Responses of Shallot on the Application of Fish Waste-Based Organic Fertilizer Prepared with Bamboo Shoot Local Bioactivator

Authors

  • Ikhsan Hasibuan Universitas Prof Dr Hazairin SH
  • Irma Lisa Sridanti Universitas Prof Dr Hazairin SH / Prodi Agroteknologi, Fakultas Pertanian
  • Farida Aryani Universitas Prof Dr Hazairin SH / Prodi Agroteknologi, Fakultas Pertanian

DOI:

https://doi.org/10.25181/jppt.v25i3.3891

Abstract

Currently, there were 24 provinces in Indonesia experiencing a deficit of shallots. In Bengkulu province, the deficit of shallots reached 83.37%. The productivity of shallots in this province was very low, which was less than 1 ton per hectare. This study aimed to evaluate the responses of growth and yield of shallots with the applications of fish waste-based organic fertilizer prepared with local and commercial bioactivators. The study was conducted with a Randomized Block Design in 2 factors and 3 replications. The first factor was the type of fish waste-based organic fertilizer prepared with different bioactivators, namely bamboo shoots and EM-4. The second factor was the dosages of fish waste-based organic fertilizer, namely 0, 10, 20, and 30 t/ha. The main findings from this study are as followed. Fish waste-based organic fertilizer prepared with bamboo shoot bioactivator had a better effect compared to EM-4 bioactivator in terms of plant height, number of shoots, number of bulbs, bulb diameter, fresh weight of bulbs and dry weight of bulbs. The dosage that gave the best effect was 30 tons/ha, where the increasing of the dosages was consistently increased all variables observed.

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References

Adame, C. R., Carlos, R. S., Braos, L. B., Ferreira, M. E., & da Cruz, M. C. P. (2024). Organic Nitrogen Forms in Soils Treated with Cattle Manure. Nitrogen (Switzerland), 5(1), 91–105. https://doi.org/10.3390/nitrogen5010007

Ahuja, I., Dauksas, E., Remme, J. F., Richardsen, R., & Løes, A. K. (2020). Fish and fish waste-based fertilizers in organic farming – With status in Norway: A review. Waste Management, 115, 95–112. https://doi.org/10.1016/j.wasman.2020.07.025

Aida, M., Norahman, S., Yulianti, H., & Istiqomah, N. (2024). Pemanfaatan Gulma Air sebagai Pupuk Organik Padat untuk Peningkatan Produksi Bawang Merah. Jurnal Daun, 11(1), 41–51.

Akbar, Y., Rahmawati, R., Sabri, Y., Desriana, D., & Julia, S. R. (2024). Pemanfaatan Mikroorganisme Lokal (Mol) Rebung Terhadap Pertumbuhan Dan Hasil Tanaman Selada Merah (Lactuca Sativa L.). Menara Ilmu, 18(2), 116–123. https://doi.org/10.31869/mi.v18i2.5329

Amaresan, N., Senthil Kumar, M., Annapurna, K., Kumar, K., & Sankaranarayanan, A. (2020). Beneficial Microbes in Agro-Ecology: Bacteria and Fungi. Academic Press.

BPS. (2022). Distribusi Perdagangan Komoditas Bawang Merah di Indonesia 2022.

BPS. (2024). Statistik Indonesia 2024.

BPS Provinsi Bengkulu. (2024). Provinsi Bengkulu Dalam Angka 2024.

Cahyono, T. (2019, October 19). Ikan Sampah Disulap, Untung Berlipat Didapat. BengkuluExpress.Com, 1.

Caruso, G. (2016). Fishery Wastes and By-products: A Resource to Be Valorised. Journal of FisheriesSciences.Com, 10(1), 12–15. www.fisheriessciences.com

Choe, U., Mustafa, A. M., Lin, H., Choe, U., & Sheng, K. (2020). Anaerobic Co-Digestion of Fish Processing Waste with a Liquid Fraction of Hydrothermal Carbonization of Bamboo Residue. Bioresource Technology, 297. https://doi.org/10.1016/j.biortech.2019.122542

Fauziah, S., Kameswari, D., & Asih, D. A. S. (2022). Pengaruh Pupuk Organik Cair Rebung Bambu terhadap Pertumbuhan Tanaman Sawi (Brassica juncea L.) secara Hidroponik. EduBiologia: Biological Science and Education Journal, 2(1), 26–34. https://doi.org/10.30998/edubiologia.v2i1.10424

Footer, A. (2014). Bokashi Composting: Scraps to Soil in Weeks. New Society Publisher.

