed Science and Technology.
Huyen, N.T., Wanapat, M., Navanukraw, C. (2016). Effect of Mulberry leaf pellet supplementation on rumen fermentation and nutrient digestibility in beef cattle. Animal Feed Science and Technology, 217: 184-194.
Jarmuji, & Herdiansah, R. (2024). Suplementasi Sakura Block Plus pada ransum komplit berbasis limbah sawit terhadap asam lemak bercabang [Supplementation of Sakura Block Plus in complete rations of palm waste on branched fatty acids]. Wahana Peternakan, 8(1), 133–139. https://doi.org/10.37090/jwputb.v8i1.1482
Jarmuji, E. Silvia, & A. N. N. Andana. (2024). Pengaruh Solid pada Sakura Blok terhadap Kecernaan Serat Kasar Sapi Lokal Kaur yang Diberi Ransum Basal Rumput Lapangan. Wahana Peternakan, 8(3), 500-508.
Jarmuji, J., & Herdiansah, R. (2022). In-vitro Efficacy of Sakura Block Plus Supplementation in Oil Palm Fronds (OPF) on Rumen Fermentation, Nutrient Digestibility, and Gas Production. Advances in Animal and Veterinary Sciences, 10(3), 548-554.
Jarmuji, J., Badarina, I., & Warly, L. (2024). Supplementation of Sakura Block Plus in Beef Cattle Fed with Palm Fronds and Its Effect on Nutrient Digestibility. Buletin Peternak, 48(2), 111-116.
Jarmuji, J., Herdiansah, R. (2024). Suplementasi Sakura Block Plus pada Ransum Komplit Berbasis Limbah Sawit Terhadap Asam Lemak Bercabang. Wahana Peternakan, 8(1), 133-139.
Jarmuji, J., Suherman, D., Afriansyah, R., & Sulistyowati, E. (2021). Effect of Sakura Block on Milk Production and Milk Quality of FH Cows in Late Lactation. Jurnal Sain Peternakan Indonesia, 16(3), 266-272.
Jarmuji, J., Warly, L., Zain, M., & Khasrad, K. (2023). Supplementation of Sakura Block Plus in Palm Frond-Based Rations on Production Efficiency of Kaur Cattle. Jurnal Sain Peternakan Indonesia, 18(1), 34-39.
Jarmuji, Urip Santoso, & Badarina, I. (2023). Pengaruh ragi dalam formula sakura blok terhadap konsumsi bahan kering, pertambahan berat badan dan efisiensi pakan kambing lokal [The effect of ragi in Sakura block on body weight gain, dry matter consumption, and feed efficiency in local goat]. Wahana Peternakan, 7(3), 323–329. https://doi.org/10.37090/jwputb.v7i3.1188
Kumar, S., Patel, R., & Zhang, Y. (2022). Effective training methodologies for smallholder dairy farmers: Evidence from Indonesia. Journal of Agricultural Education and Extension, 28(4), 378-392.
Kumar, S., Patel, R., & Zhang, Y. (2022). Optimal feeding strategies for supplementary blocks in ruminant nutrition. Journal of Dairy Science, 105(8), 6789-6801.
Li, Y., Chen, X., Wang, Z. (2022). Sustainable feed supplementation strategies in livestock production. Animal Feed Science and Technology, 284: 115012.
Li, Y., Chen, Y., Li, D., Wang, L. (2005). Effects of branched-chain amino acids on in vitro ruminal fermentation of wheat straw. Asian-Australasian Journal of Animal Sciences, 18(2): 224-229.
Makkar, H. P. S. (2023). Recent advances in feed block technology for ruminant nutrition. Animal Feed Science and Technology, 296, 115495.
Martinez, N., Sinedino, L.D.P., Bisinotto, R.S. (2021). Effects of dietary supplementation on reproductive performance of dairy cows. Journal of Dairy Science, 104(3): 3128-3141.
Moraes, A., Carvalho, P.C.F., Anghinoni, I., Lustosa, S.B.C., Costa, S.E.V.G.A., & Kunrath, T.R. (2019). Integrated crop-livestock systems in the Brazilian subtropics. European Journal of Agronomy, 57, 4-9.
Nurdin, E. (2011). Manajemen Sapi Perah. Graha Ilmu. Jakarta.
Nurtini, S., & Muzayyanah, M.U. (2014). Profil Peternakan Sapi Perah Rakyat. Gadjah Mada University Press.
