The Effect of Chicken Manure and Mycorrhizal Biofertilizer on Increasing Peanut (Arachis Hypogaea L.) Production Growth
DOI:
10.29303/jppipa.v11i12.13771Published:
2026-01-15Downloads
Abstract
This study used a factorial Randomized Block Design (RAK), with 2 treatment factors, factor I is the provision of Chicken Manure consisting of 3 treatment levels, namely: K1 = 3 Kg / plot, K2 = 4 Kg / plot, K3 = 5 kg / plot. Factor II is the provision of Mycorrhizal Fertilizer consisting of 4 treatment levels, namely: M0 = Without the provision of Mycorrhizal Biofertilizer, M1 = 2 g / plot, M2 = 4 g / plot, M3 = 6 g / plot. The parameters observed in this study include: Plant Height (cm) 21, 35, and 49 DAP, Number of Primary Branches (branches) when the flowering period has finished, Number of Pods per Plant (pods), Percentage of Full Pods per Plant (%), Seed Production per plot (g). Based on the results of the study, it can be concluded that the treatment of chicken manure dose level significantly affected plant height at the age of 21, 35, and 49 DAP, but did not significantly affect the number of primary branches, number of pods per plant, percentage of full pods per plant, seed production per plot. The treatment of mycorrhizal fertilizer dose level significantly affected plant height at the age of 21, 35, and 49 DAP, number of primary branches, number of pods per plant, percentage of full pods per plant, seed production per plot. For the interaction of chicken manure and mycorrhizal fertilizer treatment significantly affected plant height at the age of 21 DAP, but did not significantly affect plant height at the age of 35 and 49 DAP, number of primary branches, number of pods per plant, percentage of full pods per plant and seed production per plot.
Keywords:
Biofertilizer Manure Mycorrhiza PeanutsReferences
Ahmed, H. F. S., & El-Araby, M. M. I. (2012). Evaluation of the influence of nitrogen fixing, phosphate solubilizing and potash mobilizing biofertilizers on growth, yield, and fatty acid constituents of oil in peanut and sunflower. African Journal of Biotechnology, 11(43), 10079–10088. https://doi.org/10.5897/AJB11.3451
Andriawan, F., Walida, H., Harahap, F. S., & Sepriani, Y. (2022). Analisis Kualitas Pupuk Kascing Dari Campuran Kotoran Ayam, Bonggol Pisang Dan Ampas Tahu. Jurnal Pertanian Agros, 24(2), 423–428. Retrieved from https://e-journal.janabadra.ac.id/index.php/JA/article/download/1908/1287
Anwar, K., Frisella, E., & Dan Jauhari, J. (2023). Uji Pertumbuhan Dan Hasil Tanaman Kacang Tanah Akibat Pemberian Pupuk Kandang Ayam dan Pupuk Organik Cair. Jurnal Agrida: Jurnal Ilmiah Pertanian, 2(1), 10–20. https://doi.org/10.55616/agrida.v2i1.348
Basiru, S., Ait Si Mhand, K., Elfermi, R., Khatour, I., Errafii, K., Legeay, J., & Hijri, M. (2025). Enhancing chickpea growth through arbuscular mycorrhizal fungus inoculation: facilitating nutrient uptake and shifting potential pathogenic fungal communities. Mycorrhiza, 35(1), 1. https://doi.org/10.1007/s00572-024-01174-4
Bhantana, P., Rana, M. S., Sun, X., Moussa, M. G., Saleem, M. H., Syaifudin, M., Shah, A., Poudel, A., Pun, A. B., Bhat, M. A., & others. (2021). Arbuscular mycorrhizal fungi and its major role in plant growth, zinc nutrition, phosphorous regulation and phytoremediation. Symbiosis, 84(1), 19–37. https://doi.org/10.1007/s13199-021-00756-6
Dewi, A. P. D. (2019). Pemanfaatan Darah Sapi Dan Legin Terhadap Peningkatan Pertumbuhan Dan Produksi Kacang Tanah (Arachis hypogaea L) [Doctoral Dissertation: Universitas Islam Riau]. Retrieved from https://repository.uir.ac.id/10262/
El-Sherbeny, T. M. S., Mousa, A. M., & Zhran, M. A. (2023). Response of peanut (Arachis hypogaea L.) plant to bio-fertilizer and plant residues in sandy soil. Environmental Geochemistry and Health, 45(2), 253–265. https://doi.org/10.1007/s10653-022-01302-z
Farida, R., & Chozin, M. A. (2015). Pengaruh Pemberian Cendawan Mikoriza Arbuskula (Cma) Dan Dosis Pupuk Kandang Ayam Terhadap Pertumbuhan Dan Produksi Jagung (Zea mays L. Buletin Agrohorti, 3(3), 323–329. https://doi.org/10.29244/agrob.v3i3.15808
Habeahan, K. B., Cahyaningrum, H., & Uge, E. (2022). Respon Pertumbuhan Dan Hasil Kacang Tanah Varietas Bonci Kao Terhadap Aplikasi Mikoriza Dan Zpt Giberelin. Prosiding Seminar Nasional Biologi, 10, 189–196. Retrieved from https://proceeding.unnes.ac.id/semnasbiologi/article/download/2764/2221
