PERTANIKA JOURNAL OF TROPICAL AGRICULTURAL SCIENCE

 

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Enhancing Leafy Vegetable Growth and Yield with Goat Urine, Moringa Leaf, and Banana Stem-based Liquid Organic Fertiliser

Darwin Habinsaran Pangaribuan, Yohannes Cahya Ginting, Meilin Nur Afifa and Danang Prayogo

Pertanika Journal of Tropical Agricultural Science, Volume 47, Issue 3, August 2024

DOI: https://doi.org/10.47836/pjtas.47.3.27

Keywords: Dry weight, fresh weight, mustard greens, NPK, organic fertilisers, pak choy, relative agronomic efficiency

Published on: 27 August 2024

Pak choy and mustard greens are traditionally grown with many inorganic fertilisers, which can reduce soil fertility when applied frequently. The adoption of organic fertilisers offers a sustainable solution to this challenge. This study investigates the impact of liquid organic fertiliser (LOF) derived from goat urine, Moringa leaves, and banana stems on the growth and yield of pak choy and mustard greens. The research design employed a randomised complete block design with four treatments and ten replications. These treatments included a control group, 100% nitrogen, phosphorus, potassium (NPK, inorganic fertiliser), 100% LOF, and a 50% NPK + 50% LOF blend. The application of LOF, sourced from goat urine, Moringa leaves, and banana stems, demonstrated a significant influence on nearly all plant parameters. Notably, the 100% LOF treatment yielded the highest results for fresh leaf weight (26.46 g), fresh stalk weight (39.64 g), dry leaf weight (4.57 g), stem diameter (48.27 mm), Soil Plant Analysis Development value (SPAD, 40.73 units), plant height (31.59 cm), leaf width (8.45 cm), and leaf length (13.33 cm) for pak choy. Additionally, 100% LOF also produced the highest results for fresh leaf weight (21.34 g), dry root weight (0.31 g), stem diameter (21.53 mm), SPAD value (32.40 units), plant height (31.59 cm), leaf width (10.40 cm), and leaf length (15.65 cm) for mustard greens. This study demonstrates that a blend of goat urine, Moringa leaves, and banana stems can be used as a LOF that can replace inorganic NPK fertilisers in growing pak choy and mustard. It not only addresses issues with soil fertility but also contributes to environmentally friendly farming practices.

  • Abdullah, L., Budhie, D. D. S., & Lubis, A. D. (2011). Pengaruh aplikasi urin kambing dan pupuk cair komersial terhadap beberapa parameter agronomi pada tanaman pakan Indigofera sp. [The effect of application of goat urine and commercial liquid fertilizer on several agronomic parameters on the feed plant Indigofera sp.]. Pastura, 1(1), 5-8.

  • Abebe, T. G., Tamtam, M. R., Abebe, A. A., Abtemariam, K. A., Shigut, T. G., Dejen, Y. A., & Haile, E. G. (2022). Growing use and impacts of chemical fertilizers and assessing alternative organic fertilizer sources in Ethiopia. Applied and Environmental Soil Science, 2022(1), 4738416. https://doi.org/10.1155/2022/4738416

  • Adi, I. P. T. S., Yuliartini, M. S., & Udayana, I. G. B. (2020). Effect of rabbit compost and NPK on the growth and yield of zucchini (Cucurbita pepo L.). Journal of Sustainable Environment Agricultural Science, 4(2), 151-156. https://doi.org/10.22225/seas.4.2.2624.151-156

  • Adiaha, M. S. (2017). Potential of Moringa oleifera as nutrient-agent for biofertilizer production. World News of Natural Sciences, 10, 101-104.

  • Anjarwati, H., Waluyo, S., & Purwanti, S. (2017). Pengaruh macam media dan takaran pupuk kandang kambing terhadap pertumbuhan dan hasil sawi hijau (Brassica rapa L.) [The effect of different kinds of media and proportion of goat manure applications on the growth and yield of mustard greens (Brassica rapa L.)]. Vegetalika, 6(1), 35-45. https://doi.org/10.22146/veg.25983

  • Biswas, A. K., Hoque, T. S., & Abedin, M. A. (2016). Effects of Moringa leaf extract on growth and yield of maize. Progressive Agriculture, 27(2), 136-143. https://doi.org/10.3329/pa.v27i2.29322

  • Chanthanousone, H., Phan, T. T., Nguyen, C. Q., Nguyen, T. D. T., Dang, L. T., Ho, N. T. H., Nguyen, B. Q. L., & Truong, H. T. H. (2022). Influence of foliar application with Moringa oleifera residue fertilizer on growth, and yield quality of leafy vegetables. Journal of Experimental Biology and Agricultural Sciences, 10(6), 1453-1461. https://doi.org/10.18006/2022.10(6).1453.1461

