Pengaruh Media Tanam Terhadap Pertumbuhan dan Hasil Beberapa Varietas Kangkung Darat (Ipomoea reptans Poir.) pada Sistem Aquaponik

Authors

  • Exzanidan Fahas Universitas Kadiri
  • Edy Kustiani Universitas Kadiri
  • Saptorini Saptorini Universitas Kadiri
  • Aptika Hana Prastiwi Nareswari Universitas Kadiri
  • Rasyadan Taufiq Probojati Universitas Kadiri

DOI:

https://doi.org/10.30737/jintan.v5i1.6312

Keywords:

Aquaponic system, land kale, Planting media

Abstract

Optimal growth of Land spinach in an aquaponic system requires the selection of superior varieties and appropriate substrates. Aquaponic systems combine aquaculture and hydroponics and offer a sustainable approach to organic crop cultivation. However, studies on substrate interaction and variety in water spinach growth are still limited. This study aims to evaluate the effect of interaction between substrate and water spinach variety on plant growth and yield in an aquaponic system, focusing on potential applications in modern agriculture. A Completely Randomized Design (CRD) was used in this study with three levels of substrate, namely rockwool (M1), cocopeat (M2), and a mixture of cocopeat-charcoal (M3). Three levels of variety, namely Bisi (V1), Shanghai (V2), and Bangkok (V3), are repeated three times. Data analysis showed no significant interaction between substrate type and variety on plant height growth, dry weight, stem diameter, and leaf area at various stages of observation. These results indicate that the aquaponic system does not explicitly require certain water spinach varieties for different substrates, making it easier for farmers to manage cultivation. These findings support the flexibility of aquaponics practices, making them more efficient and easy to adopt in modern agriculture. The study confirms that aquaponics systems allow a versatile approach to kale cultivation without the constraints of a particular substrate or variety. With the efficiency offered, this system could be an innovative solution to increase sustainability and productivity in future agriculture.

Pertumbuhan optimal kangkung dalam sistem akuaponik membutuhkan pemilihan varietas unggul dan substrat yang sesuai. Sistem akuaponik, yang memadukan akuakultur dan hidroponik, menawarkan pendekatan berkelanjutan untuk budidaya tanaman organik. Namun, studi tentang interaksi substrat dan varietas terhadap pertumbuhan kangkung masih terbatas. Penelitian ini bertujuan mengevaluasi pengaruh interaksi substrat dan varietas kangkung terhadap pertumbuhan dan hasil tanaman dalam sistem akuaponik dengan fokus pada potensi penerapan dalam pertanian modern. Rancangan Acak Lengkap (RAL) digunakan dalam penelitian ini dengan tiga taraf substrat, yaitu rockwool (M1), cocopeat (M2), dan campuran cocopeat-arang (M3) serta tiga taraf varietas, yaitu Bisi (V1), Shanghai (V2), dan Bangkok (V3) yang masing-masing diulang sebanyak tiga kali. Analisis data menunjukkan tidak adanya interaksi signifikan antara jenis substrat dan varietas terhadap pertumbuhan tinggi tanaman, berat kering, diameter batang, dan luas daun pada berbagai tahap pengamatan. Hasil ini menunjukkan bahwa sistem akuaponik tidak secara khusus memerlukan varietas kangkung tertentu untuk jenis substrat yang berbeda, sehingga mempermudah petani dalam pengelolaan budidaya. Temuan ini mendukung fleksibilitas dalam praktik akuaponik, menjadikannya lebih efisien dan mudah diadopsi dalam pertanian modern. Studi ini menegaskan bahwa sistem akuaponik memungkinkan pendekatan serbaguna untuk budidaya kangkung tanpa batasan susbstrat atau varietas tertentu. Dengan efisiensi yang ditawarkan, sistem ini dapat menjadi solusi inovatif untuk meningkatkan keberlanjutan dan produktivitas dalam pertanian masa depan.

Author Biographies

Edy Kustiani, Universitas Kadiri

Program Studi Agroteknologi, Fakultas Pertanian

Saptorini Saptorini, Universitas Kadiri

Program Studi Agroteknologi, Fakultas Pertanian

Aptika Hana Prastiwi Nareswari, Universitas Kadiri

Program Studi Agroteknologi, Fakultas Pertanian

Rasyadan Taufiq Probojati, Universitas Kadiri

Program Studi Agroteknologi, Fakultas Pertanian

References

Azhari, D., & Tomasoa, A. M. (2018). Study of Water Quality and Growth of Nile Tilapia (Oreochromis niloticus) Cultivated with Aquaponic System. Akuatika Indonesia, 3(2), 84.

Dirgantara, W., Arifuddin, R., & Mujahidin, I. (2021). Aquaponics Monitoring with Android to Increase Public Interest in Farming in the Porong District. Abdimas: Journal of Community Engagement from the University of Merdeka Malang, 6(1), 133–141.

ES Halimi, Zaidan P. Negara, V. S., Agriculture, J. B., Agriculture, F., Sriwijaya, U., & Selatan, S. (2022). Growth and Productivity of Several Varieties of Kangkung and Their Seed Production Potential on Suboptimal Dry Land. 6051, 178–188.

Girsang, R., Luta, D. A., Hrp, A. S., & Suriadi. (2019). Enhancement of shallot seed (Allium ascalonicum L.) germination due to H2SO4 soaking interval and various planting media. Journal of Animal Science and Agronomy Panca Budi, 4(1), 24–28.

Hartati, H., Azmin, N., Baktiar, B., Nasir, M., Andang, A., & Fahruddin, F. (2021). The Influence of Rice Husk

Charcoal Addition on the Growth of Terrestrial Kangkung (Ipomoea reptans) Plants. Oryza (Journal of Biology Education), 10(1), 1–7.

