The Opportunities and Barriers in Developing Interactive Digital Extension Services for Smallholder Farmers as a Pathway to Sustainable Agriculture: A Systematic Review
Abstract
:1. Introduction
2. Research Methodology
2.1. Selection of Search Keywords and Databases
2.2. Inclusion and Exclusion Criteria
2.3. Research Limitations
3. Results
3.1. Descriptive Results
3.2. Types of Digital Extension Services
3.3. Opportunities in Developing Interactive Digital Extension Services in Agricultural Sector
3.4. Barriers of Interactive Digital Extension Services in Agricultural Sector
4. Discussion
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
References
- Meemken, E.-M.; Bellemare, M.F. Smallholder farmers and contract farming in developing countries. Proc. Natl. Acad. Sci. USA 2020, 117, 259–264. [Google Scholar] [PubMed]
- Fabregas, R.; Kremer, M.; Schilbach, F. Realizing the potential of digital development: The case of agricultural advice. Science 2019, 366, eaay3038. [Google Scholar] [PubMed]
- Nakasone, E.; Torero, M.; Minten, B. The power of information: The ICT revolution in agricultural development. J Annu. Rev. Resour. Econ. 2014, 6, 533–550. [Google Scholar]
- Spielman, D.; Lecoutere, E.; Makhija, S.; Van Campenhout, B. Information and Communications Technology (ICT) and agricultural extension in developing countries. Annu. Rev. Resour. Econ. 2021, 13, 177–201. [Google Scholar]
- Liu, S.; Guo, L.; Webb, H.; Ya, X.; Chang, X. Internet of Things monitoring system of modern eco-agriculture based on cloud computing. IEEE Access 2019, 7, 37050–37058. [Google Scholar]
- Krintz, C.; Wolski, R.; Golubovic, N.; Lampel, B.; Kulkarni, V.; Sethuramasamyraja, B.; Roberts, B.; Liu, B. SmartFarm: Improving Agriculture Sustainability Using Modern Information Technology. KDD Workshop on Data Science for Food, Energy, and Water. 2016. Available online: https://sites.cs.ucsb.edu/~rich/publications/dsfew16.pdf (accessed on 10 January 2025).
- Mukherjee, A.; Maity, A. Public–private partnership for convergence of extension services in Indian agriculture. Curr. Sci. 2015, 109, 1557–1563. [Google Scholar]
- Naika, M.B.; Kudari, M.; Devi, M.S.; Sadhu, D.S.; Sunagar, S. Digital extension service: Quick way to deliver agricultural information to the farmers. In Food Technology Disruptions; Elsevier: Amsterdam, The Netherlands, 2021; pp. 285–323. [Google Scholar]
- De Jesus, N.M.; Buenas, L.J.E. Descriptive Analytics and Interactive Visualizations for Performance Monitoring of Extension Services Programs, Projects, and Activities. Int. J. Adv. Comput. Sci. Appl. 2023, 14, 660–668. [Google Scholar] [CrossRef]
- Ortiz-Crespo, B.; Steinke, J.; Quirós, C.F.; van de Gevel, J.; Daudi, H.; Gaspar Mgimiloko, M.; van Etten, J. User-centred design of a digital advisory service: Enhancing public agricultural extension for sustainable intensification in Tanzania. Int. J. Agric. Sustain. 2021, 19, 566–582. [Google Scholar]
- Singh, N.; Sunitha, N.H.; Tripathi, G.; Saikanth, D.R.K.; Sharma, A.; Jose, A.E.; Mary, M.V.K.J. Impact of Digital Technologies in Agricultural Extension. Asian J. Agric. Ext. Econ. Sociol. Rev. 2023, 41, 963–970. [Google Scholar]
- Moosaei, M.; Afshari, N. Investigating the Role of Personalized Digital Extension Services on Agricultural Performance (A Case Study of Farmers in Fars Province). Int. J. Agric. Sci. Res. Technol. Ext. Educ. Syst. 2023, 13, 22–33. [Google Scholar]
- Thi Hoa Sen, L.; Chou, P.; Dacuyan, F.B.; Nyberg, Y.; Wetterlind, J. Barriers and enablers of digital extension services’ adoption among smallholder farmers: The case of Cambodia, the Philippines and Vietnam. Int. J. Agric. Sustain. 2024, 22, 2368351. [Google Scholar]
- Kitchenham, B.; Brereton, O.P.; Budgen, D.; Turner, M.; Bailey, J.; Linkman, S. Systematic literature reviews in software engineering–A systematic literature review. Inf. Softw. Technol. 2009, 51, 7–15. [Google Scholar]
