Evaluation of Ratoon Potential and Yield of Some Sorghum Varieties (Sorghum bicolor L)
DOI:
10.29303/jppipa.v10i10.8374Published:
2024-10-25Issue:
Vol. 10 No. 10 (2024): OctoberKeywords:
Ratoon, Sorghum, VarietiesResearch Articles
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Abstract
Sorghum production needs to be increased to meet food or feed needs because sorghum grain has nutritional qualities that are comparable to other grains such as corn. One of the advantages of the sorghum plant is the growth of new shoots from the base of the harvested stem which produces new plants, ratoon, that grow until they can be harvested. This experiment examines the ratoon potential of 5 sorghum varieties, Bioguma, Samurai, Pahat, Suri4, and the local Gando Keta variety so that we can utilize ratoon technology on these sorghum varieties. The experiment was carried out in a greenhouse using a Completely Randomized Design. It can be confirmed from this experiment that the dry matter weight of the main plants is higher compared to the ratoon plants' dry matter weight, however, the yield of the ratoon was higher than that of the main plants. Seed size contributes to the higher yield of the ratoon plants. Among all the varieties tested, Suri4 and Pahat show the best ratoon potential. Gando Keta, the local variety, has the lowest grain yield of main and ratoon compared to the other varieties.
References
Akter, N., & Rafiqul Islam, M. (2017). Heat stress effects and management in wheat. A review. Agronomy for Sustainable Development, 37(5), 37. https://doi.org/10.1007/s13593-017-0443-9
Al-Taweel, S. K., Najm, E. S., Cheyed, S. H., & Snaa, Q. (2020). Response of sorghum varieties to the ratoon cultivation 1- Growth characteristics. IOP Conference Series: Materials Science and Engineering, 870(1), 12030. https://doi.org/10.1088/1757-899X/870/1/012030
Ardiyanti, S. E., Sopandie, D., Wirnas, D., & Trikoesoemaningtyas. (2019). Ratoon productivity of sorghum breeding lines (Sorghum bicolor (L.) Moench). IOP Conference Series: Earth and Environmental Science, 399(1), 12030. https://doi.org/10.1088/1755-1315/399/1/012030
Azizah, N., Zubaidi, A., & Supeno, B. (2022). Pertumbuhan dan hasil tanaman ratun sorgum (Sorghum bicolor L . Moench) terhadap perlakuan jarak tanam dan jumlah tanaman per rumpun. Seminar Nasional Dalam Rangka Dies Natalis Ke-46 UNS Tahun 2022, “Digitalisasi Pertanian Menuju Kebangkitan Ekonomi Kreatif,” 6(1), 264–273. Retrieved from https://core.ac.uk/download/524900330.pdf
Dicko, M. H., Gruppen, H., Traoré, A. S., Voragen, A. G. J., & Van Berkel, W. J. H. (2006). Sorghum grain as human food in Africa: Relevance of content of starch and amylase activities. African Journal of Biotechnology, 5(5), 384–395. Retrieved from https://www.ajol.info/index.php/ajb/article/view/137858
Djanaguiraman, M., Vara Prasad, P. V., Murugan, M., Perumal, R., & Reddy, U. K. (2014). Physiological differences among sorghum (Sorghum bicolor L. Moench) genotypes under high temperature stress. Environmental and Experimental Botany, 100, 43–54. https://doi.org/10.1016/j.envexpbot.2013.11.013
Duncan, R. R., & Gardner, W. A. (1984). The Influence Of Ratoon Cropping On Sweet Sorghum Yield, Sugar Production, And Insect Damage. Canadian Journal of Plant Science, 64(2), 261–274. https://doi.org/10.4141/cjps84-040
Efendi, R., Fatmawati, & Z, B. (2013). Prospek Pengelolaan Ratun Sorgum. In Sorgum, Inovasi Teknologi dan Pengembangan (pp. 205–221). Jakarta: IAARD Press.
Enserink, H. J. (1995). Sorghum agronomy in West Kenya: investigations from a farming systems perspective. Royal Tropical Institute.
Gambín, B. L., & Borrás, L. (2011). Genotypic diversity in sorghum inbred lines for grain-filling patterns and other related agronomic traits. Crop and Pasture Science, 62(12), 1026. https://doi.org/10.1071/CP11051
Hatfield, J. L., & Prueger, J. H. (2015). Temperature extremes: Effect on plant growth and development. Weather and Climate Extremes, 10, 4–10. https://doi.org/10.1016/j.wace.2015.08.001
Hawari, H., Suwardji, S., & Idris, H. (2021). The Role of Biochar and Combination of Inorganic Fertilizers and Biological Fertilizers in Increasing Yield and Levels of Brix Sorghum (Sorghum bicolor (L.) Moench) in Dry Land. Jurnal Penelitian Pendidikan IPA, 7(3), 437–442. https://doi.org/10.29303/jppipa.v7i3.729
Jaya, I. K. D., Suheri, H., Wangiyana, W., & Zubaidi, A. (2024). Crop Diversification Grown as Strip Intercropping Can Improve Farmers’ Return in a Dryland with Sandy Soil. Jurnal Penelitian Pendidikan IPA, 10(6), 3075–3082. https://doi.org/10.29303/jppipa.v10i6.7730
Livingston, S. D., & Coffman, C. G. (1914). Ratooning Grain Sorghum on the Texas Gulf Coast. In Cooperative Extension Work in Agriculture (Issue 8, p. 96). The Texas A&M University System. Retrieved from https://oaktrust.library.tamu.edu/server/api/core/bitstreams/1f0fbb12-9178-4453-8562-9eef7427dd23/content
Nurmala, T. S. (2003). Serealia Sumber Karbohidrat Utama. Jakarta: Rineka Cipta.
