EFEKTIVITAS KOMBINASI ASAM AMINO DAN TIAMIN (VITAMIN B1) TERHADAP PRODUKTIVITAS TANAMAN MELON BUDIDAYA HIDROPONIK
(1) Universitas 17 Agustus 1945 Banyuwangi
(*) Corresponding Author
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Proper nutrition will help increase productivity, on the other hand, an imbalance of nutrients can cause damage to plants. Hydroponic cultivation is expected to play a role in saving the use of nutrients more effectively. The combination of amino acids and vitamin B1 was given at different concentrations (0, 10, 20, and 30 mL/L) respectively. Measurements included plant height (cm), weight (gram), diameter (mm), and fruit flesh thickness (mm) as well as the total sugar content (Brix). Results showed that increasing the concentration did not significantly affect the response. The results of the LSD test showed that the addition of amino acid and vitamin B1 at doses of 10 mL/L was significantly different for the fruit diameter, explaining that increasing the dose of nutrients does not always have the best impact. Thus, the addition of a combination of amino acids and vitamin B1 for melon cultivation can be given at it lowest dose (10 mL/L).
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Abdissa, Y., Tekalign, T., & Pant, L. M. (2011). Growth, Bulb Yield and Quality of Onion (Allium cepa L.) as Influenced by Nitrogen and Phosphorus Fertilization on Vertisol I. Growth Attributes, Biomass Production and Bulb Yield. African Journal of Agricultural Research, 6(14), 3252–3258. https://doi.org/10.5897/AJAR10.1024.
Al-Mohammad, Maher H.S. 2016. Effect of Foliar Application of Amino Acid and NAA on The Growth, Yield and Some Phytoconstituents of Melon Citrullus Colocynthis L. Research Journal of Pharmaceutical, Biological and Chemical Sciences, 7(4): 509-516
Alwie, M.A. 2018. Analisis Preferensi Konsumen dalam Pembelian Buah Jeruk (Citrus sp.) di Pusat Pasar Kota Medan. Skripsi Agribisnis, Fakultas Pertanian Universitas Muhammadiyah Sumatera Utara, Medan
Bariyyah, K., Hadi, A., Sakinah, N., Istianingrum, P., Jayanti, A. L., Prapti, K. P., Yuniari, S. H., & Fahrurrozi, Moh. (2023). Teknologi Farm Management System untuk Mendukung Budidaya Pertanian Berkelanjutan. Jurnal Pertanian Presisi (Journal of Precision Agriculture), 7(1), 44–58. https://doi.org/10.35760/jpp.2023.v7i1.8337.
Canellasa, Luciano P., Olivares, Fábio L. Aguiar, Natália O. Jones, Davey L., Nebbiosoc, A., Mazzeic, P., & Piccoloc, A. (2015). Review: Humic and fulvic acids as biostimulants in horticulture. Scientia Horticulturae, 196 (2015) 15–27. https://doi.org/10.1016/j.scienta.2015.09.013
De Garmo EP, Sullivan WG, Canada JR. 1994. Engineering Economy. Seventh Edition. Macmillan Pub. Co, New York.
Khomphet, T., Promwee, A. & Islam, S.S. 2023. Effects of Foliar Fertilizer Application on the Growth and Fruit Quality of Commercial Melon Varieties Grown in a Soilless Culture System. PeerJ, 11. DOI 10.7717/peerj.14900
Mahmudan, A. (28/06/2022). Produksi Melon Turun 6,54% pada 2021. Dikutip pada 10 Mei 2023 dari https://dataindonesia.id/sektor-riil/detail/produksi-melon-turun-654-pada-2021.
Manalu, L.P. (2006). Studi Kasus Penentuan Rendemen Tebu di Pabrik Gula BUMN. Jurnal Keteknikan Pertanian, 2(1): 1-8
Mohamed, M.F., Thalooth A.T., Essa R. E. Y. and Mirvat E. Gobarah. 2018. The Stimulatory Effects of Tryptophan and Yeast on Yield and Nutrient Status of Wheat Plants (Triticum aestivum ) Grown in Newly Reclaimed Soil. Middle East J. Agric. Res., 7(1): 27-33, 2018
Rizaty, M.A. (27/04/2023). Produksi Melon di Indonesia Kembali Turun 8,08% pada 2022. Dikutip pada 10 Mei 2023 dari https://dataindonesia.id/sektor-riil/detail/produksi-melon-di-indonesia-kembali-turun-808-pada-2022.
Sakinah, N., Prangdimurti, E. & Palupi, N.S. (2019). Kandungan Gizi dan Mutu Protein Tepung Biji Kelor Terfermentasi. Jurnal Teknologi dan Industri Pangan, 30(2): 152-160
DOI: http://dx.doi.org/10.31602/zmip.v48i3.11512
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