- Lu, Y.; Song, S.; Wang, R.; Liu, Z.; Meng, J.; Sweetman, A.J.; Jenkins, A.; Ferrier, R.C.; Li, H.; Luo, W.; et al. Impacts of soil and water pollution on food safety and health risks in China. Environ. Int. 2015, 77, 5–15. [Google Scholar]
- Phuong, L.T.H.; Biesbroek, G.R.; Wals, A.E. The interplay between social learning and adaptive capacity in climate change adaptation: A systematic review. NJAS Wagening. J. Life Sci. 2017, 82, 1–9. [Google Scholar]
- Wasik, B.A.; Hindman, A.H.; Snell, E.K. Book reading and vocabulary development: A systematic review. Early Child. Res. Q. 2016, 37, 39–57. [Google Scholar]
- Chanias, S.; Myers, M.D.; Hess, T. Digital transformation strategy making in pre-digital organizations: The case of a financial services provider. J. Strateg. Inf. Syst. 2019, 28, 17–33. [Google Scholar]
- Narine, L.K.; Harder, A.; Roberts, T.G. Extension officers’ adoption of modern information communication technologies to interact with farmers of Trinidad. J. Int. Agric. Ext. Educ. 2019, 26, 17–34. [Google Scholar]
- Obong, R.; Mugonola, B.; Phillips, D.P. Determinants of mobile phones usage in sweet potato vine business in Gulu district northern Uganda. Afr. J. Agric. Res. 2018, 13, 1071–1079. [Google Scholar]
- Girma, Y.; Kelil, A. Mobile phone and beef cattle marketing: The case of Girar Jarso district of Oromia region, Ethiopia. Cogent Food Agric. 2021, 7, 1911032. [Google Scholar]
- Kalio, G.A. Availability, access and utilization of ICTs and its tools among poultry farmers in Yenagoa, Bayelsa State, Nigeria. Anim. Res. Int. 2021, 17, 3836–3844. [Google Scholar]
- Krell, N.T.; Giroux, S.A.; Guido, Z.; Hannah, C.; Lopus, S.E.; Caylor, K.K.; Evans, T.P. Smallholder farmers’ use of mobile phone services in central Kenya. Clim. Dev. 2021, 13, 215–227. [Google Scholar]
- Mugabi, N.; Omona, J.; Jansson, B. Revolutionalizing agriculture extension delivery through mobile telephony: The experience of village enterprise agent model in Greater masaka area, Uganda. WIT Trans. Ecol. Environ. 2018, 217, 963–974. [Google Scholar]
- Oliveira-Jr, A.; Resende, C.; Pereira, A.; Madureira, P.; Gonçalves, J.; Moutinho, R.; Moreira, W. IoT sensing platform as a driver for digital farming in rural Africa. Sensors 2020, 20, 3511. [Google Scholar] [CrossRef] [PubMed]
- Thakur, M.; Pandit, V.; Chaudhary, M.; Rajkumar, R. ICT interventions in crop health knowledge management for smallholder farmers. J. Glob. Commun. 2016, 9, 35–46. [Google Scholar]
- Emeana, E.M.; Trenchard, L.; Dehnen-Schmutz, K. The revolution of mobile phone-enabled services for agricultural development (m-Agri services) in Africa: The challenges for sustainability. Sustainability 2020, 12, 485. [Google Scholar] [CrossRef]
- Khan, N.; Siddiqui, B.N.; Khan, N.; Khan, F.; Ullah, N.; Ihtisham, M.; Ullah, R.; Ismail, S.; Muhammad, S. Analyzing mobile phone usage in agricultural modernization and rural development. Int. J. Agric. Ext. 2020, 8, 139–147. [Google Scholar]
- Khan, N.A.; Qijie, G.; Ali, S.; Shahbaz, B.; Shah, A.A. Farmers’ use of mobile phone for accessing agricultural information in Pakistan: A case of Punjab province. Cienc. Rural 2019, 49, e20181016. [Google Scholar] [CrossRef]
- Drewry, J.L.; Shutske, J.M.; Trechter, D.; Luck, B.D.; Pitman, L. Assessment of digital technology adoption and access barriers among crop, dairy and livestock producers in Wisconsin. Comput. Electron. Agric. 2019, 165, 104960. [Google Scholar]
- Getahun, A.A. Challenges and opportunities of information and communication technologies for dissemination of agricultural information in Ethiopia. Int. J. Agric. Ext. 2020, 8, 57–65. [Google Scholar] [CrossRef]
- Al-Hamdani, M.H.S.; Al-Khazarji, R.M.I.; Mohammad, O.K.J. Effecting of Mobile Applications in Control Farmers’ Communication Behavior in Iraq. In Proceedings of the 2018 1st Annual International Conference on Information and Sciences (AiCIS), Fallujah, Iraq, 20–21 November 2018. [Google Scholar]
