Vol. 1 No. 2 (2025): August
Open Access
Peer Reviewed

Development of Timor Local Lurik Peanut Through Breeding with Multigamma Irradiation Method to Obtain Superior Generations

Authors

Bartholomeus Pasangka , Irvandi Gorby Pasangka , Refli

Published:

2025-08-31

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Abstract

This research focuses on development of local Timor lurik peanut through breeding using multigamma irradiation method, careful selection, and purification to obtain superior generation. The advantage of method is that superior generations are obtained in a relatively short time. Development using modern technology needs to be carried out considering that the production of lurik peanuts at the farmer level has only reached 0.7 t ha-1 to 1.2 t ha-1. The objective of the research is to develop local Timor lurik peanut through breeding using multigamma irradiation method, careful selection, and purification to obtain superior generation seeds. The main research methods are observation, irradiation, careful selection, purification, analysis, and interpretation. Brief procedure of the research: observation for selection of local lurik peanut seeds and identifying the chemical and physical characteristics of parent as comparative materials, preparing the land, cultivating the land, irradiating the seeds, planting on the prepared land, weeding to be free of weeds and fertilizing, irrigating as needed, spraying insecticides as needed, observing and measuring during growth, harvesting, and sorting superior generation seeds. The results obtained: development of local Timor lurrik peanuts through breeding with multigamma irradiation and careful selection obtained superior selected generations that adapt to drought conditions, tolerant of pests and diseases, and high production. The production range of the superior generation resulting from multigamma irradiation was (4.56-4.75) t ha-1 with an average production of 4.63 t ha-1. The percentage increase in production of the superior selected generation was 41.04%, an average water content was 11.2%.

Keywords:

Generation, Irradiation, Lurik peanut, Multigamma, Superior

References

Abidin, Z., Jati, H., Harini, T. S., & Jutom, L. (2023). Training and Assistance Processing of Corn and Peanut Based Food Product. Community Impowerment, 8(1), 36–44. https://doi.org/10.31603/ce.7934

Asis, R., Ismail, & Pakpahan, L. E. (2022). Increasing the Growth and Productivity of Peanuts in Dry Land Through the Application of Dolomite and NPK Fertilizer. Indonesian Journal of Agriculture Science, 24(2), 88–94. https://doi.org/10.31186/jipi.24.2.88-94

Balitkabi. (2016). Description of Superior Peanut Variety, KT.45. Retrieved from https://123dok.com/document/q04djk9z-deskripsi-varietas-unggul-kacang-tanah-kt.html#google_vignette

BPS. (2019). Luas Panen, Produksi, dan Produktivitas Kacang Tanah Menurut Kabupaten/Kota di Provinsi Jawa Tengah, 2018. Retrieved from https://jateng.bps.go.id/id/statistics-table/1/MTczOSMx/luas-panen-produksi-dan-produktivitas-kacang-tanah-menurut-kabupaten-kota-di-provinsi-jawa-tengah-2018.html

BPS, N. T. T. (2020). Provinsi Nusa Tenggara Timur Dalam Angka 2020. Retrieved from https://ntt.bps.go.id/id/publication/2020/04/27/080aa7bde0454f07e7848b49/provinsi-nusa-tenggara-timur-dalam-angka-2020.html

Harahap, F. S. (2021). Evaluasi Kesesuaian Lahan Untuk Tanaman Kacang Tanah Di Kelurahan Pardamean Kecamatan Rantau Selatan. Agroplasma Journal, 8(1), 11–17. https://doi.org/10.36987/agroplasma.v8i1.1956

Hasmawati., A., & Risal, M. (2018). Prospek Pengembangan Usahatani Kacang Tanah (Studi Kasus Desa Limampoccoe Kecamatan Cenrana Kabupaten Maros). Agribusiness Journal, 8(2), 1–13. Retrieved from https://shorturl.asia/PhVGC

Ibrahim, H., Amalia, R., & Kasirang, A. (2023). Prospects For Developing Peanut Farming in Bijawang Village, Ujung Loe Sub-District, Bulukumba District. Journal Agroecotech Indonesia, 2(1), 60–68. https://doi.org/10.59638/jai.v2i01.37

