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The role of trees and livestock in ecosystem service provision and farm priorities on smallholder farms in the Rift Valley, Kenya

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  • Nyberg, Ylva
  • Wetterlind, Johanna
  • Jonsson, Mattias
  • Öborn, Ingrid

Abstract

Human beings are dependent on ecosystems and the services they provide. Some services are currently being overexploited, resulting in degradation and further pressure on already vulnerable people in e.g., sub-Saharan Africa. Long-term and stable delivery of ecosystem services (ES) is suggested to be enhanced by more diversified farming systems that e.g., mix crops with trees and livestock. Despite the amount of research on ES, few previous studies have identified and compared the roles of trees and livestock for ES considering farm priorities within smallholder systems. We studied the role of trees and livestock for ES provision as well as farm priorities for smallholders in Kenya. Twenty smallholder farms (0.2–0.8 ha) were studied for 1 year in a fully factorial design of high or low tree and livestock density systems. Data were collected on indicators for provisioning (crop, tree and livestock production), supporting/regulating (water infiltration, soil organic carbon and nutrients) and cultural (recreation and aesthetics) ESs. In addition, farm priorities were studied, considering nutrient management, on- and off-farm resources, food and consumption, and crop, tree and livestock species diversity. A mix of qualitative (e.g., semi-structured interviews, seasonal calendar) and quantitative (e.g., soil analyses, infiltration tests) methods were used to collect data. This study confirmed roles of trees and livestock for ES and farm priorities, although they in some cases appeared less important than family labour and farm size. Results showed that high tree density was related to higher workload, lower proportions of off-farm revenue as well as higher crop, fruit and tree diversity for the household. Tree or livestock density showed no clear relation to provisioning, supporting or regulating ES. However, cultural services were on average provided more by trees than livestock. Available family labour was positively related to both farm production (provisioning services) and crop, tree and livestock species diversity. The use of manure, compost and mineral fertilisers was overall low, and the application rate per unit area seemed higher on farms with less land which was reflected in higher soil P and Ca concentrations. The challenges of already small and reducing farm sizes need to be targeted seriously in research and development efforts. Also the issue of labour requirement and pathways for mechanization must be addressed to attract a new generation farmers to develop sustainable and profitable farm enterprises providing ES to the farm and the surrounding landscape.

