Analysis of Clove Agroforestry Productivity and Sustainability Using a Systemic Approach (MDS RAP-AFS) in Wolo District, Kolaka Regency
Abstract
Kolaka Regency makes a significant contribution to clove production in Southeast Sulawesi. Wolo District, as one of the centers of clove production in Kolaka, faces complex challenges, including declining productivity. Agroforestry systems are expected to be a solution to increase productivity and the sustainability of clove farming in Wolo District. The purpose of this study is to analyze the productivity and sustainability of agroforestry-based clove farming. The method used to address the problem is productivity analysis and MDS analysis, utilizing the RAP-AFS approach (encompassing ecological, economic, social, and institutional dimensions). The results of the study show that clove productivity before the introduction of agroforestry in 2020 was 0.27 ton/ha. After the introduction of clove agroforestry in 2023, clove productivity began to increase, reaching 0.54 ton/ha in 2025. The level of sustainability of agroforestry-based clove farming in Wolo District, Kolaka Regency, is entirely in the fairly sustainable category in each dimension. The respective index values are ecological (67.01), economic (56.73), social (57.63) and institutional (51.90). The study's conclusion reveals that productivity has increased following the introduction of agroforestry, and the sustainability status of clove agroforestry in Wolo District, Kolaka Regency, is categorized as fairly sustainable, with the institutional dimension attribute being the most influential factor.
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References
Ariandi, R. (2022). Strategi keberlanjutan agroforestry di Desa Ulusaddang Kabupaten Pinrang. [Master’s Thesis]. Universitas Hasanuddin).
BPS Kolaka. (2024). Kolaka Regency in Figures. 16.
Pusdatin (Pusat Data dan Sistem Informasi Pertanian). (2023). Outlook Cengkeh 2023. Sekretariat Jenderal Kementerian Pertanian RI, Jakarta.
Duffy, C., Toth, G.G., Hagan, R.P.O., McKeown, P.C., Rahman, S.A., Widyaningsih, Y., Sunderland, T.C.H., & Spillane, C. (2021). Agroforestry contributions to smallholder farmer food security in Indonesia. Agroforestry Systems, 95(6), 1109–1124. https://doi.org/10.1007/s10457-021-00632-8
Gerhardt, C., Bröring, S., Strecker, O., Wustmans, M., Moretti, D., Breunig, P., Pichon, L., Müller-Seitz, G., & Förster, B. (2022). Framework for the digital transformation of the agricultural ecosystem. In J. Dörr & M. Nachtmann (Eds.), Handbook Digital Farming: Digital Transformation for Sustainable Agriculture (pp. 59–108). Springer Berlin Heidelberg. https://doi.org/10.1007/978-3-662-64378-5_2
Kaushal, R., Mandal, D., Panwar, P., Rajkumar, Kumar, P., Tomar, J.M.S., & Mehta, H. (2021). Chapter 20 - Soil and water conservation benefits of agroforestry. Forest Resources Resilience and Conflicts, 259-275. https://doi.org/10.1016/B978-0-12-822931-6.00020-4
Kavanagh, P., & Pitcher, T.J. (2004). Implementing Microsoft Excel software for RAPFISH: A technique for the rapid appraisal of fisheries status. Fisheries Centre Research Reports, 12(2). https://dx.doi.org/10.14288/1.0074801
Lamatungga, M., Rosmalah, S., & Hartati, H. (2024). Peran penyuluh pertanian dalam mengembangkan kegiatan usahatani sayuran di Desa Puunggoni, Kecamatan Angata, Kabupaten Konawe Selatan. Ziraa’ah: Majalah Ilmiah Pertanian, 49(2), 215–224. https://doi.org/10.31602/zmip.v49i2.14097
Murniati, M., Suharti, S., Minarningsih, Nuroniah, H.S., Rahayu, S., & Dewi, S. (2022). What makes agroforestry a potential restoration measure in a degraded conservation forest? Forests, 13(2), 1–17. https://doi.org/10.3390/f13020267
Paul, C., Bartkowski, B., Dönmez, C., Don, A., Mayer, S., Steffens, M., Weigl, S., Wiesmeier, M., Wolf, A., & Helming, K. (2023). Carbon farming: Are soil carbon certificates suitable for climate change mitigation? Journal of Environmental Management, 330, 117142. https://doi.org/10.1016/j.jenvman.2022.117142
Pawiengla, A.A., Yunitasari, D., & Adenan, M. (2020). Analisis keberlanjutan usahatani kopi rakyat di Kecamatan Silo, Kabupaten Jember. Jurnal Ekonomi Pertanian dan Agribisnis (JEPA), 4(4), 701–714.