Leonita, S., Harta, G. D. M., Rosyidta, A., & Irianto, H. (2020). Analisis kelayakan tekno-ekonomi produk agroindustri kacang lurik sangrai di Kota Tangerang Selatan. Jurnal Ilmu Pengetahuan Dan Teknologi, 4(1), 33–39. https://doi.org/10.31543/jii.v4i1.156

Malelak, N. D. M. O., Pasangka, B., & Mbiliyora, M. (2023). Breeding of Jumbo Local Peanuts of Upright Type Rote Ndao Using Multigamma Irradiation Method to Obtain Superior Seed Varieties. Journal of Physics. Physics Science and Its Applications, 8(1), 50–55. https://doi.org/10.35508/fisa.v10i1

Marwiyah, S., Purnamawati, H., & Sembiring, P. (2017). Physical Mutation Induced by Gamma Ray Irradiation on Kidney Bean. Journal Comm. Hort. J, 1(1), 49–55 10 29244 1 1 49–55. https://doi.org/10.29244/chj.1.1.49-55

Murdolelono, B. (2017). Legume Plant Technology for Farmers in East Nusa Tenggara, Proceedings of Research Results on Various Legume and Tuber Plants. Retrieved from https://adoc.pub/teknologi-tanaman-kacang-kacangan-untuk-petani-di-nusa-tengg.html#google_vignette

Novianti, F. (2021). Effect of Dosage of P Fertilizer and Arbuscular Vesicular Mycorrhiza on Growth and Yield of lurik Peanut (Arachis Hypogaea L Merr [Thesis: Siliwangi University]. Retrieved from http://103.123.236.3/5202/

Novianto, A., & Daryono, B. S. (2018). Phenotypic Characters and Ploidy Degree of lurik Peanut (Arachis hypogaea L. ‘Lurik’) Resulting from Selection and Colchicine Induction. Retrieved from https://etd.repository.ugm.ac.id/home/detail_pencarian/162159

Pasangka, B., & Gorby, I. P. (2021). Continuous Development and Cultivation of Soybean as a Result of Multigamma Irradiation through Final Purifying Method. Jurnal Penelitian Pendidikan IPA, 7(2), 156–166. https://doi.org/10.293030/jppipa.v7i2.611

Pasangka, B., & Pasangka, I. G. (2023). Improvement of Local Purple Corn (Zea mays) Variety with Multigamma Irradiation (Nuclear) Technique. AIP Conference Proceedings, 2619, 0500, 1–10. https://doi.org/10.1063/5.0122784

Pasangka, B., & Pasangka, I. G. (2024). Breeding of Local Glutinous Corn (Zea mays ceretina L) with Multigamma Irradiation Methods to Obtain Superior Mutant Cultivars. International Journal of Advanced and Applied Sciences, 11(8), 127–134. Retrieved from https://www.science-gate.com/IJAAS.html

Pasangka, B., Pasangka, I. G., & Ilic, Z. M. S. (2021). Cultivar Repair of Local Vigna radiata L to Use Multigamma Irradiation Technique (Nuclear) that Tolerant to Dry Condition, Rainy Season, Germ, and High Production. Jurnal Penelitian Pendidikan IPA, 7(4), 508–518. https://doi.org/10.29303/jppipa.v7i4.859

Pasangka, B., & Refli. (2016). Development and ultivation of Local Kidney Bean (Phaseolus Vulgaris L) Through Breeding to Use Multigamma Irradiation Technique (Nuclear. American Journal of Agricultural and Biologycal Sciences, 11(ue. 3), 117–127. https://doi.org/10.3844/ajabssp.2016.117.127

Pasangka, B., & Refli. (2021). Genetic Improvement of Local Red Peanut with Using Nuclear Technique (Multigamma Irradiation) for Obtaining Superior Variety". Journal of Agricultural Science, 14(1), 94–103. https://doi.org/10.5539/jas/v14n1p94