Hartono, A., Nadalia, D., Ramadhan, M., & Sulistiono, F. (2024). Penentuan Batas Kritis Fosfor untuk Pertumbuhan Bawang Merah di Kabupaten Brebes, Jawa Tengah. Jurnal Ilmu Tanah Dan Lingkungan, 26(1), 40–47. https://doi.org/10.29244/jitl.26.1.40-47

Hasibuan, I. (2020). Pertanian Organik: Prinsip dan Praktis. Tidar Media.

Hasibuan, I. (2021). Teknologi Pupuk Organik. Global Aksara Pres.

Hasibuan, I. (2023). Rancob Lebih Mudah dengan SAS. Tidar Media.

Hasibuan, I., Prihanani, & Puspitasari, M. (2021). Parameter Kematangan Fisik, Kimia, dan Biologis Pupuk Bokashi Ikan Rucah. Agroqua, 19(2), 212–219. https://doi.org/10.32663/ja.v%vi%i.2201

Husain, I., Rahim, Y., & Yusuf, R. (2024). Pertumbuhan dan Produksi Tanaman Bawang Merah ( Allium ascalonicum L . ) Varietas Tajuk pada Berbagai Dosis dan Konsentrasi Kasgot Black Soldier Fly dan PGPR Akar Bambu. Jurnal Penelitian Pertanian Terapan, 24(1), 28–40.

Indriani, N., Utami, R. T., Suryanto, A., Syarif, T., & Septiani, M. (2023). Pengaruh Penambahan Effective Microorganisme-4 (EM4) Pada Kandungan Unsur Hara Makro Pupuk Organik Cair (POC) Dari Rebung Bambu. Journal of Materials Processing and Environment, 1(1), 1–8. https://doi.org/10.33096/jmpe.v1i1.439

Ismiasih, & Jamhari. (2024). Effisiensi Teknis Usahatani Bawang Merah Di Indonesia : Pendekatan Stochastic Frontier. Jurnal Penelitian Pertanian Terapan, 24(2), 171–180.

Kementan. (2019). Keputusan Menteri Pertanian Republik Indonesia No. 261/KPTS/SR.310/M/4/2019 Tentang Persyaratan Minimal Pupuk Organik, Pupuk Hayati dan Pembenah Tanah (pp. 1–18). Kementerian Pertanian Republik Indonesia.

Kumar, B. L., & Gopal, D. V. R. S. (2015). Effective Role of Indigenous Microorganisms for Sustainable Environment. Biotech, 5(6), 867–876. https://doi.org/10.1007/s13205-015-0293-6

Kurnia, I., Aryani, F., & Hasibuan, I. (2023). Respon Beberapa Varietas Bawang Merah (Allium cepa L) Akibat Aplikasi Pupuk Organik Cair Limbah Ikan Rucah. Jurnal Agriculture, 18(2), 139–152.

Lestari, I. P. (2024). Pemupukan Kalium Pada Tanaman Bawang Merah (Allium ascalonicum L.) di Tanah Ultisol. Jurnal Ilmiah Respati, 15(2), 203–213. https://doi.org/10.52643/jir.v15i2.4569

Marlina, D., Prihanani, & Hasibuan, ikhsan. (2023). Pemanfaatan Gulma Kangkung Laut (Ipomoea pes-caprae) sebagai Pupuk Organik untuk Meningkatkan Pertumbuhan dan Hasil Tanaman Bawang Merah (Allium cepa L.). Jurnal Produksi Tanaman, 011(07), 472–477. https://doi.org/10.21776/ub.protan.2023.011.07.07

