Improvement of sandy soil productivity with chicken manure treatment and NPK fertilizer for eggplant plants

Authors

  • Saijo Saijo Universitas Muhammadiyah Palangkaraya

DOI:

https://doi.org/10.31102/eam.1.1.41-50

Keywords:

chicken manure, purple eggplant, NPK

Abstract

The aim of the research was to test and analyze the effect of chicken manure doses and NPK doses on the growth and yield of purple eggplant plants (Solanum melongena L) on sandy soil. Carried out at the Research Garden of the Faculty of Agriculture, Muhammadiyah University of Palangkaraya, Palangka Raya City, Central Kalimantan. The research period is June-September 2023 using a completely randomized design with two treatment factors. The first factor is the provision of 3 levels of chicken manure and the second factor is 3 levels of NPK treatment. Each was repeated 3 times, totaling 27 experimental units. The results of the research can be concluded that the effectiveness of the treatment dose of chicken manure influences the growth variables (plant height, stem diameter, number of leaves), namely at the treatment dose of chicken manure 30 t ha-1. The NPK dosage treatment had an effect on the yield components, both fresh fruit weight and harvest index, namely at an NPK dosage of 400 kg ha-1. In the yield component variable, the highest fruit weight was 297 g plant-1.

References

Amanullah, Iqbal A, Irfanullah, Hidayat Z. (2016). Potassium management for improving growth and grain yield of maize (Zea mays L.) under moisture stress condition. Sci Rep 6: 34627. DOI: 10.1038/srep34627

Balkrishna A, Arya V, Bhat R,Chaudhary P, Mishra S, Kumar A, Sharma V, Sharma V,Sharma N, Gautam AK. (2023). Organic farming for sustainable agriculture and public health: Patanjali's perspective.Vegetos 2023: 1-10. https://doi.org/10.1201/9781003242543-6

Behboudian, M.H. (1977). Responses of eggplant to drought. I. Plant water balance Sci. Hort. 7 303-310. https://doi.org/10.1016/0304-4238(77)90002-4

BPS Kalimantan Tengah. (2018). Produktivitas terong di Kalimantan Tengah sampai tahun 2017 sebesar 3.55 t ha-1 dan di Kota Palangka Raya sampai tahun 2017 sebesar 6.15 t ha-1 (BPS Kalimantan Tengah, 2018). Diakses tanggal 23 mei 2023.

Chen, K.; Yu, H.; Feng, W.Q.; Tu, S.H.; Qin, Y.S. (2014). Effects of different combinations of organic and mineral fertilizers on yield and quality of long chili pepper. Southwest China J. Agric. Sci. (In Chinese). , 27, 2006–2010. https://doi.org/10.1016/j.nanoen.2021.106369

Delgado-Sanchez P, Ortega-Amaro MA, Jimenez-Bremont JF, FloresJ. (2011). Are fungi important for breaking seed dormancy in desert species? Experimental evidence in Opuntia streptacantha (Cactaceae). Plant Biol (Stuttg)13(1) 154-9. https://doi.org/10.1016/j.nanoen.2021.106369

Diacono M, Montemurro F. (2010). Long-term effects of organic amendments on soil fertility: A review. Agron Sustain Dev 30 (2): 401-422. http://dx.doi.org/10.1007/978-94-007-0394-0_34
Geremew, E.B., Steyn, M.J., Annandale, G.J. (2007). Evaluation of growth performance and dry matter partitioning of four processing potato (Solanum tuberosum) cultivars. N. Z. J. Crop Hortic. Sci., 35, 385–393. https://doi.org/10.1080/01140670709510204

Hartatik and Widowati. (2006). menjelaskan bahwa keuntungan penggunaan pupuk kandang adalah sebagai sumber hara dan dapat memperbaiki kesuburan fisik, kimia, dan biologi tanah. Seminar Nasional Lingkungan Lahan Basah, (Vol. 6, No. 3).

Ichsan. (2015). Respon Pertumbuhan Dan Hasil Gambas Terhadap Pemberian Kombinasi Pupuk Kotoran Ayam Dan Pupuk Npk Pada Media Gambut. Jurnal Sains Pertanian Equator Halaman 776. http://dx.doi.org/10.26418/jspe.v12i4.64265

Jannoura R, Bruns C, Joergensen RG. (2013). Organic fertilizer effects on pea yield, nutrient uptake, microbial root colonization and soil microbial biomass indices in organic farming systems. Eur J Agron 49: 32-41. https://doi.org/10.1016/j.eja.2013.03.002

Larcher, W. (1995). Physiological plant ecology: Ecophysiological and stress physiology of functional groups. Springer, Berlin, Germany

