Evaluation of Corn Fodder Hydroponic Nutrient Content As a Substitute of Forgive Livestock Feed
DOI:
https://doi.org/10.23960/jipt.v10i1.p28-38
Abstract View: 1415
Keywords:
Hydroponic fodder, Corn, Nutrient contentAbstract
Hydroponic fodder is a forage that is cultivated hydroponically. Fodder hydroponic cultivation can be done only with liquid media, carried out in a controlled environment, and a short planting period. Wheat, barley, sorghum, and corn are cereal crops that can be cultivated hydroponically as animal feed. Corn is a cereal crop that is easily available in Indonesia. Corn seeds grown hydroponically will affect the nutrient content. The purpose of this study was to determine the nutrient content of corn fodder. This research uses literature study and experimental methods. Data analysis used descriptive analysis. Based on the proximate analysis of corn fodder, the crude protein content was 11.135%, crude fat content was 4.950%, ash content was 2.340%, crude fiber content was 15.210%, water content was 88.99%, Ca content was 0.440%, crude fiber content was 0.440%. P was 0.770%, NaCl content was 0.036%, Na content was 0.014%, and ME was 31.200 MJ/kg. In conclusion, this corn fodder can be used as a forage substitute for animal feed because it has a fairly good nutrient content.
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Akbag, H. I., O. S. Turkmen, H. Baytekin, and I. Y. Yurtman. 2014. Effects of Harvesting Time on Nutritional Value of Hydroponic Barley Production. Turkish J. Agric. and Natural Sci. Special Issue 1(2): 1761-1765. www.turkjans.com
AOAC. 1990. Official Methods of Analysis 15th Edition. Association of Official Analytical Chemists, INC. Arlington.
Budiman, B., R.D. Sutrisno, S. P. S. Budhi, and Indrianto. 2012. Morphological Characteristics, Productivity and Quality of Three Napier Grass (Pennisetum purpureum Schum) Cultivars Harvested at Different Age. Journal of the Indonesian Tropical Animal Agriculture 37 (4): 294-301. DOI: https://doi.org/10.14710/jitaa.37.4.294-301
Chavan J., and S. S. Kadam. 1989. Nutritional Improvement of Cereal by Sprouting Critical Rev. Food Science Nutrition 28 (5): 401-437. DOI: 10.1080/10408398909527508
Chrisdiana, R. 2018. Quality and Quantity of Sorghum Hydroponic Fodder from Different Varieties and Harvest Time. in: IOP Conference Series : Earth and Environmental Science Tahun 2018 Fakultas Peternakan dsn Pertanian Universitas Diponegoro, Semarang 1-5. DOI: 10.1088/1755-1315/119/1/012014
Dung D. D., I. R. Goodwin, and J. V. Nolan. 2010. Nutrient Content and In Sacco Digestibility of Barley Grain and Sprouted Barley. Journal Animal Veteriner Advances 9(19): 24-30. DOI: 10.3923/javaa.2010.2485.2492
Ebenezer, R. J., P. P. T. Gnanaraj, T. Muthuramalingam, T. Devi, A. Bharathidasan, and A. S. Sundaram. 2018. Growth Performance and Economics of Feeding Hydroponic Maize Fodder with Replacement of Concentrate Mixture in New Zealand White Rabbit Kits. Journal of Animal Health and Production 6(2): 73–76. DOI: 10.17582/journal.jahp/2018/6.2.73.76
Ella, A. 2002. Produktivitas dan Nilai Nutrisi Beberapa Renis Rumput dan Leguminosa Pakan yang Ditanam Pada Lahan Kering Iklim Basah. Balai Pengkajian Teknologi Pertanian Sulawesi Selatan. Makassar.
Farghaly, M. M., M. A. Abdullah, I. M. Youssef, I. R. Abdel-Rahim, and K. Abouelezz. 2019. Effect of Feeding Hydroponic Barley Sprouts to Sheep on Feed Intake, Nutrient Digestibility, Nitrogen Retention, Rumen Fermentation and Ruminal Enzymes Activity. Livestock Science 228: 31–37. DOI: 10.1016/j.livsci.2019.07.022
Fazaeli, H., H. A. Golmohammadi, S. N. Tabatabayee, and M. Asghari-Tabrizi. 2012. Productivity and Nutritive Value of Barley Green Fodder Yield in Hydroponic System. World Applied Sciences Journal 16(4):531-539.