- Mohanraj, I.; Gokul, V.; Ezhilarasie, R.; Umamakeswari, A. Intelligent drip irrigation and fertigation using wireless sensor networks. In Proceedings of the 2017 IEEE Technological Innovations in ICT for Agriculture and Rural Development (TIAR), Chennai, India, 7–8 April 2017. [Google Scholar]
- Arinloye, D.-D.A.; Linnemann, A.R.; Hagelaar, G.; Coulibaly, O.; Omta, O.S. Taking profit from the growing use of mobile phone in Benin: A contingent valuation approach for market and quality information access. Inf. Technol. Dev. 2015, 21, 44–66. [Google Scholar] [CrossRef]
- Thar, S.P.; Ramilan, T.; Farquharson, R.J.; Pang, A.; Chen, D. An empirical analysis of the use of agricultural mobile applications among smallholder farmers in Myanmar. Electron. J. Inf. Syst. Dev. Ctries. 2021, 87, e12159. [Google Scholar] [CrossRef]
- Lahiri, B.; Anurag, T.S.; Marak, B.R.; Sangma, A.K.; Sangma, S.M. Development of mobile based fishery advisory prototype: An experience with fisher tribes of Garo Hills in North-Eastern Himalayan region of India. Indian J. Fish 2020, 67, 10–17. [Google Scholar] [CrossRef]
- Mudda, K.; Giddi, B.; Murthy, P. A study on the digitization of supply chains in agriculture-an Indian experience. J. Agric. Inform. 2017, 8, 45–55. [Google Scholar]
- Murugan, M.; Karthikeyan, C. Effectiveness of SMS based Extension Advisories on Farmers Adoption Behaviour. Madras Agric. J. 2017, 104, 85–89. [Google Scholar]
- Nwabugwu, T.S.; Nwobodo, C.E.; Okoro, J.C. Awareness and use of e-resources among public extension personnel in anambra state, nigeria. J. Agric. Ext. 2019, 23, 161–170. [Google Scholar] [CrossRef]
- Agwu, E.A.; Ndakotsu, J.E.; Ifeonu, C.F. Farmers’ perceived effectiveness of the Growth Enhancement Support Scheme in Kogi State, Nigeria. J. Agric. Ext. 2019, 23, 113–129. [Google Scholar] [CrossRef]
- Agwu, A.E.; Ogbonnah, E.E. Access and use of information communication technologies by women staff of public extension service in the north central zone of Nigeria. Agric. Inf. Worldw. 2013, 6, 18–24. [Google Scholar]
- Aker, J.C. Dial “A” for agriculture: A review of information and communication technologies for agricultural extension in developing countries. Agric. Econ. 2011, 42, 631–647. [Google Scholar] [CrossRef]
- Etwire, P.M.; Buah, S.; Ouédraogo, M.; Zougmoré, R.; Partey, S.T.; Martey, E.; Dayamba, S.D.; Bayala, J. An assessment of mobile phone-based dissemination of weather and market information in the Upper West Region of Ghana. Agric. Food Secur. 2017, 6, 8. [Google Scholar] [CrossRef]
- Folitse, B.Y.; Manteaw, S.A.; Dzandu, L.P.; Obeng-Koranteng, G.; Bekoe, S. The determinants of mobile-phone usage among small-scale poultry farmers in Ghana. Inf. Dev. 2019, 35, 564–574. [Google Scholar] [CrossRef]
- Henze, J.; Ulrichs, C. The potential and limitations of mobile-learning and other services in the agriculture sector of Kenya using phone applications. In Proceedings of the 12th European International Farming Systems Association (IFSA) Symposium, Social and Technological Transformation of Farming Systems: Diverging and Converging Pathways, Shropshire, UK, 12–15 July 2016. [Google Scholar]
- Jaji, M.F.O.; Abanigbe, S.A.; Abass, B.O. Mobile Phone as an Extension Tool among Female Agricultural Practitionersin Lagos State Nigeria. J. Agric. Ext. 2017, 21, 66. [Google Scholar]
- Komolafe, S.E.; Abogunrin, O.O.; Adesiji, G.B.; Akinnifesi, A.I. Assessment of the use of mobile phone as an information communication channel among fish farmers in Lagos State, Nigeria. Bull. Inst. Trop. Agric. Kyushu Univ. 2018, 41, 57–66. [Google Scholar]
- Kumari, G.; Biswas, A. Mobile phone: A potential tool for agricultural transformation. Trends Biosci. 2014, 7, 448–451. [Google Scholar]