Ostmeyer, T., Bheemanahalli, R., Srikanthan, D., Bean, S., Peiris, K. H. S., Madasamy, P., Perumal, R., & Jagadish, S. V. K. (2020). Quantifying the agronomic performance of new grain sorghum hybrids for enhanced early-stage chilling tolerance. Field Crops Research, 258, 107955. https://doi.org/10.1016/j.fcr.2020.107955
Paesal, Syuryawati, Suarni, & Aqil, M. (2021). Sorghum cultivation of the ratoon system for increased yields in dry land. IOP Conference Series: Earth and Environmental Science, 911(1), 012035. https://doi.org/10.1088/1755-1315/911/1/012035
Pramono, E., Kamal, M., Susilo, F. X., & Timotiwu, P. B. (2019). Seed Yield of Various Genotypes of Sorghum (Sorghum bicolor [ L .] Moench.) Harvested from Intercropping with Cassava (Manihot utilisima L.) Compared to Monoculture and Ratoon. MAYFEB Journal of Agricultural Science, 1, 1–12. https://doi.org/10.5281/zenodo.1205547
Rogé, P., Snapp, S., Kakwera, M. N., Mungai, L., Jambo, I., & Peter, B. (2016). Ratooning and perennial staple crops in Malawi. A review. Agronomy for Sustainable Development, 36(3), 50. https://doi.org/10.1007/s13593-016-0384-8
Sirappa, M. P. (2003). Prospek Pengembangan Sorgum di Indonesia Sebagai Komoditas Alternatif Untuk Pangan, Pakan, dan Industri. Jurnal Litbang Pertanian, 22(4), 133–140. Retrieved from https://dinpertanpangan.demakkab.go.id/?p=5424
Syuryawati, Faesal, & Aqil, M. (2021). Sorghum plants with ratoon cultivation increase production and income. IOP Conference Series: Earth and Environmental Science, 911(1), 012077. https://doi.org/10.1088/1755-1315/911/1/012077
Tabri, F., & Zubachtirodin. (2013). Budidaya tanaman Sorgum. In Sorgum, Inovasi Teknologi dan Pengembangan (pp. 190–202). IAARD Press.
Tew, T. L., Cobill, R. M., & Richard, E. P. (2008). Evaluation of Sweet Sorghum and Sorghum × Sudangrass Hybrids as Feedstocks for Ethanol Production. BioEnergy Research, 1(2), 147–152. https://doi.org/10.1007/s12155-008-9013-y
Tsuchihashi, N., & Goto, Y. (2008). Year-Round Cultivation of Sweet Sorghum [ Sorghum bicolor (L.) Moench] through a Combination of Seed and Ratoon Cropping in Indonesian Savanna. Plant Production Science, 11(3), 377–384. https://doi.org/10.1626/pps.11.377
Vanderlip, R. L., & Reeves, H. E. (1972). Growth Stages of Sorghum [ Sorghum bicolor , (L.) Moench.] 1. Agronomy Journal, 64(1), 13–16. https://doi.org/10.2134/agronj1972.00021962006400010005x
Zhou, Y., Huang, J., Li, Z., Wu, Y., Zhang, J., & Zhang, Y. (2022). Yield and Quality in Main and Ratoon Crops of Grain Sorghum Under Different Nitrogen Rates and Planting Densities. Frontiers in Plant Science, 12. https://doi.org/10.3389/fpls.2021.778663
Zubaidi, A., Anugrahwati, D. R., McDonald, G. K., & Gill, G. (2021). Yield and photosynthetic rate of wheat under continuously high temperature. IOP Conference Series: Earth and Environmental Science, 648(1), 12126. https://doi.org/10.1088/1755-1315/648/1/012126
Zubaidi, A., Anugrahwati, D. R., Suheri, H., Suwardji, & Jaya, I. K. D. (2022). Optimation of yield on peanut-sorghum intercropping in the dry land, North Lombok. IOP Conference Series: Earth and Environmental Science, 1114(1), 12057. https://doi.org/10.1088/1755-1315/1114/1/01205
Author Biographies
Akhmad Zubaidi, Universitas Mataram
Dwi Ratna Anugrahwati, Universitas Mataram
Baiq Erna Listiana, Universitas Mataram
Novita Hidayatun Nufus, Universitas Mataram
Anjar Azhari Pranggawan, Universitas Mataram
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Copyright (c) 2024 Akhmad Zubaidi, Dwi Ratna Anugrahwati, Baiq Erna Listiana, Novita Hidayatun Nufus, Anjar Azhari Pranggawan
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