Pasangka, B., & Refli. (2022). Genetic Improvement of Local Red Peanut With Using Nuclear Technique (Multigamma Irradiation) for Obtaining Superior Variety. Journal of Agricultural Science, 14(1), 94–103. https://doi.org/10.5539/jas.v14n1p94

Pasangka, B., & Wahid, A. (2021). Genetic Engineering of Local Cayenne Pepper (Capsicum frustescens L) Through Breeding with Multigamma Irradiation Methods to Obtain Superior Offspring". Journal of Agricultural Science, 13(2), 81–90. https://doi.org/10.5539/jas.v13n12p81

Pujiastuti, E. S., Siahaan, F. R., Tampubolon, Y. R., Tarigan, J. R., & Sumihar, S. T. T. (2021). Response of Soil and Peanut on the Application of Several Local Microorganism and Manures. Journal of Agrotechnology and Plantation: Agrinula, 4(1), 1–12. https://doi.org/10.36490/agri.v4i1.107

Purnomo, J., Nugrahaeni, N., Sundari, T., & Harnowo, D. (2020). Technical Instructions for Peanut Seed Production Technology, Agricultural Research and Development Agency, Ministry of Agriculture. Retrieved from https://balitkabi.litbang.deptan.go.id

Rahmianna, A. A., Pratiwi, H., & Harnowo, D. (2017). Peanut Cultivation, Research Institute for Various Legumes and Tuber Crops. Balitkabi Monograph, 13, 133–169. Retrieved from https://adoc.pub/budidaya-kacang-tanah.html#google_vignette

Ratunggading, F., Jawang, U. P., & Nganji, M. U. (2020). Evaluasi Potensi Lahan Pengembangan Komoditas Kacang Tanah (Arachis hypogaea L.) di Kecamatan Haharu, Sumba Timur, Nusa Tenggara Timur. Journal of Agricultural Sciences: AGRILAND, 8(3), 261–266. Retrieved from https://journal.uisu.ac.id/index.php/agriland.

Rohmah, D. I., Mulyani, M., Janah, L. N., Pancoro, A., Miftahudin., W., T., A., & Daryono, B. S. (2021). The Effectiveness of Bio-catharanthine on Peanut (Arachis hypogea L.) Lurik Cultivar. Advances in Biological Sciences Research, 22, 383–387. https://doi.org/10.2991/absr.k.220406.054

Rosyidi, I. N. (2018). Phenotypic Characters and Genetic Variance of Striped Beans (Arachis hypogaea L. var Lurikensis) with Inter Simple Sequence Repeat. Retrieved from https://etd.repository.ugm.ac.id/penelitian/detail/165742

Rosyidi, I. N., & Daryono, B. S. (2020). Phenotypic characters and genetic variations of lurik peanuts (Arachis hypogaea L. var. lurikensis) with Inter Simple Sequence Repeat. BIODIVERSITAS, 21(2), 629–635 10 13057 210227. https://doi.org/10.13057/biodiv/d210227

Rosyidi, I. N., Yusuf, A. F., Sahroni, M., & Daryono, B. S. (2023). Detection of Transposon Gene in Lurik Peanuts (Arachis hypogaea var. lurik L.) with AhMITEs Analysis. International Journal on Advanced Science Engineering Information Technology, 3(5), 1349–1354. Retrieved from https://www.researchgate.net/publication/373493354

Rozi, F., Sutrisno, I., & Rahmianna, A. A. (2016). Opportunities for Peanut Development in Dry Land of East Nusa Tenggara. Palawija Bulletin, 14(2), 71–77. Retrieved from https://www.academia.edu/104961546/Peluang_Pengembangan_Kacang_Tanah_DI_Lahan_Kering_Nusa_Tenggara_Timur

Seran, A. H., & Raharjo, K. T. P. (2018). Study of Drought Stress After Flowering Period of Red Bean Plants (Phaseolus Vulgaris L) on Entisol Soil. Journal of Dryland Conservation Agriculture. Retrieved from https://media.neliti.com/media/publications/527369-study-of-drought-stress-after-the-flower-a5e89675.pdf