Lei, S., Yunzhou, Q., Fengchao, J., Changhai, S., Chao, Y., Yuxin, L., Mengyu, L. & Baodi, D. (2009). Physiological mechanism contributing to efficient use of water in field tomato under different irrigation. Plant Soil Environ. 55 128-133. http://dx.doi.org/10.17221/321-PSE

Lin S, Wang C, Lei Q, Wei K, Wang Q, Deng M, Su L, Liu S, Duan X. (2023). Effects of combined application of organic fertilizer on the growth and yield of Pakchoi under different irrigation water types. Agronomy13:2468. http://dx.doi.org/10.3390/agronomy13102468

Martinez VR, Dibut AB, Gonzalez PR, Acosta RM. (1994). Effect of the application of biopreparations based on Azotobacter chroococcum on tomato and onion crops in red ferrallitic soils. 90-anos-de-la-Estacion Experimental-Agronomica-de-Santiago-de-lasVegas. 167-184. (C.F. CAB Abstracts computer research1996-1998. DOI 10.1088/1742-6596/1879/2/022018

Musnawar. (2007). Kotoran ayam mengandung n tiga kali lebih banyak dari pupuk kandang lainnya www.agronasa.com/pupuk-kandang/.com Diakses tanggal 12 Juni 2023.

Napitupulu, D., & Winarto, L. (2010). Pengaruh pemberian pupuk N dan K terhadap pertumbuhan dan produksi bawang merah. J. Hort. Vol. 20 No. 1, 2010. https://dx.doi.org/10.21082/jhort.v20n1.2010.p%25p.

Quintal Ortiz, W.C., Perez-Gutierrez, A., Latournerie Moreno, L., May-Lara, C., Ruiz Sanchez, E. & Martinez Chacon, A.J. (2012). Water use, water potential, and yield of habanero pepper (Capsicum chinense Jacq.) Rev. Fitotec. Mex. 35 155 160

Raden, I., B.S. Purwoko., Hariadi., M. Ghulamahdi and E. Santosa. (2009). Effect of pruning high and number of primary branches maintained on jatropha oil production (Jatropha curcas L.). (in Indonesian). J. Agron. Indonesia. 37(2): 159-166. http://doi.org/10.17503/agrivita.v36i3.428

Saijo, and Susilo. (2021). Upaya Peningkatan Hasil Panen Terong Ungu Di Lahan Berpasir. In Prosiding Seminar Nasional Lingkungan Lahan Basah (Vol. 6, No. 3). http://repository.umpr.ac.id/id/eprint/401

Saputro, W., Saritiwi, R., & Ingesti, P. (2017). Tanah berpasir (regosol) seringnya bereaksi masam, sehingga dibutuhkan penambahan kapur dolomit untuk menaikkan pH tanah dan sekaligus menambah ketersediaan unsur hara. Prosiding Seminar Nasional Lingkungan Lahan Basah, (Vol. 6, No. 3).

Sulistyowati R. and I. Yunita, (2016). Respon pertumbuhan dan hasil terong (Solanum melongena L.) terhadap pengaruh beberapa varietas dan dosis pupuk kandang. Jurnal Agrotechbiz. IV (1), 1-8

Usfunan. (2016). Pengaruh jenis dan cara aplikasi pupuk kandang terhadap pertumbuhan dan hasil tanaman tomat (Lycopersicumesculentum, Mill). Savana Cendana, 1(2), 2016, 68-73. ttp://repository.upy.ac.id/id/eprint/798

Wartapa, A., Y. Effendi, and Sukadi. (2009). The impacts of primary branch number arrangement and crop
reduction on yield and seed quality of Kaliurang tomato variety (Lycopersicum esculentum Mill). Jurnal-jurnal Ilmu Pertanian. (in Indonesian). 5 (2): 150 - 163. http://doi.org/10.17503/agrivita.v36i3.428

Xu X, Du X, Wang F, Sha J, Chen Q, Tian G, Zhu Z, Ge S, Jiang Y. (2020). Effects of potassium levels on plant growth, accumulation and distribution of carbon, and nitrate metabolism in apple dwarf rootstock seedlings. Front Plant Sci 11: http://dx.doi.org/10.3389/fpls.2020.00904

Yuan, Q.; Feng, B.; Zhong, Y.H.; Wang, J.; Xu, X.J.; Ma, H.B. (2021). Partial replacement of chemical fertilizer with organic fertilizer: Effects on eggplant yield, quality and soil fertility. Chin. Agric. Sci. Bull. 37, 59–63. https://doi.org/10.11924/j.issn.1000-6850.casb2020-0433

Additional Files

Published

2024-05-21

How to Cite

Saijo, S. (2024). Improvement of sandy soil productivity with chicken manure treatment and NPK fertilizer for eggplant plants. Environmental and Agriculture Management, 1(1), 41–50. https://doi.org/10.31102/eam.1.1.41-50