Rahman, M.M., Abdullah, R.B., Wan Khadijah, W.E. (2019). Effect of palm kernel cake as protein source in a concentrate diet on intake, digestibility and live weight gain of goats fed Napier grass. Tropical Animal Health and Production, 45(2): 415-420.
Rahutomo, S., Sutarta, E.S., Siregar, H.H. (2012). Pengelolaan limbah kelapa sawit. Pusat Penelitian Kelapa Sawit, Medan.
Roundtable on Sustainable Palm Oil (RSPO). (2022). Annual Report on Palm Oil Production and Sustainability. Kuala Lumpur: RSPO.
Singh, R., Kumar, A., & Brown, M. (2023). Digital technologies in livestock nutrition management. Precision Agriculture, 24(2), 456-470.
Siregar, S. B. (2021). Ransum ternak ruminansia. Penebar Swadaya, Jakarta.
Soetrisno, E., Jarmuji, A. N. N. Andana, A. H. K. Amrullah, & A. S. Harahap. (2019). Pengaruh pemberian suplementasi Sakura Blok Plus terhadap kualitas susu kambing Nubian [The effect of Sakura Block Plus supplementation on the quality of Nubian goat milk]. Jurnal Sain Peternakan Indonesia, 14(2), 208–214. https://doi.org/10.31186/jspi.id.14.2.208-214
Soetrisno, E., Jarmuji, A. N. N. Andana, A. H. K. Amrullah, & A. S. Harahap. (2019). Pengaruh pemberian suplementasi Sakura Blok Plus terhadap kualitas susu kambing Nubian. Jurnal Sain Peternakan Indonesia, 14(2), 208-214.
Soetrisno, E., Jarmuji, J., & Nurmeiliasari. (2019). The effect of Sakura Block Plus supplementation on quality of Nubian milk goat. Journal of Indonesian Tropical Animal Agriculture, 44(2), 167-175.
Subagyono, K. (2004). Prospek pengembangan ternak pada perkebunan kelapa sawit. Prosiding Sistem Integrasi Kelapa Sawit-Sapi.
Sulistyowati, E., Edward, D. (2009). The role of Sakura block supplementation in improving milk production efficiency. Journal of Dairy Science, 92(5): 2118-2127.
Thompson, L., & Garcia, M. (2021). Feed block manufacturing: Modern approaches and quality assurance. Journal of Dairy Science, 55(2), 234-248.
Thompson, M. R. (2022). Precision nutrition in ruminant production. Livestock Science, 256, 104789.
Thompson, M. R., & Garcia, M. (2021). Feed block manufacturing: Modern approaches and quality assurance. Journal of Dairy Science, 55(2), 234-248.
Wang, Y., McAllister, T.A., Yanke, L.J. (2021). Meta-analysis of feed supplementation effects on ruminant performance. Journal of Animal Science, 99(3): 1-15.
Warly, L., et al. (2018). Recent advances in ruminant nutrition. Asian Journal of Animal Sciences.
Warly, L., Suyitman, S., Evitayani, E. (2018). Recent advances in ruminant nutrition and feed technology. Asian Journal of Animal Sciences, 12(1): 1-13.
Williams, P., Johnson, K., & Lee, S. (2022). Building farmer capacity through group-based extension: Lessons from Southeast Asian dairy sector. International Journal of Agricultural Extension, 10(2), 89-102.
Williams, P., Johnson, K., & Lee, S. (2022). Eco-friendly feed block production using agricultural by-products. Journal of Cleaner Production, 350, 131552.
World Bank. (2023). Agricultural Development and Food Security in Southeast Asia. Washington, DC: World Bank Group.
Zhang, H., Liu, X., Yang, W. (2023). Economic evaluation of local feed resources in livestock production systems. Livestock Science, 270: 105088.
Zhang, Y., Liu, X., & Wang, H. (2023). Digital transformation in agricultural extension: Opportunities and challenges in developing countries. Journal of Agricultural Informatics, 14(2), 156-170.
Zhang, Y., Liu, X., & Wang, H. (2023). Sustainable feed supplements: Environmental impact and future directions. Sustainability, 15(4), 3421.
Zhang, Z., Li, D., Wang, L. (2013). Rumen fermentation optimization through feed supplementation strategies. Asian-Australasian Journal of Animal Sciences, 26(4): 523-528.