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  • Nyberg, Ylva & Wetterlind, Johanna & Jonsson, Mattias & Öborn, Ingrid, 2020. "The role of trees and livestock in ecosystem service provision and farm priorities on smallholder farms in the Rift Valley, Kenya," Agricultural Systems, Elsevier, vol. 181(C).
  • Handle: RePEc:eee:agisys:v:181:y:2020:i:c:s0308521x19308789
    DOI: 10.1016/j.agsy.2020.102815
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    1. Henderson, B. & Godde, C. & Medina-Hidalgo, D. & van Wijk, M. & Silvestri, S. & Douxchamps, S. & Stephenson, E. & Power, B. & Rigolot, C. & Cacho, O. & Herrero, M., 2016. "Closing system-wide yield gaps to increase food production and mitigate GHGs among mixed crop–livestock smallholders in Sub-Saharan Africa," Agricultural Systems, Elsevier, vol. 143(C), pages 106-113.
    2. Appel, Franziska & Balmann, Alfons, 2019. "Human behaviour versus optimising agents and the resilience of farms – Insights from agent-based participatory experiments with FarmAgriPoliS," EconStor Open Access Articles and Book Chapters, ZBW - Leibniz Information Centre for Economics, vol. 40, pages 1-1.
    3. Shenggen Fan & Connie Chan‐Kang, 2005. "Is small beautiful? Farm size, productivity, and poverty in Asian agriculture," Agricultural Economics, International Association of Agricultural Economists, vol. 32(s1), pages 135-146, January.
    4. Turmel, Marie-Soleil & Speratti, Alicia & Baudron, Frédéric & Verhulst, Nele & Govaerts, Bram, 2015. "Crop residue management and soil health: A systems analysis," Agricultural Systems, Elsevier, vol. 134(C), pages 6-16.
    5. Dorward, Andrew, 2013. "Agricultural labour productivity, food prices and sustainable development impacts and indicators," Food Policy, Elsevier, vol. 39(C), pages 40-50.
    6. Castellanos-Navarrete, A. & Tittonell, P. & Rufino, M.C. & Giller, K.E., 2015. "Feeding, crop residue and manure management for integrated soil fertility management – A case study from Kenya," Agricultural Systems, Elsevier, vol. 134(C), pages 24-35.
    7. Berazneva, Julia & Lee, David R. & Place, Frank & Jakubson, George, 2018. "Allocation and Valuation of Smallholder Maize Residues in Western Kenya," Ecological Economics, Elsevier, vol. 152(C), pages 172-182.
    8. Kragt, Marit E. & Robertson, Michael J., 2014. "Quantifying ecosystem services trade-offs from agricultural practices," Ecological Economics, Elsevier, vol. 102(C), pages 147-157.
    9. Jonathan A. Foley & Navin Ramankutty & Kate A. Brauman & Emily S. Cassidy & James S. Gerber & Matt Johnston & Nathaniel D. Mueller & Christine O’Connell & Deepak K. Ray & Paul C. West & Christian Balz, 2011. "Solutions for a cultivated planet," Nature, Nature, vol. 478(7369), pages 337-342, October.
    10. Nguyen, Huy Quynh, 2017. "Analyzing the economies of crop diversification in rural Vietnam using an input distance function," Agricultural Systems, Elsevier, vol. 153(C), pages 148-156.
    11. Miguel A. Altieri & Clara I. Nicholls, 2017. "The adaptation and mitigation potential of traditional agriculture in a changing climate," Climatic Change, Springer, vol. 140(1), pages 33-45, January.
    12. Muyanga, Milu & Jayne, T.S., 2014. "Effects of rising rural population density on smallholder agriculture in Kenya," Food Policy, Elsevier, vol. 48(C), pages 98-113.
    13. Charles F. Nicholson & Philip K. Thornton & Rahab W. Muinga, 2004. "Household‐level Impacts of Dairy Cow Ownership in Coastal Kenya," Journal of Agricultural Economics, Wiley Blackwell, vol. 55(2), pages 175-195, July.
    14. Megan Sheahan & Joshua Ariga & T. S. Jayne, 2016. "Modeling the Effects of Input Market Reforms on Fertiliser Demand and Maize Production: A Case Study from Kenya," Journal of Agricultural Economics, Wiley Blackwell, vol. 67(2), pages 420-447, June.
    15. Sibhatu, Kibrom T. & Krishna, Vijesh V. & Qaim, Matin, 2015. "Farm Production Diversity and Dietary Diversity in Developing Countries," 2015 AAEA & WAEA Joint Annual Meeting, July 26-28, San Francisco, California 205286, Agricultural and Applied Economics Association.
    16. Mutoko, Morgan C. & Hein, Lars & Shisanya, Chris A., 2015. "Tropical forest conservation versus conversion trade-offs: Insights from analysis of ecosystem services provided by Kakamega rainforest in Kenya," Ecosystem Services, Elsevier, vol. 14(C), pages 1-11.
    17. Tittonell, Pablo & Gérard, Bruno & Erenstein, Olaf, 2015. "Tradeoffs around crop residue biomass in smallholder crop-livestock systems – What’s next?," Agricultural Systems, Elsevier, vol. 134(C), pages 119-128.
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    1. Ylva Nyberg & Caroline Musee & Emmanuel Wachiye & Mattias Jonsson & Johanna Wetterlind & Ingrid Öborn, 2020. "Effects of Agroforestry and Other Sustainable Practices in the Kenya Agricultural Carbon Project (KACP)," Land, MDPI, vol. 9(10), pages 1-22, October.
    2. Leroux, L. & Faye, N.F. & Jahel, C. & Falconnier, G.N. & Diouf, A.A. & Ndao, B. & Tiaw, I. & Senghor, Y. & Kanfany, G. & Balde, A. & Dieye, M. & Sirdey, N. & Alobo Loison, S. & Corbeels, M. & Baudron,, 2022. "Exploring the agricultural landscape diversity-food security nexus: an analysis in two contrasted parklands of Central Senegal," Agricultural Systems, Elsevier, vol. 196(C).
    3. Emilio Sabia & Ada Braghieri & Corrado Pacelli & Adriana Di Trana & Adele Coppola, 2023. "Perception of Ecosystem Services from Podolian Farming System in Marginal Areas of Southern Italy," Agriculture, MDPI, vol. 14(1), pages 1-19, December.
    4. Kernecker, Maria & Seufert, Verena & Chapman, Mollie, 2021. "Farmer-centered ecological intensification: Using innovation characteristics to identify barriers and opportunities for a transition of agroecosystems towards sustainability," Agricultural Systems, Elsevier, vol. 191(C).

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