Irawan, A. (2015). Utilization of cocopeat and rice husk charcoal as a growing medium for Elmerrilia ovalis seedlings. 1, 805–808.

Katherina, A., Sudarno, & Sutrisno, E. (2016). Noise Control Design through Rockwool Installation in Employee Rooms at DIPO Locomotive Semarang Poncol. Journal of Environmental Engineering, 5(1), 1–10.

Kresna, I. G. P. D. B., Sukerta, I. M., & Suryana, I. M. (2016). Growth and Yield of Several Varieties of Terrestrial Kangkung (Ipomea reptans p.) on Grey Alluvial Soil. Agriculture Based on Ecosystem Balance, 52–65.

Kushayadi, A. G., Waspodo, S., & Diniarti, N. (2018). The Influence of Different Aquaponic Growing Media on Nitrate and Phosphate Reduction in Common Carp (Cyprinus carpio) Maintenance. Unram Fisheries Journal, 8(1), 8–13.

Nugroho, R. A., Pambudi, L. T., Chilmawati, D., & Haditomo, A. H. C. (2012). The Application of Aquaponic Technology in Freshwater Fish Farming for Production Capacity Optimization. SAINTEK PERIKANAN: Indonesian Journal of Fisheries Science and Technology, 8(1), 46–51.

Nurifah, G., & Fajarfika, R. (2020). The Influence of Growing Media in Hydroponics on the Growth and Yield of Kale (Brassica Oleracea L.). Jagros: Journal of Agrotechnology and Science, 4(2), 281.

Onggo, T. M., Kusumiyati, K., & Nurfitriana, A. (2017). The Effect of Adding Rice Husk Charcoal and Polybag Size on the Growth and Yield of 'Valouro' Tomato Plants Grafted. Kultivasi, 16(1), 298–304.

Pertiwi, N. B. (2020). The Influence of Iron (Fe) Ions from Water Electrolysis and Tofu Waste on Hydroponic Kangkung Plant Growth as Nutrient Additives.

Purba, F. N. (2019). The Effect of Different Aquaponic Systems on the Growth and Yield of Terrestrial Kangkung.

Puspitasari, D., Ariyanto, D., Rodiansah, A., Zahar, I., Asahan, U., Agriculture, F., Engineering, F., & Asahan, K. (2020). Supporting the Economy in Sungai Lama Village, Asahan Regency. Anadara Journal of Community Engagement, 2(1), 65–71.

Rahmadhani, L. E., Widuri, L. I., & Dewanti, P. (2020). Quality of Leafy Vegetables (Kangkung, Lettuce, and Pakcoy). Agrotechnology Journal, 14(01), 33–43.

Rahmawati, E. (2018). The Influence of Various Types of Growing Media and Hydroponic Nutrient Solution Concentrations on the Growth of Japanese Cucumber (Cucumis sativus L.) Plants. Thesis: Alauddin Islamic University, 15, 1–85.

Ramadhan, D., Riniarti, M., & Santoso, T. (2018). The Utilization of Cocopeat as a Growing Medium for Paraserianthes falcataria and Intsia palembanica. Journal of Sustainable Forestry, 6(2), 22–31.

Sastro, Y., Utami, D. P., & Nurjasmi, R. (2016). The Role of Growing Media on the Growth and Yield of Vegetables in Mini Aquaponic (Vertiminaponic) System at Backyard Scale. 146–151.

Septiani, R. (2020). The Influence of Water Spinach (Ipomea aquatica) on Ammonia Concentration for Plant Growth in Simple Aquaponics. Thesis, 8(75), 147–154.

Shafira, W., Akbar, A. A., & Saziati, O. (2021). The Use of Cocopeat as a Substitute for Topsoil in Environmental Quality Improvement Efforts on Post-Mining Land in Toba Village, Sanggau Regency. Journal of Environmental Science, 19(2), 432–443.

Sofiari, E. (2016). Characterization of Kangkung (Ipomoea reptans) Silk Varieties Based on Individual Testing Guidelines. Buletin Plasma Nutfah, 15(2), 49.

Suroso, B., & Antoni, N. E. R. (2017). Growth Response of Terrestrial Kangkung (Ipomoea reptans poir) to Bioboost and Urea Fertilizers. Agritrop: Journal of Agricultural Sciences, 14(1), 98–108.

Utomo, Tri Warno Siswo. (2019). The Influence of Growing Media Composition on the Growth and Yield of Terrestrial Kangkung (Ipomoea reptans poir.) Variety Bangkok LP-1, 1, 5(3), 248–253.

Wibowo, H. Y., & Sitawati. (2017). Response of Terrestrial Kangkung (Ipomoea reptans Poir) to Irrigation Interval in Vertical Pipes. PLANTROPICA Journal of Agricultural Science, 2017, 2(2), 148–154.

Widyawati, A. S. (2023). Growth and Quality of Water Spinach Plants (Ipomea Reptans Poir.) Using NFT Hydroponic Technology with the Addition of Calcium Chloride (CaCl2).

Downloads

PlumX Metrics

Published

28-01-2025

How to Cite

Fahas, E., Kustiani, E., Saptorini, S., Nareswari, A. H. P., & Probojati, R. T. (2025). Pengaruh Media Tanam Terhadap Pertumbuhan dan Hasil Beberapa Varietas Kangkung Darat (Ipomoea reptans Poir.) pada Sistem Aquaponik. JINTAN : Jurnal Ilmiah Pertanian Nasional, 5(1), 1–11. https://doi.org/10.30737/jintan.v5i1.6312

Issue

Section

Articles

Most read articles by the same author(s)

1 2 > >>