Marti-Quijal, F. J., Remize, F., Meca, G., Ferrer, E., Ruiz, M. J., & Barba, F. J. (2020). Fermentation in Fish and By-Products Processing: An Overview of Current Research and Future Prospects. In Current Opinion in Food Science (Vol. 31, pp. 9–16). Elsevier Ltd. https://doi.org/10.1016/j.cofs.2019.08.001

Maulani, N. wahyuni, Lusiana, L., & Maftuh, A. S. (2024). Pengaruh Pemberian Konsentrasi Ekstrak Rebung (Gibberelin Organik) terhadap Pertumbuhan dan Hasil Tanaman Okra (Abelmoschus esculentus L. Moench). OrchidAgro, 4(1), 1–8. https://doi.org/10.35138/orchidagro.v4i1.683

Maulida, N., Rahmawati, A., Dewi, T. K., Simarmata, R., Widowati, T., Kartika, T., Guswenrivo, I., Nugroho, D. T., & Supriatna, A. (2024). Analisis Kemampuan Produksi Auksin dari Bakteri Endofit dan Plant Growth Promoting Rhizobacteria (PGPR) dalam Akar Cabai Merah Keriting (Capsicum annum L.). MANILKARA: Journal of Bioscience, 3(1), 10–21. https://doi.org/10.33830/manilkara.v3i1.9817.2024

Mayadewi, N. N. A., Astawa, I. N. G., & Danga, J. R. Y. (2024). Aplikasi Ekstrak Rebung Bambu sebagai GA3 Alami untuk Meningkatkan Kualitas Buah Anggur (Vitis vinifera L.) Varietas Kediri Kuning. Agro Bali : Agricultural Journal, 7(2), 568–574. https://doi.org/10.37637/ab.v7i2.1705

Mustaqim, A., Ifansyah, H., & Saidy, A. R. (2024). Pengaruh Pemberian Berbagai Macam Bahan Organik terhadap Ketersediaan Hara Nitrogen, Fosfor dan Kalium serta Serapan Nitrogen oleh Jagung (Zea mays L.) pada Tanah Ultisols. Acta Solum, 1(3), 151–157. https://doi.org/10.20527/actasolum.v1i3.2285

Soverda, N., & Evita. (2020). Peran Mikroorganisme Lokal Rebung Bambu Terhadap Pertumbuhan Dan Kandungan Protein Tanaman Kedelai. Jurnal Ilmiah Ilmu Terapan, 4(2), 223–233.

Valente, B. S., Andreazza, R., Xavier, E. G., Gomes, M. C., Pereira, H. da S., & Dias de ávila, F. (2017). Composting for Valuation of Marine Fish Waste. Revista Brasileira de Saude e Producao Animal, 18(4), 594–603. https://doi.org/10.1590/S1519-99402017000400010

Welkriana, W. P., & Halimatussa’diah. (2023). Aktivitas E.coli dan Stapphylococcus terhadap Penambahan Lactobacillus dari Rebung. Jurnal Dunia Kesmas, 12(4), 165–172.

Wicaksono, G. D., & Hanggita, S. R. J. (2022). Analisis NPK Pupuk Organik Cair Limbah Ikan Nila dengan Pemanfaatan Mikroorganisme Lokal Kulit Pepaya. Jurnal FistecH, 11(1), 47–57.

Yuliana, L., Satria, B., & Warnita, W. (2024). Pemanfaatan Pupuk Dan Zpt Alami Pada Pertumbuhan Tanaman Bawang Merah (Allium ascalonicum L.). Jurnal Pertanian Agros, 26(2), 524. https://doi.org/10.37159/jpa.v26i2.4602

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Published

2025-01-09

How to Cite

Hasibuan, I., Lisa Sridanti, I. ., & Aryani, F. . (2025). Responses of Shallot on the Application of Fish Waste-Based Organic Fertilizer Prepared with Bamboo Shoot Local Bioactivator. Jurnal Penelitian Pertanian Terapan, 25(3), 12–20. https://doi.org/10.25181/jppt.v25i3.3891

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