Sinaga, A. O. Y., Lindayanti, M., Aunila, S. L., & Marpaung, D. S. S. (2021). Identification of Peanut Seed Quality (Arachis Hypogaea L.) Local Tuban Variety Using Tetrazolium Test and Germination Test. Journal of Tropical Agricultural Engineering and Biosystems, 9(3.p), 208–215. https://doi.org/10.21776/ub.jkptb.2021.009.03.02

Siswanti, D. U., Pangestiti, N. H., & Wulansari, N. (2022). Growth and Productivity of Lurik Peanuts (Arachis hypogaea L. var. Lurikensis) after Biofertilizer-Sludge Biogas Application. Advances in Biological Sciences Research, 22, 505–512. https://doi.org/10.2991/absr.k.220406.071

Sutrisno, I., & Rozi, F. (2015). Local Wisdom as the Basis for Optimizing Food Crop Cultivation in East Sumba, Development of Local Resources Potential with Environmental Insights to Strengthen National Agricultural Products with Global Competitiveness. Research Center for Various Legumes and Tuber Crops. Proceeding. Retrieved from https://digitallibrary.ump.ac.id/597/2/31.%20%20%20Imam%20Sutrisno.pdf

Tabean, E. (2021). Promising Market, Dekrimindo North Central Timor Encourages Farmers to Develop Lurik Peanuts. Retrieved from https://voxntt.com

Tamonob, A., Solichatun., & Suratman. (2024). The Effect of Seed Priming Using Giberlic Acid on Growth of Groundnut (Arachis hypogaea L) and Lurik Groundnut (Arachis hypogaea L var. Lurik), Bioscientist: Jurnal Ilmiah Biologi (Scientific Journal of Biology, 12(2), 583–2594. https://doi.org/10.33394/bioscientist.v12i2.13774

Udang., S., & Anugrah, M. (2020). Characterization of Red Bean Seeds (Phaseolus Vulgaris L) as a Provider of Superior Varieties. Jurnal Agrosintesa, 3(1), 1–11. https://doi.org/10.33603/jas.v3i1.3545

Wicaksana, Y. (2018). Lurik Peanuts, Superior Peanut Varieties that are Resistant to Disease, AgrotechnologyUniv. Mury Kudus. Retrieved from https://paktanidigital.com/artikel/kacang-lurik-varietas-unggul/

Widiastuti, T., Rizali, N., Anatayu, S., & Waluyo, S. N. (2017). Line and Color Composition in Lurik Cawas Weaving: Idea from Traditional Lurik Patterns. International Research Journal of Management, IT & Social Sciences, 4(1), 1–7. Retrieved from https://sloap.org/journals/index.php/irjmis/article/view/389

Yuan, X., Li, S., Chen, J., Yu, H., Yang, T., Wang, C., Huang, S., Chen, H., & Ao, X. (2024). Impacts of Global Climate Change on Agricultural Production: A Comprehensive Review. Agronomy, 14(7). https://doi.org/10.3390/agronomy14071360

Yulifianti, R. B. A., Santos, S., & Widowati, S. (2020). Processing Technology and Processed Peanut Products, Research Center for Various Nuts and Tubers, Malang, and the Center for Agricultural Postharvest Research and Development. Bogor, Monograph, Balitkabi, 13, 376–393. Retrieved from https://adoc.pub/teknologi-pengolahan-dan-produk-olahan-kacang-tanah.html

Zulchi, T., & Puad, H. (2017). Keragaman morfologi dan kandungan protein kacang tanah (Arachis hypogaea L.). Plasma Nulfah Bulletin, 23(2), 91–100. https://doi.org/10.21082/blpn.v23n2.2017.p91-100

Author Biographies

Bartholomeus Pasangka, Nusa Cendana University, Kupang

Irvandi Gorby Pasangka, Nusa Cendana University Kupang

Refli, Nusa Cendana University Kupang

How to Cite

Pasangka, B., Pasangka, I. G., & Refli, R. (2025). Development of Timor Local Lurik Peanut Through Breeding with Multigamma Irradiation Method to Obtain Superior Generations. Journal of Material Science and Radiation, 1(2), 55–65. Retrieved from https://journals.balaipublikasi.id/index.php/jmsr/article/view/385