  • Culver, M., Fanuel, T., & Chiteka, A. Z. (2012). Effect of Moringa extract on growth and yield of tomato. Greener Journal of Agricultural Sciences, 2(5), 207-211. https://doi.org/10.5281/zenodo.3372890

  • da Costa Stuart, A. K., Stuart, R. M., & Pimentel, I. C. (2018). Effect of agrochemicals on endophytic fungi community associated with crops of organic and conventional soybean (Glycine max L. Merril). Agriculture and Natural Resources, 52(4), 388-392. https://doi.org/10.1016/j.anres.2018.10.005

  • Fahrurrozi., Muktamar, Z., & Sudjatmiko, S. (2023). Agronomic responses of sweet corn - peanut intercropping to liquid organic fertilizer grown in different dosages of vermicompost. AGRIVITA: Journal of Agricultural Science, 45(2), 220-230. http://doi.org/10.17503/agrivita.v45i2.3902

  • Faozi, K., Yudono, P., Indradewa, D., & Ma’as, A. (2018). Banana stem bokashi and its effect to increase soybean yield (Glycine max L. Merrill) in coastal sands area. Journal Agrotechnology, 7(2), 1000184. https://doi.org/10.4172/2168-9881.1000184

  • Gebeyaw, M., & Belete, S. (2020). Review on: Effect of different nitrogen rate on the growth and yield of cabbage (Brassica oleracea var L.). International Journal of Research in Agronomy, 3(2), 31-34. https://doi.org/10.33545/2618060X.2020.v3.i2a.35

  • Grzebisz, W., Gransee, A., Szczepaniak, W., & Diatta, J. (2013). The effects of potassium fertilization on water-use efficiency in crop plants. Journal of Plant Nutrition and Soil Science, 176(3), 355-374. https://doi.org/10.1002/jpln.201200287

  • Imran, M., Ali, A., & Safdar, M. E. (2021). The impact of different levels of nitrogen fertilizer on maize hybrids performance under two different environments. Asian Journal of Agriculture and Biology, 4, 1-10. https://doi.org/10.35495/ajab.2020.10.527

  • Kilo, A. L., Iladat, S. A., & Iyabu, H. (2023). Study on content of nitrogen, phosphorus, and potassium from mixed waste of empty fruit bunch of oil palm and banana stem as organic fertilizer for tomato plants. Indonesian Journal of Chemistry Environment, 6(1), 8-17. https://doi.org/10.21831/ijoce.v6i1.61232

  • Liang, G., Hua, Y., Chen, H., Luo, J., Xiang, H., Song, H., & Zhang, Z. (2023). Increased nitrogen use efficiency via amino acid remobilization from source to sink organs in Brassica napus. The Crop Journal, 11(1), 119-131. https://doi.org/10.1016/j.cj.2022.05.011

  • Mohamad, N. S., Kassim, F. A., Usaizan, N., Hamidon, A., & Safari, Z. S. (2022). Effects of organic fertilizer on growth performance and postharvest quality of pak choy (Brassica rapa subsp. chinensis L.). Agrotech–Food Scıence, Technology And Envıronment, 1(1), 43-50. https://doi.org/10.53797/agrotech.v1i1.6.2022

  • Mokhele, B., Zhan, X., Yang, G., & Zhang, X. (2012). Review: Nitrogen assimilation in crop plants and its affecting factors. Canadian Journal of Plant Science, 92(3), 399-405. https://doi.org/10.4141/cjps2011-135

  • Muarif, S., Sulistyaningsih, E., Handayani, V. D. S., & Isnansetyo, A. (2022). Substituting Sargassum sp. compost for inorganic fertilizer improves the growth and yield of shallot (Allium cepa L. Aggregatum group). Pertanika Journal of Tropical Agricultural Science, 45(4), 867-880. https://doi.org/10.47836/pjtas.45.4.02

  • Muthu, H. D., Izhar, T. N. T., Zakarya, I. A., Saad, F. N. M., & Ngaa, M. H. (2023). Comparative study between organic liquid fertilizer and commercial liquid fertilizer and their growth performances on mustard greens. In IOP Conference Series: Earth and Environmental Science (Vol. 1135, No. 1, p. 012002). IOP Publishing. https://doi.org/10.1088/1755-1315/1135/1/012002

  • Nugroho, W. S. (2015). Penetapan standar warna daun sebagai upaya identifikasi status hara (N) tanaman jagung (Zea mays L.) pada tanah Regosol [Determination of leaf color standards as an effort to identify the nutrient status (N) of corn plants (Zea mays L.) in Regosol soil]. Planta Tropika Journal of Agro Science, 3(1), 8-15. https://doi.org/10.18196/pt.2015.034.8-15

  • Nwite, J. N. (2015). Effect of different urine sources on soil chemical properties and maize yield in Abakaliki, Southeastern Nigeria. International Journal of Advance Agricultural Research, 3(3), 31-36.