Haryanto, B. and A. Thalib. 2012. Emisi Metana dari Fermentasi Enterik: Kontribusinya Secara Nasional dan Faktor-Faktor yang Mempengaruhinya pada Ternak. Wartazoa 19(4): 157 – 165. DOI: 10.25077/jpi.21.3.319-326.2019
Karaki, G. N. and M. Hashimi. 2012. Green Fodder Production and Water Use Efficiency of Some Forage Crops under Hydroponic Conditions. ISRN Agronomy 12 (2): 1–5. DOI: 10.5402/2012/924672
Kumalasari, N. R., A.T. Permana, R. Silvia, and A. Martina. 2017. Interaction of Fertilizer, Light Intensity and Media on Maize Growth in Semi-Hydroponic System for Feed Production. In The 7th International Seminar on Tropical Animal Production Tahun 2017 Fakultas Peternakan Universitas Gajah Mada, Yogyakarta 90-96.
Lee, S., and J. Lee. 2015. Beneficial Bacteria and Fungi in Hydroponic Systems: Types and Characteristics of Hydroponic Food Production Methods. Sci. Hortic 195: 206-215. DOI: 10.1016/j.scienta.2015.09.011
NRC. 2000. Nutrient Requirement of Beef Cattle. Academy of Sciences. Washington DC.
NRC. 2001. Nutrient Requirement of Dairy Cattle. 8th Edition. National Academic of Science. Washington DC.
Nugroho, H. D., I. G. Permana, and Despal. 2015. Utilization of Bioslurry on Maize Hydroponic Fodder as a Corn Silage Supplement on Nutrient Digestibility and Milk Production of Dairy Cows. Media Peternakan 8 (3): 70–76. DOI: 10.5398/medpet.2015.38.1.70
Ramadhani, E., and A. Suprayogi. 2020. Analisis Potensi Hijauan Bahan Pakan Ternak Ruminansia di Desa Sukawening Kecamatan Dramaga Kabupaten Bogor Jawa Barat. Jurnal usat Inovasi Masyarakat 2 (3): 451-454.
Sampurna, I. P. 2013. Kebutuhan Nutrien Ternak. Fakultas Kedokteran, Universitas Udayana. Denpasar.
Saputro, A. L., I. S. Hamid, R. A. Prastiya, and M. T. E. Purnama. 2018. Hidroponik Fodder Jagung sebagai Substitusi Hijauan Pakan Ternak Ditinjau dari Produktivitas Susu Kambing Sapera. Jurnal Medik Veteriner 1(2): 48-51. DOI: 10.20473/jmv.vol1.iss2.2018.48-51
Savitri, M. V., S. Herni, and Hermanto. 2013. Pengaruh Umur Pemotongan terhadap Produktivitas Gamal (Gliricidia sepium). Jurnal Ilmu-Ilmu Peternakan 23 (2): 25–35.
Sudarmono, A. S., and Y.B. Sugeng. 2008. Sapi Potong, edisi revisi, cetakan ke-17. Penebar Swadaya. Semarang.
Wahyono, T., S. N. W. Hardani, and I. Sugoro. 2018. Low Irradiation Dose for Sorghum Seed Sterilization: Hydroponic Fodder System and In Vitro Study. Buletin Peternakan, 42(3): 215-221. DOI: 10.21059/buletinpeternak.v42i3.30888
Wahyono, T., H. Khotimah, W. Kurniawan, D. Ansori, and A. Muawanah. 2019. Karakteristik Tanaman Sorghum Green Fodder (SGF) Hasil Penanaman Secara Hidroponik yang Dipanen Pada Umur yang Berbeda. Jurnal Ilmu dan Teknologi Peternakan Tropis 6(2): 166-174. DOI: 10.33772/jitro.v6i2.5722
Wahyono, T., D. Sukandar, R. K. Dewi, W. Kurniawan, and Sihono. 2020. Pengaruh Perbedaan Varietas terhadap Profil Tanaman Sorghum Green Fodder yang Ditanam Secara Hidroponik. Jurnal Ilmu dan Teknologi Peternakan Tropis 7(2):101-109. DOI: 10.33772/jitro.v7i2.10862
Wahyono, T., and Sadarman. 2020. Hydroponic Fodder: Alternatif Pakan Bernutrisi di Masa Pandemi. Prosiding Seminar Teknologi dan Agribisnis Peternakan VII–Webinar: Prospek Peternakan di Era Normal Baru Pasca Pandemi COVID-19 Tahun 2020 Fakultas Peternakan Uniersitas Jendral Soedirman, Purwokerto 558-566.
Widiastuti, S., N. A. P. Nugraha, and T. P. Rahayu. 2021. Hydertetoyer sebagai Pengganti Lahan Hijauan Pakan Ternak Konvensional. Prosiding Seminar Teknologi dan Agribisnis Peternakan VIII–Webinar: Peluang dan Tantangan Pengembangan Peternakan Terkini untuk Mewujudkan Kedaulatan Pangan Tahun 2021 Fakultas Peternakan Universitas Jenderal Soedirman, Purwokerto 354-360.
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