Effectiveness of Pruning and Fertilization in Maintaining Soil Fertility and Nutrient Cycling in Coffee Agroforestry Systems: A Systematic Literature Review
DOI:
https://doi.org/10.34145/ivas.v1i1.3861Keywords:
Coffee Productivity, Microbial Biomass, Nvivo Analysis, Soil Respiration, Sustainable ManagementbareAbstract
Indonesia's relatively low coffee productivity compared to other producing countries indicates serious problems in agroforestry management, particularly soil fertility degradation and nutrient imbalance. Suboptimal pruning and fertilization exacerbate these conditions, necessitating a systematic study to understand their effectiveness. This study aims to evaluate the role of pruning and fertilization in maintaining soil fertility, nutrient balance, and their relationship to coffee productivity. This study used a Systematic Literature Review (SLR) design based on PRISMA 2020 with the PICO framework. It searched literature from Scopus and Web of Science for the period 2015–2025, screened through inclusion-exclusion criteria, assessed quality using the Mixed Methods Appraisal Tool (MMAT 2018), and analyzed data using thematic analysis in NVivo 14. Of the 201 initial articles, 28 met the criteria and were further analyzed. The results indicate that pruning increases organic inputs, improves soil structure, and nutrient cycling efficiency, while fertilization maintains the availability of essential nutrients. The integration of the two resulted in a positive nutrient balance, significantly increasing microbial biomass, soil respiration, and coffee productivity. Literature trends indicate a shift in focus from basic ecological studies to practical strategies for sustainable management. This study concludes that the integration of pruning and fertilization is a key strategy in coffee agroforestry, although further research needs to consider socio-economic dimensions and adaptation to extreme climates to produce more applicable recommendations for sustainable coffee agroforestry.
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Ali Yuddin Fitra, A., Oakley, S., Prayogo, C., Ratna Sari, R., Dwi Saputra, D., Maulana Ishaq, R., Sigit Wicaksono, K., & Suprayogo, D. (2024). Soil Water in Different Management Systems of Coffee-Pine Agroforestry and Its Relation to Coffee Bean Yields. IOP Conference Series: Earth and Environmental Science, 1299(1). https://doi.org/10.1088/1755-1315/1299/1/012009
Avelino, J., Gagliardi, S., Perfecto, I., Isaac, M. E., Liebig, T., Vandermeer, J., Merle,, Hajian-Forooshani, Z., & Motisi, N. (2023). Tree Effects on Coffee Leaf Rust at Field and Landscape Scales. Plant Disease, 107(2), 247–261. https://doi.org/10.1094/PDIS-08-21-1804-FE
Avelino, J., Vílchez, S., Segura-Escobar, M. B., Brenes-Loaiza, M. A., Virginio Filho,E. de M., & Casanoves, F. (2020). Shade tree Chloroleucon eurycyclum promotes coffee leaf rust by reducing uredospore wash-off by rain. Crop Protection, 129, 105038. https://doi.org/10.1016/j.cropro.2019.105038
Ayala-Montejo, D., Valdés-Velarde, E., Benedicto-Valdés, G. S., Escamilla-Prado, E., Sánchez-Hernández, R., Gallardo, J. F., & Martínez-Zurimendi, P. (2022). Soil Biological Activity, Carbon and Nitrogen Dynamics in Modified Coffee Agroforestry Systems in Mexico. Agronomy, 12(8), 1–14. https://doi.org/10.3390/agronomy12081794
Ayalew, B., Hylander, K., Adugna, G., Zewdie, B., Zignol, F., & Tack, A. J. M. (2024). Impact of climate and management on coffee berry disease and yield in coffee’s native range. Basic and Applied Ecology, 76(February), 25–34. https://doi.org/10.1016/j.baae.2024.01.006
Azizah, F. R., Prayogo, C., Kurniawan, S., & Rowe, R. L. (2023). Microbial Biomass and Soil Respiration Response to Pruning and Fertilization Practices in Coffee- Pine Agroforestry. Journal of Ecological Engineering, 24(8), 329–342. https://doi.org/10.12911/22998993/167417
Biazin, B., Haileslassie, A., Zewdie, T., Mekasha, Y., Gebremedhin, B., Fekadu, A., & Shewage, T. (2018). Smallholders’ avocado production systems and tree productivity in the southern highlands of Ethiopia. Agroforestry Systems, 92(1), 127–137. https://doi.org/10.1007/s10457-016-0020-2
Boreux, V., Vaast, P., Madappa, L. P., Cheppudira, K. G., Garcia, C., & Ghazoul, J. (2016). Agroforestry coffee production increased by native shade trees, irrigation, and liming. Agronomy for Sustainable Development, 36(3). https://doi.org/10.1007/s13593-016-0377-7
Buchanan, S., Isaac, M. E., Van den Meersche, K., & Martin, A. R. (2019). Functional traits of coffee along a shade and fertility gradient in coffee agroforestry systems. Agroforestry Systems, 93(4), 1261–1273. https://doi.org/10.1007/s10457-018-0239-1
Cahyono, E. D., Salsabila, F., Deltanti, W., Eka, P., & Niall, P. (2020). The effect of canopy pruning on productivity and microclimate in coffee-pine agroforestry. Journal of Agroforestry Research, 15(2), 101–113.
