Main Article Content

Abstract

Sumbawa Regency exhibits relatively dry soil characteristics due to limited water availability resulting from low rainfall levels. One of the plants suitable for cultivation in this area is sorghum. Sorghum is a viable alternative to rice and corn, as its seed market price is comparatively high. In addition to the limited rainfall in this region, farmers have faced challenges in optimizing crop yields to meet the nutritional needs of their plants. One approach is to optimize the utilization of inorganic and organic fertilizers as supplementary complex plant nutrients. The proposed approach involves using appropriately dosed organic fertilizers, which is anticipated to diminish reliance on excessive inorganic fertilizers. This study aimed to determine the effect of different doses of organic fertilizers on various varieties of sorghum in dryland plantations located in Sumbawa Regency. The experimental design used was Split Plot Design, with sorghum varieties (Bioguma, GBE Methane, and Sweetbetty) as the main-plot and organic fertilizer doses (0, 50, 100, and 200 g/plant) as sub-plots. The results of this study indicated that the interaction between varieties and organic fertilizers on plant growth promotes an increase in plant height, stem diameter, number of leaves, and leaf length. At the end of the plant height observation (42–49 days after sowing), the combination of treatments resulted in an increase in plant height. During the initial growth phases, certain variables showed responses in terms of leaf quantity (7 and 28 days after sowing) and leaf length (14–28 days after sowing). Sweetbetty and GBE Methane show enhanced plant growth; Sweetbetty shows higher plant height and leaf quantity, whereas GBE Methane demonstrates optimal stem diameter and leaf length, compared to Bioguma (a variety from Indonesia

Article Details

How to Cite
Syahrul, Kadafi, M., Purnamasari, A., & Khairi, A. (2024). THE GROWTH OF SORGHUM TYPES (Sorghum bicolor L. Moench) TREATED ORGANIC FERTILIZER IN DRYLAND. Jurnal Ilmu-Ilmu Pertanian Indonesia, 26(2), 114–122. https://doi.org/10.31186/jipi.26.2.114-122