  • Pangaribuan, D. H., Sarno., Hendarto, K., Priyanto., Darma, A. K., & Aprillia, T. (2019). Liquid organic fertilizer from plant extracts improves the growth, yield and quality of sweet corn (Zea mays L. var. saccharata). Pertanika Journal of Tropical Agricultural Sciences, 42(3), 1157-1166.

  • Pernitiani, N. P., Made, U., & Adrianton. (2018). Pengaruh pemberian berbagai dosis pupuk nitrogen terhadap pertumbuhan dan hasil tanaman jagung manis (Zea mays saccharata) [Effect of different doses of nitrogen fertilizer on the growth and yield of sweet maize (Zea mays saccharata)]. AGROTEKBIS : Jurnal Ilmu Pertanian, 6(3), 329-335.

  • Prajapati, K., & Modi, H. A. (2012). The importance of potassium in plant growth – A review. Indian Journal of Plant Sciences, 1(02-03), 177-186.

  • Reeza, A. A., & Azman, U. H. (2022). Effect of organic waste fertilizers on growth and development of okra (Abelmoschus esculentus). Pertanika Journal of Tropical Agricultural Science, 45(4), 1021-1034. https://doi.org/10.47836/pjtas.45.4.10

  • Riyandani, R., Rasyid, B., & Baja, S. (2021). Utilization of liquid organic fertilizers from banana stems and coconut husk to increase potassium (K) in alfisols and corn. In IOP Conference Series: Earth and Environmental Science (Vol. 807, No. 2, p. 022025). IOP Publishing. https://doi.org/10.1088/1755-1315/807/2/022025

  • Rizal, S. (2017). Pengaruh nutrisi yang diberikan terhadap pertumbuhan tanaman sawi pakcoy (Brassica rapa L.) yang ditanam secara hidroponik [The effect of nutrients on the growth of pakcoy mustard plants (Brassica rapa L.) grown hydroponically]. Sainmatika: Jurnal Ilmiah Matematika dan Ilmu Pengetahuan Alam, 14(1), 38-44.

  • Rosalina, F., Gafur, M. A. A., Inarwati, I., Soekamto, M. H., Sangadji, Z., & Kahar, M. S. (2019). Utilization of compost and zeolite as ameliorant on quartz sand planting media for caisim (Brassica juncea) plant growth. Journal of Physics: Conference Series (Vol. 1155, No. 1, p. 012055). IOP Publishing. https://doi.org/10.1088/1742-6596/1155/1/012055

  • Saraiva, B., Pacheco, E. B. A. V., Visconte, L. L. Y., Bispo, E. P., Escócio, V. A., de Sousa, A. M. F., Junior, M. F., do Carmo Motta, L. C., da Cunha Brito, G. F. (2012). Potentials for utilization of post-fiber extraction waste from tropical fruit production in Brazil – The example of banana pseudostem. International Journal of Environment and Bioenergy, 4(2), 101-119.

  • Sarif, P., Hadid, A., & Wahyudi, I. (2015). Pertumbuhan dan hasil tanaman sawi (Brassica juncea L.) akibat pemberian berbagai dosis pupuk urea [Growth and yield of mustard (Brassica juncea L.) as consequences of the application of various rates of urea fertilizer]. AGROTEKBIS : Jurnal Ilmu Pertanian, 3(5), 585-591.

  • Shorna, S. I., Polash, M. A. S., Sakil, M. A., Mou, M. A., Hakim, M. A., Biswas, A., & Hossain, M. A. (2020). Effects of nitrogenous fertilizer on growth and yield of mustard green. Tropical Plant Research, 7(1), 30–36. https://doi.org/10.22271/tpr.2020.v7.i1.005

  • Siavoshi, M., Nasiri, A., & Laware, S. L. (2011). Effect of organic fertilizer on growth and yield components in rice (Oryza sativa L.). Journal of Agricultural Science, 3(3), 217-224. https://doi.org/10.5539/jas.v3n3p217

  • Sitinjak, R. R., & Pratomo, B. (2019). Potential of goat urine and soaking time on the growth of Mucuna bracteata D.C. cuttings. International Journal of Agriculture Innovations Research, 8(1), 2319-1473.

  • Situmeang, Y. P., Sudewa, K. A., & Holo, P. P. (2017). Utilization biochar of bamboo and compost in improving yield of pakchoy plant. Journal of Biological and Chemical Research, 34(2), 713-722.

  • Syahputra, B. S. A. (2022). Potensi POC urin kambing dalam pertumbuhan dan produksi tanaman sayuran [Potential of goat urine LOF in the growth and production of vegetable crops]. Agrium, 25(1), 52-59. https://doi.org/10.30596/agrium.v25i1.10149

ISSN 1511-3701

e-ISSN 2231-8542

Article ID

JTAS-2910-2023

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