Corzo-Bacallao, J. A., Salas-Macías, C. A., Fonseca-Rodríguez, O., Garcés-Fiallos,F. R., Alcívar-Muñoz, E. I., & Baque-Loor, H. F. (2024). Influence of Tree Shade on the Growth and Chlorophyll Content of Arabica Coffee Plants Established in an Agroforestry System at Southern Manabí, Ecuador. Sarhad Journal of Agriculture, 39(Specialissue2), 37–47. https://doi.org/10.17582/JOURNAL.SJA/2023/39/S2.37.47
Dadther-Huaman, H., Zamata-Guzman, R., & Casa-Coila, V. H. (2023). Agro- morphological characterization of pallar accessions (Phaseolus lunatus) from the National Germplasm Bank of INIA, Peru. Bioagro, 35(1), 59–68. https://doi.org/10.51372/bioagro351.7
Defrenet, E., Roupsard, O., Van Den Meersche, K., Charbonnier, F., Pérez-Molina, J. P., Khac, E., Prieto, I., Stokes, A., Roumet, C., Rapidel, B., De Melo Virginio Filho, E., Vargas, V. J., Robelo, D., Barquero, A., & Jourdan, C. (2016). Part of a special issue on root biology: Root biomass, turnover and net primary productivity of a coffee agroforestry system in Costa Rica: Effects of soil depth, shade trees, distance to row and coffee age. Annals of Botany, 118(4), 833– 851. https://doi.org/10.1093/aob/mcw153
Egidio, L. S., & Souza, M. N. (2024). Recuperação de áreas degradadas na Mata Atlântica : 23 anos de restauração ecológica e agrofloresta na Estância São Lucas , Guaçuí – ES. 230–241.
FAOSTAT. (2022). FAO statistical database. https://www.fao.org/faostat
Fitra, A. A. Y., Oakley, S., Prayogo, C., Sari, R. R., Saputra, D. D., Ishaq, R. M., Wicaksono, K. S., & Suprayogo, D. (2024). Optimizing coffee yields in agroforestry systems using WaNuLCAS model: A case study in Malang, Indonesia. Journal of Degraded and Mining Lands Management, 11(4), 6337– 6350. https://doi.org/10.15243/jdmlm.2024.114.6337
Forgues, .Katia. (2024). 1. Comparing carbon offsets and livelihood benefits in a long‐ term reforestation_070838.pdf.
Gonzales, R., Arévalo, L., & Solis, R. (2023). Shade Management and Pruning in Two Coffee Varieties Vs. Plant Growth and Leaf Rust in the Peruvian Amazon.
Bioagro, 35(1), 49–58. https://doi.org/10.51372/bioagro351.6
Guevara-Fernandez, F., & Oliva-Cruz, M. (2025). Determinants of adoption of sustainable agricultural practices by small-scale coffee farmers in amazonas, Peru. Asian Journal of Agriculture and Rural Development, 15(1), 11–29. https://doi.org/10.55493/5005.v15i1.5276
Hasselquist, N. J., Benegas, L., Roupsard, O., Malmer, A., & Ilstedt, U. (2018). Canopy cover effects on local soil water dynamics in a tropical agroforestry system: Evaporation drives soil water isotopic enrichment. Hydrological Processes, 32(8), 994–1004. https://doi.org/10.1002/hyp.11482
Heryandi, Q., R., Darmawan, A., & Yuliasari, V. (2022). Agroforestry for biodiversity and climate change mitigation in Batutegi Protection Forest, Lampung, Indonesia. Biodiversitas, 23(3), 1611–1620. https://doi.org/10.13057/biodiv/d230352
Hong, Q. N., Pluye, P., Fàbregues, S., Bartlett, G., Boardman, F., Cargo, M., & Vedel,I. (2018). Mixed Methods Appraisal Tool (MMAT), version 2018. User guide.