References

  1. Abdiani, S.A., Kakar, K., Gulab, G. & Aryan, S. (2019). Influence of biofertilizer application methods on growth and yield performances of green pepper. International Journal of Innovative Research and Scientific Studies, 2(4), 68-74. DOI: https://doi.org/10.2139/ssrn.3499466.
  2. Al-Zayadi, L.R.S. & Hussein, A.A. (2024). The impact of adding bentonite and organic fertilizer on the growth and yield of sorghum in desert soil under the conditions of the Badia Al-Samawa. IOP Conference Series Earth and Environmental Science, 1371(8), 082007. DOI: https://doi.org/1755-1315/1371/8/082007 .
  3. Anggraini S, S., Zubaidi, A. & Anugrahwati, D.R. (2021). Pengaruh jarak tanam dan dosis pupuk kandang sapi terhadap pertumbuhan dan hasil tanaman sorgum (Sorgum bicolor L). Agroteksos, 31(2), 120-130.
  4. Akhtar, S., Bashir, S., Khan, S., Iqbal, J., Gulshan, A.B., Irshad, S., Batool, S., Ahmad, N. & Rizwan, M.S. (2020). Integrated usage of synthetic and biofertilizers: An environment friendly approach to improve the productivity of sorghum. Cereal Research Communications, 48, 247-253. DOI: https://doi.org/10.1007/s42976-020-00029-w.
  5. Badriyah, I.N., Taryono & Murti, R.H. (2015). Keragaan hasil gula dan hasil biji beberapa kultivar sorghum manis di tiga wilayah lahan kering Kabupaten Pekalongan dan Batang, Jawa Tengah. Prosiding Seminar Nasional Masyarakat Biodiversitas Indonesia, 1(4), 809-813. DOI: https://doi.org/10.13057/psnmbi/m010424.
  6. Christin, P-A. & Osborn, C.P. (2014). The evolutionary ecology of C4 plants. New Phytologist, 204(4), 765-781. DOI: https://doi.org/10.1111/nph.13033.
  7. Irmansyah, T., Rauf, A., Delvian & Akoeb, E.N. (2020). The growth, production of sorghum (Sorghum bicolor (L.) Moench) and changes in chemical soil properties due to the treatment of mulch and organic fertilizer. Russian Journal of Agricultural and Socio-Economic Sciences, 105(9), 30-28. DOI: https://doi.org/10.18551/rjoas.2020-09.03.
  8. Hassanen, S.A.A. & Abotaleb, H.H. (2020). Potential for improving sorghum productivity and quality by organic-bio and mineral fertilizers under soil lands conditions. Journal of Current Trends in Agriculture, Environment and Sustainability, 1(1), 103.
  9. Hazra, G. (2016). Different types of eco-friendly fertilizers: An overview. Sustainability in Environment, 1(1), 54-70. DOI: https://doi.org/10.22158/se.v1n1p54.
  10. Kakar, K., Xuan, T.D., Noori, Z., Aryan, S. & Gulab, G. (2020). Effects of organic and inorganic fertilizer application on growth, yield, and grain quality of rice. Agriculture, 10, 544. DOI: https://doi.org/10.3390/agriculture10110544.
  11. Kamaei, R., Faramarzi, F., Parsa, M. & Jahan, M. (2019). The effects of biological, chemical, and organic fertilizers application on root growth features and grain yield of sorghum. Journal of Plant Nutrition, 42(18), 2221-2233. DOI: https://doi.org/10.1080/01904167.2019.1648667.
  12. Kareem, S.S. & Hamed, B.A. (2024). The effect of adding bio and organic fertilizer under two levels of water stress on the readiness of NPK nutrients in the plant and the growth yield of the sorghum plant. IOP Conference Series Earth and Environmental Science, 1371, 082010. DOI: https://doi.org/10.1088/1755-1315/1371/8/082010.
  13. Khairi, A., Jayaputra, Padusung, Tejowulan, S. & Nurrachman.(2023).Combination of bio-organo- mineral fertilizers on optimizing the growth and production of tomatoes (Solanum lycopersicum L.) in dryland environment. Jurnal Ilmiah Pertanian, 20(2), 127-138. DOI:https://doi.org/10.31849/jip.v20i2.10901.
  14. Khairi, A., Dwilaksono, F., Purnamasari, A. & Ardiansah, G. (2024). Training on making organic fertilizer at SMPN 5 Satu Atap Labuhan Badas, Sumbawa Regency. Jurnal Pengabdian kepada Masyarakat (Indonesian Journal of Community Engagement), 10(2), 116-121. DOI: https://doi.org/10.22146/jpkm.93647.
  15. Khan, A., Khan, A.A., Khan, M.J., Ijaz, M., & Hassan, S.S. (2022). Combined effect of organic amendments and seed placement techniques on sorghum yield under salt stressed conditions. Journal of Soil Science and Plant Nutrition, 22, 4752-4767. DOI: https://doi.org/10.1007/s42729-022-00957-y.
