PUPUK ORGANIK CAIR “JAKABA” SEBAGAI ALTERNATIF MEDIA PERTANIAN BERKELANJUTAN DI DESA BALONGDOWO
DOI:
https://doi.org/10.33795/abdimas.v12i2.9069Keywords:
liquid organic fertilizer, JAKAB, biofertilizer, sustainable Balongdowo VillageAbstract
Liquid Organic Fertilizer (POC), known as Jakaba (Eternal Lucky Mushroom), is an innovative natural fertilizer produced through a fungal fermentation process from various selected organic components. The main composition in making this fertilizer involves ingredients that are very easy to find in the surrounding environment, such as rice bran, shrimp paste (terasi), bean sprouts, rice washing water (leri), bamboo roots, bamboo leaves, and molasses as an energy source for microorganisms. The combination of these ingredients creates a nutrient-rich growing medium for Jakaba fungi, which then produces a fermented liquid with a very complete content of macro and micro nutrients for plants. Jakaba fertilizer has been widely known by farmers for its extraordinary ability to improve soil fertility and maintain overall plant health. For the people of Balongdowo Village, the application of this fertilizer is a strategic step and a sustainable choice in modern agricultural practices. This is because the production process is relatively easy, uses abundant natural ingredients, and is very friendly to environmental sustainability. The use of Jakaba provides a real solution for farmers to reduce dependence on synthetic chemical fertilizers, which if used excessively and continuously can damage the soil ecosystem, kill good microbes, and reduce land productivity in the long term.
References
Apriyanto, A., Fedri Ibnusina, & Roni Afrizal. (2023). Pemberian Dosis POC Jakaba Terhadap Pertumbuhan dan Produksi Tanaman Pakcoy (Brassica rapa L.). Perbal: Jurnal Pertanian Berkelanjutan, 11(3), 343–351. https://doi.org/10.30605/perbal.v11i3.2950
Boutafda, A., Hafidi, M., Ouhdouch, Y., Pinelli, E., Jemo, M., & El Fels, L. (2023). Fungal Strain as Biological Tool to Remove Genotoxicity Effect of Phenolic Compounds from Olive Mill Wastewater. Sustainability, 15(8), 6510. https://doi.org/10.3390/su15086510
Cooper, A., & Jeitner, T. (2016). Central Role of Glutamate Metabolism in the Maintenance of Nitrogen Homeostasis in Normal and Hyperammonemic Brain. Biomolecules, 6(2), 16. https://doi.org/10.3390/biom6020016
Csutora, M., Harangozo, G., & Szigeti, C. (2022). Factors behind the Consumer Acceptance of Sustainable Business Models in Pandemic Times. Sustainability, 14(15), 9450. https://doi.org/10.3390/su14159450
Dawood, M. G., Sadak, M. Sh., Abdallah, M. M. S., Bakry, B. A., & Darwish, O. M. (2019). Influence of biofertilizers on growth and some biochemical aspects of flax cultivars grown under sandy soil conditions. Bulletin of the National Research Centre, 43(1), 81. https://doi.org/10.1186/s42269-019-0122-x
Ghazanfar, M. U., Hamid, M. I., Raza, M., Raza, W., & Qamar, M. I. (2019). Suppressiveness of Late Blight and Fusarium Wilt of Tomato with Trichoderma Fortified Composts. Sarhad Journal of Agriculture, 35(3). https://doi.org/10.17582/journal.sja/2019/35.3.823.833
Hariyono, & Edo Ahmat Imam Muzaki. (2023). Analisis Pendapatan dan Kelayakan Jamur Jakaba Menjadi Pupuk Organik Cair di Desa Kurungan Nyawa 3 Kecamatan Buay Madang Kabupaten Oku Timur. Jurnal Bakti Agribisnis, 9(02), 8–15. https://doi.org/10.53488/jba.v9i02.157
Le, T. Y. L., Lee, J., Shim, S.-Y., Jung, J., Kim, S.-R., Hong, S.-H., Lee, M.-G., & Hwang, S.-G. (2025). Effects of Liquid Bio-Fertilizer on Plant Growth, Antioxidant Activity, and Soil Bacterial Community During Cultivation of Chinese Cabbage (Brassica rapa L. ssp. pekinensis). Microorganisms, 13(5), 1036. https://doi.org/10.3390/microorganisms13051036