Raihan, A. (2023). A review of agroforestry as a sustainable and resilient agriculture. Journal of Agricultural Sustainability and Environment, 2(1), 49–72. https://doi.org/10.56556/jase.v2i1.799
Rosmalah, S. (2022). Eksistensi Usahatani dan Keberdayaan Petani Ladang di Pulau Wawonii. NEM Publisher. ISBN 978-6234235746.
Rosmalah, S. Harianti, & Nurmaya, N. (2023a). Strategi pemberdayaan petani padi ladang di Kabupaten Konawe Kepulauan. Jurnal Agribisnis dan Komunikasi Pertanian, 6(1), 71–78. http://dx.doi.org/10.35941/jakp.6.1.2023.11003.71-78
Rosmalah, S., Rayuddin, Hartati, & Sufa, B. (2023b). Hubungan karakteristik penyuluh dengan kinerja penyuluh di Kecamatan Sampara Kabupaten Konawe. Jurnal Penyuluhan, 19(1), 130–140. https://doi.org/10.25015/19202342725
Sahoo, G., Wani, A.M., Sharma, A., & Rout, S. (2020). Agroforestry for forest and landscape restoration. International Journal of Advance Study and Research Work, Special Issue (ICROIRT-2020), 536-542.
Santos, M., Cajaiba, R.L., Bastos, R., Gonzalez, D., Petrescu Bakış, A.-L., Ferreira, D., Leote, P., Silva, W.B. da, Cabral, J.A., Gonçalves, B., & Mosquera-Losada, M.R. (2022). Why do agroforestry systems enhance biodiversity? Evidence from habitat amount hypothesis predictions. Frontiers in Ecology and Evolution, 9, 630151. https://doi.org/10.3389/fevo.2021.630151
Subhan, M., Setiawan, I., & Setia, B. (2020). Analisis keberlanjutan usahatani buah naga berbasis komunitas. Agroinfo Galuh: Jurnal Mahasiswa, 7(2), 380-386. https://doi.org/10.25157/jimag.v7i2.3343
Suprayitno, A.R., Sumardjo, S., Gani, D.S., & Sugihen, B.G. (2011). Model peningkatan partisipasi petani sekitar hutan dalam mengelola hutan kemiri rakyat (Kasus pengelolaan hutan kemiri kawasan pegunungan Bulusaraung Kabupaten Maros Sulawesi Selatan). Jurnal Penelitian Sosial dan Ekonomi Kehutanan, 8(3), 176-195.
van Noordwijk, M., Duguma, L.A., Dewi, S., Leimona, B., Catacutan, D.C., Lusiana, B., Öborn, I., Hairiah, K., & Minang, P.A. (2018). SDG synergy between agriculture and forestry in the food, energy, water and income nexus: Reinventing agroforestry? Current Opinion in Environmental Sustainability, 34, 33–42. https://doi.org/10.1016/j.cosust.2018.09.003
Xiao, J., & Xiong, K. (2022). A review of agroforestry ecosystem services and its enlightenment on the ecosystem improvement of rocky desertification control. Science of the Total Environment, 852, 158538. https://doi.org/10.1016/j.scitotenv.2022.158538
Zhang, S., Huang, G., Zhang, Y., Lv, X., Wan, K., Liang, J., Feng, Y., Dao, J., Wu, S., Zhang, L., Yang, X., Lian, X., Huang, L., Shao, L., Zhang, J., Qin, S., Tao, D., Crews, T.E., Sacks, E.J., Lyu, J., Wade, L.J., & Hu, F. (2023). Sustained productivity and agronomic potential of perennial rice. Nature Sustainability, 6, 28–38. https://doi.org/10.1038/s41893-022-00997-3

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