  16. Kurniasari, R., Suwarto, & Sulistyono, E. (2023). Pertumbuhan dan produksi tanaman sorgum (Sorghum bicolor (L.) Moench) varietas numbu dengan pemupukan organik yang berbeda. Buletin Agrohorti, 11(1), 69-78. DOI: https://doi.org/10.29244/agrob.v11i1.46616.
  17. Kuziemska, B., Wysokiński, A. & Trębicka, J. (2020). The effect of different copper doses and organic fertilisation on soil’s enzymatic activity. Plant, Soil and Environment, 66(2), 93-98. DOI: https://doi.org/10.17221/671/2019-PSE.
  18. Li, X., Su, Y., Ahmed, T., Ren, H., Javed, M.R., Yao, Y., An, Q., Yan, J. & Li, B. (2021). Effects of different organic fertilizers on improving soil from newly reclaimed land to crop soil. Agriculture, 11(6), 560. DOI: https://doi.org/10.3390/agriculture11060560.
  19. Maqbool, A., Ali, S., Rizwan, M., Arif, M.S., Yasmeen, T., Riaz, M., Hussian, A., Noreen, S., Abdel-Daim, M.M. & Alkahtani, S. (2020). N fertilizer (Urea) enhances the phytoextraction of cadmium through Solanum nigrum L. International Journal of Environ-mental Research and Public Health, 17, 3850. DOI: https://doi.org/10.3390/ijerph17113850.
  20. Muhammad, S.Y., Abdulmumini, B.R., Sani, K. & Zaharaddeen, S. (2018). Effect of organic and inorganic fertilizer on the growth and yield of sorghum (Sorghum bicolor (L.) Moench) in Bauchi state, Nigeria. GSC Biological and Pharmaceutical Sciences, 2(1), 25-31. DOI: https://doi.org/10.30574/gscbps.2018.2.1.0053.
  21. Novitasari, P.Y., Putra, E.T.S. & Rogomulyo, R. (2016). Pertumbuhan dan produksi biomassa tiga kultivar sorgum (Sorghum bicolor L.) Moench) pada tiga stadium perkembangan agroforestri di Kabupaten Gunung Kidul.Vegetalika, 5(3), 53-62.
  22. Oliveira, D.P., Camargo, R.de., Lemes, E.M., Lana, R.M.Q., Matos, A.L.A. & Magela, M.L.M. (2017). Organic matter sources in the composition of pelletized organomineral fertilizers used in sorghum crops. African Journal of Agricultural Research, 12(32), 2574-2581. DOI: https://doi.org/10.5897/AJAR2016.11476.
  23. Sari, E.N., Harsono, P. & Supriyono. (2022). Response of sorghum variety growth in the first ratoon with liquid organic fertilizer application. E3S Web of Conferences, 361(3), 04004. DOI: https://doi.org/10.1051/e3sconf/202236104004.
  24. Sharif, M., Arif, M., Burni, T., Khan, F., Jan, B. & Khan, I. (2014). Growth and phosphorus uptake of sorghum plants in salt affected soil as affected by organic materials composted with rock phosphate. Pakistan Journal of Botany, 46(1), 173-180.
  25. Sharma, N. & Singhvi, R. (2017). Effects of chemical fertilizers and pesticides on human health and environment: A review. International Journal of Agriculture Environment and Biotechnology, 10, 675-680. DOI: https://doi.org/10.5958/2230-732X.2017.00083.3.
  26. Sher, A., Adnan, M., Sattar, A., Ul-Allah, S., Ijaz, M., Hassan, M.U., Manaf, A., Qayyum, A., Elesawy, B.H., Ismail, K.A., Gharib, A.F. & Askary, A.E. (2022). Combined application of organic and inorganic amendments improved the yield and nutritional quality of forage sorghum. Agronomy, 12, 896. DOI: https://doi.org/10.3390/agronomy12040896.
  27. Silalahi, M.J., Rumambi, A., Telleng, M.M. & Kaunang, W.B. (2018). Pengaruh pemberian pupuk kandang ayam terhadap pertumbuhan ta-naman sorgum sebagai pakan. Zootec, 38(2), 286-295.
  28. Tabaxi, I., Kakabouki, I., Zisi, C., Folina, A., Karydogianni, S., Kalivas, A. & Bilalis, D. (2020). Effect of organic fertilization on soil characteristics, yield and quality of Virginia tobacco in Mediterranean area. Emirates Journal of Food and Agriculture, 32(8), 610-616. DOI: https://doi.org/10.9755/ejfa.2020.v32. i8.2138.
  29. Tanwar, R., Panghal, A., Chaudhary, G., Kumari, A. & Chhikara, N. (2023). Nutritional, phytochemical and functional potential of sorghum: A review. Food Chemistry Advances, 3, 100501. DOI: https://doi.org/10.1016/j.focha.2023.100501.
  30. Wan, L.-J., Tian, Y., He, M., Zheng, Y.-Q., Lyu, Q., Xie, R.-J., Ma, Y.-Y., Deng, L. & Yi, S.-L. (2021). Effects of chemical fertilizer combined with organic fertilizer application on soil properties, citrus growth physiology, and yield. Agriculture, 11(12), 1207. DOI: https://doi.org/10.3390/agriculture11121207.
  31. Yadav, K.K. & Sarkar, S. (2019). Biofertilizers impact on soil fertility and crop productivity under sustainable agriculture. Environment and Ecology, 37(1), 89-93.