Kurniawan, S., Nugroho, R. M. Y. A. P., Ustiatik, R., Nita, I., Nugroho, G. A., Prayogo,C., & Anderson, C. W. N. (2024). Soil nitrogen dynamics affected by coffee (coffea arabica) canopy and fertilizer management in coffee-based agroforestry. Agroforestry Systems, 98(6), 1323–1341. https://doi.org/10.1007/s10457-024-01004-8
Malavolta, E. (1990). Nutrition and fertilization of coffee. Brazilian Journal of Soil Science, 14(2), 25–32.
Matondang, R. R., Ustiatik, R., Febiona, S., & Kurniawan, S. (2025). Fertilizer changes soil bacteria community and soil quality on coffee agroforestry in the tropic. Journal of Ecological Engineering, 26(10), 180–190. https://doi.org/10.12911/22998993/205821
Morales Peña, V. H., Mora Garcés, A., Virginio Filho, E. de M., Villatoro Sánchez, M., Pazmiño Pachay, W. W., & Chanto Ares, E. (2024a). The Phenology of Coffea arabica var. Esperanza L4A5 Under Different Agroforestry Associations and Fertilization Conditions in the Caribbean Region of Costa Rica. Agriculture (Switzerland), 14(11), 1–27. https://doi.org/10.3390/agriculture14111988
Morales Peña, V. H., Mora Garcés, A., Virginio Filho, E. de M., Villatoro Sánchez, M., Pazmiño Pachay, W. W., & Chanto Ares, E. (2024b). The Phenology of Coffea arabica var. Esperanza L4A5 Under Different Agroforestry Associations and Fertilization Conditions in the Caribbean Region of Costa Rica. Agriculture (Switzerland), 14(11). https://doi.org/10.3390/agriculture14111988
Narango, D. L., Tallamy, D. W., Snyder, K. J., & Rice, R. A. (2019). Canopy tree preference by insectivorous birds in shade-coffee farms: Implications for migratory bird conservation. Biotropica, 51(3), 387–398. https://doi.org/10.1111/btp.12642
Ngo Bieng, M. A., Delgado-Rodríguez, D., Vilchez-Mendoza, S., López-Sampson, A., García, E., Sepúlveda, N., & Somarriba, E. (2022). Tree diversity in a tropical agricultural-forest mosaic landscape in Honduras. Scientific Reports, 12(1), 1–
15. https://doi.org/10.1038/s41598-022-21280-7
Nugroho, R. M. Y. A. P., Ustiatik, R., Prasetya, B., & Kurniawan, S. (2023). Response of Different Coffee-Based Agroforestry Management on Microbial Respiration and Density. Journal of Ecological Engineering, 24(9), 158–170. https://doi.org/10.12911/22998993/169179
Nurcholis, O., Auliya Nugroho, G., Pujo Nugroho, R. M. Y. A., Prayogo, C., & Kurniawan, S. (2024). Trees and Soil Management Impacts on Soil Nutrient and Coffee Production in Coffee-Based Agroforestry. IOP Conference Series: Earth and Environmental Science, 1299(1). https://doi.org/10.1088/1755- 1315/1299/1/012003
Page, M. J., McKenzie, J. E., Bossuyt, P. M., Boutron, I., Hoffmann, T. C., Mulrow, C. D., & Moher, D. (2021). The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. BMJ, 372, n71. https://doi.org/10.1136/bmj.n71
Piato, K., Subía, C., Pico, J., Calderón, D., Norgrove, L., & Lefort, F. (2021). Organic farming practices and shade trees reduce pest infestations in robusta coffee systems in amazonia. Life, 11(5). https://doi.org/10.3390/life11050413
Pinoargote, M., Cerda, R., Mercado, L., Aguilar, A., Barrios, M., & Somarriba, E. (2017). Carbon stocks, net cash flow and family benefits from four small coffee plantation types in Nicaragua. Forests Trees and Livelihoods, 26(3), 183–198. https://doi.org/10.1080/14728028.2016.1268544
Pinto, L. S., Martínez, M. A., Zurimendi, P. M., & Jiménez-Ferrer, G. (2017). Tree Quality in Agroforestry Systems Managed by Small-Scale Mayan Farmers in Chiapas, Mexico. Small-Scale Forestry, 16(1), 103–118. https://doi.org/10.1007/s11842-016-9345-y
Portilho, G. R., de Castro, V. R., Carneiro, A. de C. O., Zanuncio, J. C., Zanuncio, A.J. V., Surdi, P. G., Gominho, J., & Araújo, S. de O. (2020). Potential of briquette produced with torrefied agroforestry biomass to generate energy. Forests, 11(12), 1–10. https://doi.org/10.3390/f11121272
Putri, R., Saputra, H., & Nugroho, A. (2018). Fertilizer application and its impact on coffee production in Solok. Indonesian Journal of Agricultural Science, 19(3), 145–154.