Lee, J., Jo, N.-Y., Shim, S.-Y., Le, T. Y. L., Jeong, W. Y., Kwak, K. W., Choi, H. S., Lee, B.-O., Kim, S.-R., Lee, M.-G., & Hwang, S.-G. (2025). Impact of organic liquid fertilizer on plant growth of Chinese cabbage and soil bacterial communities. Scientific Reports, 15(1), 10439. https://doi.org/10.1038/s41598-025-95327-w
Meliza, M., Ibnusina, F., & Nofrianil, N. (2025). Giving a combination of Ab-mix and LOF Jakaba to the growth and production of hydroponic pakcoy plants. Agritech : Jurnal Fakultas Pertanian Universitas Muhammadiyah Purwokerto, 26(2). https://doi.org/10.30595/agritech.v26i2.22184
Mukherjee, C., & Chakraborty, S. (2021). Study of dietary polyphenols from natural herbal sources for providing protection against human degenerative disorders. Biocatalysis and Agricultural Biotechnology, 33, 101956. https://doi.org/10.1016/j.bcab.2021.101956
Nabayi, A., Teh, C. B. S., Tan, A. K. Z., & Tan, N. P. (2022). Consecutive Application Effects of Washed Rice Water on Plant Growth, Soil Chemical Properties, Nutrient Leaching, and Soil Bacterial Population on Three Different Soil Textures over Three Planting Cycles. Agronomy, 12(9), 2220. https://doi.org/10.3390/agronomy12092220
Ndese, T. V. P., Kamagi, D. D. W., Lawalata, H. J., Mokosuli, Y. S., & Tauluh, M. L. S. (2024). The Effect of Biofertilizer (Jakaba) Fertilizer on Vegetative Growth of Chili Plants (Capsicum annuum L.). Advances in Tropical Biodiversity and Environmental Sciences, 8(3), 119–124. https://doi.org/10.24843/ATBES.2024.v08.i03.p01
Ramírez-Gottfried, R. I., Preciado-Rangel, P., Carrillo, M. G., García, A. B., González-Rodríguez, G., & Espinosa-Palomeque, B. (2023). Compost Tea as Organic Fertilizer and Plant Disease Control: Bibliometric Analysis. Agronomy, 13(9), 2340. https://doi.org/10.3390/agronomy13092340
Rohmadi, M., Septiana, N., & Astuti, P. A. P. (2022). Pembuatan Pupuk Organik Cair dan Kompos dari Limbah Organik Rumah Tangga. Jurnal Ilmu Lingkungan, 20(4), 880–886. https://doi.org/10.14710/jil.20.4.880-886
Tadesse, K. A., Lu, Z., Shen, Z., Daba, N. A., Li, J., Alam, M. A., Lisheng, L., Gilbert, N., Legesse, T. G., & Huimin, Z. (2024). Impacts of long-term chemical nitrogen fertilization on soil quality, crop yield, and greenhouse gas emissions: With insights into post-lime application responses. Science of The Total Environment, 944, 173827. https://doi.org/10.1016/j.scitotenv.2024.173827
Wang, B., Huang, Y., Li, N., Yao, H., Yang, E., Soromotin, A. V., Kuzyakov, Y., Cheptsov, V., Yang, Y., & An, S. (2022). Initial soil formation by biocrusts: Nitrogen demand and clay protection control microbial necromass accrual and recycling. Soil Biology and Biochemistry, 167, 108607. https://doi.org/10.1016/j.soilbio.2022.108607
YASSI, A. (2024). EFFECT OF LIQUID ORGANIC FERTILIZER AND UREA ON THE GROWTH AND PRODUCTIVITY OF RICE WITH ASYMMETRICAL IRRIGATION. SABRAO Journal of Breeding and Genetics, 56(4), 1597–1608. https://doi.org/10.54910/sabrao2024.56.4.25
Yusminan, Y., Walida, H., Syawal Harahap, F., & Elizabeth Mustamu, N. (2022). Comparison Of Jakaba Growth With The Addition Of Organic Matter In Rice Washing Water. International Journal of Science and Environment (IJSE), 2(2), 74–78. https://doi.org/10.51601/ijse.v2i2.16
Zhang, W., Zhang, Y., & Qiao, W. (2022). Risk Scenario Evaluation for Intelligent Ships by Mapping Hierarchical Holographic Modeling into Risk Filtering, Ranking and Management. Sustainability, 14(4), 2103. https://doi.org/10.3390/su14042103
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