Kamaluddin, N. N., Hindersah, R., Cahayaningrum, D. N., Purba, P. S. J., Wibawa, D. I., & Setiawati, M. R. (2022). Karakterisasi Media Tanam dari Kombinasi Cocopeat dan Pupuk Kandang Ayam. Soilrens, 20(1), 16–24. https://doi.org/10.24198/soilrens.v20i1.41352
Lin, C., Hang, T., Jiang, C., Yang, P., & Zhou, M. (2023). Effects of different phosphorus levels on tiller bud development in hydroponic Phyllostachys edulis seedlings. Tree Physiology, 43(8), 1416–1431. https://doi.org/10.1093/treephys/tpad055
List, G. R. (2016). Processing and food uses of peanut oil and protein. In Peanuts (pp. 405–428). Elsevier. https://doi.org/10.1016/B978-1-63067-038-2.00015-0
Liu, D. (2021). Root developmental responses to phosphorus nutrition. Journal of Integrative Plant Biology, 63(6), 1065–1090. https://doi.org/10.1111/jipb.13090
Ma, D., Teng, W., Mo, Y.-T., Yi, B., Chen, W.-L., Pang, Y.-P., & Wang, L. (2024). Effects of nitrogen, phosphorus, and potassium fertilization on plant growth, element levels in plants and soil, and the relationships among nutrient concentrations, plant yield, and nutrient status in Erythropalum scandens (Blume). Journal of Plant Nutrition, 47(1), 82–96. https://doi.org/10.1080/01904167.2023.2262504
Marlina, N., Aminah, R. I. S., & Dan Setel, L. R. (2015). Aplikasi Pupuk Kandang Kotoran Ayam Pada Tanaman Kacang Tanah (Arachis hypogeae L. Biosaintifika: Journal Of Biology & Biology Education, 7(2). https://doi.org/10.15294/biosaintifika.v7i2.3957
Nainggolan, E. V., Bertham, Y. H., & Sudjatmiko, S. (2020). Pengaruh Pemberian Pupuk Hayati Mikoriza Dan Pupuk Kandang Ayam Terhadap Pertumbuhan Dan Hasil Tanaman Kacang Panjang (Vigna Sinensis L.) Di Ultisol. Jurnal Ilmu-Ilmu Pertanian Indonesia, 22(1), 58–63. https://doi.org/10.31186/jipi.22.1.58-63
Ninama, N., & Ausari, P. K. (2023). Protected Cultivation of Horticultural Crops. Revolutionizing Horticulture The Green Path, 105. Retrieved from https://shorturl.asia/vkjgY
Silalahi, M. J., Rumambi, A., Telleng, M. M., & Dan Kaunang, W. B. (2018). Pengaruh Pemberian Pupuk Kandang Ayam Terhadap Pertumbuhan Tanaman Sorgum Sebagai Pakan. Zootec, 38(2), 286–295. https://doi.org/10.35792/zot.38.2.2018.19909
Syofia, I., Khair, H., & Dan Anwar, K. (2014). Respon Pertumbuhan Dan Produksi Tanaman Kacang Hijau (Vigna radiata L) Terhadap Pemberian Pupuk Organik Padat dan Pupuk Organik Cair. Agrium: Jurnal Ilmu Pertanian, 19(1). https://doi.org/10.30596/agrium.v19i1.334
Tu, N. A., & Chuong, N. V. (2022). The growth, productivity and quality of peanuts improved by four diffrent rates of poultry manure and rhizobia inoculant. Seybold Report, 17, 160–168. https://doi.org/10.5281/zenodo.6962340
Vallejos-Torres, G., Gaona-Jimenez, N., Ordoñez-Sánchez, L., Lozano, C., Arevalo, A. A., Lozano, A., Mendoza-Caballero, W., Paredes, C., Saavedra-Ramirez, J., Tuanama, J., & others. (2023). Effects of arbuscular mycorrhizal fungi, poultry manure compost, and cadmium on plant growth and nutrient absorption of Oryza sativa. Chilean Journal of Agricultural Research, 83(6), 656–665. https://doi.org/10.4067/S0718-58392023000600656
Van Chuong, N. (2023). Response of peanut quality and yield to chicken manure combined with Rhizobium inoculation in sandy soil. Communications in Science and Technology, 8(1), 31–37. https://doi.org/10.21924/cst
Wahab, A., Muhammad, M., Munir, A., Abdi, G., Zaman, W., Ayaz, A., Khizar, C., & Reddy, S. P. P. (2023). Role of arbuscular mycorrhizal fungi in regulating growth, enhancing productivity, and potentially influencing ecosystems under abiotic and biotic stresses. Plants, 12(17), 3102. https://doi.org/10.3390/plants12173102
Wang, Y., Peng, S., Hua, Q., Qiu, C., Wu, P., Liu, X., & Lin, X. (2021). The long-term effects of using phosphate-solubilizing bacteria and photosynthetic bacteria as biofertilizers on peanut yield and soil bacteria community. Frontiers in Microbiology, 12, 693535. https://doi.org/10.3389/fmicb.2021.693535
Zhang, W., & Zhang, L. (2025). Effect of chicken manure and superphosphate on accelerating green waste composting and enhancing nutrient retention. Environmental Monitoring and Assessment, 197(4), 361. https://doi.org/10.1007/s10661-025-13834-9
Zhao, T., Ying, P., Zhang, Y., Chen, H., & Yang, X. (2023). Research advances in the high-value utilization of peanut meal resources and its hydrolysates: A review. Molecules, 28(19), 6862. https://doi.org/10.3390/molecules28196862
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