Rigal, C., Xu, J., Hu, G., Qiu, M., & Vaast, P. (2020). Coffee production during the transition period from monoculture to agroforestry systems in near optimal growing conditions, in Yunnan Province. Agricultural Systems, 177(December 2018), 102696. https://doi.org/10.1016/j.agsy.2019.102696
Rossi, E., Montagnini, F., & de Melo Virginio Filho, E. (2011). Effects of management practices on coffee productivity and herbaceous species diversity in agroforestry systems in Costa Rica. Agroforestry as a Tool for Landscape Restoration, February, 113– 132.
Rowe, R. L., Prayogo, C., Oakley, S., Hairiah, K., & ... (2022). Improved coffee management by farmers in state forest plantations in Indonesia: an experimental platform. In Land. mdpi.com. https://www.mdpi.com/2073- 445X/11/5/671
Sarmiento-Soler, A., Vaast, P., Hoffmann, M. P., Rötter, R. P., Jassogne, L., van Asten, P. J. A., & Graefe, S. (2019). Water use of Coffea arabica in open versus shaded systems under smallholder’s farm conditions in Eastern Uganda.Agricultural and Forest Meteorology, 266–267(May 2018), 231–242. https://doi.org/10.1016/j.agrformet.2018.12.006
Schnug, E., Haneklaus, S., & Murphy, D. (1996). Impact of nutrient removal on soil fertility in perennial crops. Nutrient Cycling in Agroecosystems, 46(2), 201–210.
Sinaga, M., & Setyono, E. (2020). Influence of light intensity and pruning on coffee yield.Indonesian Journal of Plantation Crops, 28(1), 33–42.
Snyder, H. (2019). Literature review as a research methodology: An overview and guidelines. Journal of Business Research, 104, 333–339. https://doi.org/10.1016/j.jbusres.2019.07.039
Song, Q., Cao, K., Zhu, S., Agro-bioresources, S., Guangxi, G. K., Sciences, L., Sciences, B. M., Tel, S. Z., & Ecology, F. (2023). Co Sc.
Ssebulime, G., Nyombi, K., Kagezi, G. H., Mpiira, S., Byabagambi, S., Tushemereirwe,
Statistik, B. P. (2020). Statistik kopi Indonesia. BPS.
Sudharta, K. A., Hakim, A. L., Fadhilah, M. A., Fadzil, M. N., Prayogo, C., Kusuma, Z., & Suprayogo, D. (2022). Soil organic matter and nitrogen in varying management types of coffee-pine agroforestry systems and their effect on coffee bean yield. Biodiversitas, 23(11), 5884–5891. https://doi.org/10.13057/biodiv/d231142
Sumarni, N., Simangunsong, E., & Hutabarat, A. (2010). Organic matter application and soil fertility improvement. Soil and Tillage Research, 110(1), 1–8.
Supriadi, B., & Dibyo, H. (2015). Coffee-based agroforestry: Conservation and productivity aspects. Agroforestry Systems, 89(5), 879–889.
Surgery, T., & Surgery, T. (2024). Fo ee r r ev iew on Fo r p on.
Thamrin, T. (2014). Fertilizer management in arabica coffee farming in Enrekang, South Sulawesi. Indonesian Journal of Plantation Agriculture, 12(4), 211–220.
Tinoco-Jaramillo, L., Salazar, A., & Torres, J. (2024). Nutrient contribution and carbon sequestration of agroforestry coffee systems under different management practices. Forests, 15(5), 807
Trimming, B., Cahyono, E. D., Fairuzzana, S., Willianto, D., & Pradesti, E. (2020). Agroforestry Innovation through Planned Farmer. Land, 9(363), 1–20.
Urgessa Waktola, T., & Fekadu, K. (2021). Adoption of Coffee Shade Agroforestry Technology and Shade Tree Management in Gobu Seyo District, East Wollega, Oromia. Advances in Agriculture, 2021. https://doi.org/10.1155/2021/8574214
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