- Migliaccio, K.W.; Morgan, K.T.; Vellidis, G.; Zotarelli, L.; Fraisse, C.; Rowland, D.L.; Zurweller, B.A. Smartphone apps for irrigation scheduling. Trans. ASABE 2016, 59, 291–301. [Google Scholar]
- Mittal, S.; Hariharan, V.K. Mobile-based climate services impact on farmers risk management ability in India. Clim. Risk Manag. 2018, 22, 42–51. [Google Scholar]
- Aromolaran, A.K.; Alarima, C.I.; Akerele, D.; Oyekunle, O.; Leramo, G.A. Use of Internet for Innovation Management by Extension Agents in Oyo State. J. Agric. Ext. 2016, 20, 96–106. [Google Scholar]
- Chalemba, L. Integration of telecommunication technologies into agricultural market information systems: A comparative analysis of Uganda and Malawi. J. Agric. Inform. 2016, 7, 70–79. [Google Scholar]
- Cox, A.J.; Sseguya, H. ICT supported Extension Services in Conservation Agriculture Information Access for Small Holder Farmers in Laikipia County, Kenya. In Proceedings of the IEEE International Symposium on Technology and Society (ISTAS), Dublin, Ireland, 11–12 November 2015. [Google Scholar]
- Khan, N.A.; Gao, Q.J.; Ali, S.; Shahbaz, B.; Khan, P.; Abid, M. Analyzing ICT-enabled agricultural advisory services in Pakistan: Evidence from a marginalized region of Punjab province. Electron. Commer. Res. 2020, 22, 1107–1129. [Google Scholar] [CrossRef]
- Asif, A.S.; Uddin, M.N.; Dev, D.S.; Miah, M.A.M. Factors affecting mobile phone usage by the farmers in receiving information on vegetable cultivation in Bangladesh. J. Agric. Inform. 2017, 8, 33–43. [Google Scholar]
- Bayass, L.B.; Carlos, J.; Gardeazabal, A.; Karner, M.; Folberth, C.; Vargas, L.; Skalský, R.; Balkovič, J.; Subash, A.; Saad, M.; et al. AgroTutor: A mobile phone application supporting sustainable agricultural intensification. Sustainability 2020, 12, 9309. [Google Scholar] [CrossRef]
- Ngowi, E.; Mwakalobo, A.; Mwamfupe, D. Making ICTs work for agro-pastoral livelihood: Using the telecentre as learning tool for agro-pastoralists communities in Tanzania. J. Sustain. Dev. 2015, 8, 89. [Google Scholar]
- Oladele, O.; Gitika, M.; Ngari, F.; Shimeles, A.; Mamo, G.; Aregawi, F.; Braimoh, A.; Olorunfemi, O. Adoption of agro-weather information sources for climate smart agriculture among farmers in Embu and Ada’a districts of Kenya and Ethiopia. Inf. Dev. 2019, 35, 639–654. [Google Scholar]
- Prathap, D.P.; Ponnusamy, K.A. Mass media and symbolic adoption behavior of rural women. SIMILE Stud. Media Inf. Lit. Educ. 2007. [Google Scholar]
- Mloza Banda, C.; Chapota, R.; Chinkhokwe, P.; Kisebe, J. Creating channels, connections, and communities: Experimenting with virtual rural agricultural learning communities in Nkhotakota district, Malawi. In Proceedings of the Fifth RUFORUM Biennial Regional Conference, Cape Town, South Africa, 17 October 2016. [Google Scholar]
- Munthali, N.; Van Paassen, A.; Leeuwis, C.; Lie, R.; van Lammeren, R.; Aguilar-Gallegos, N.; Oppong-Mensah, B. Social media platforms, open communication and problem solving in the back-office of Ghanaian extension: A substantive, structural and relational analysis. Agric. Syst. 2021, 190, 103–123. [Google Scholar]
- Panda, C.K. Advances in Application of ICT in Crop Pest and Disease Management. In Natural Remedies for Pest, Disease and Weed Control; Elsevier: Amsterdam, The Netherlands, 2020; pp. 235–242. [Google Scholar]
- Aziz, M.T.; Khan, A. Utilization of ICTs for Availing Agricultural Information in District Charsadda, Khyber Pakhtunkhwa-Pakistan. Sarhad J. Agric. 2021, 37, 797–806. [Google Scholar]
- Barakabitze, A.A.; Fue, K.G.; Sanga, C.A. The use of participatory approaches in developing ICT-based systems for disseminating agricultural knowledge and information for farmers in developing countries: The case of Tanzania. Electron. J. Inf. Syst. Dev. Ctries. 2017, 78, 1–23. [Google Scholar]
- Nnenna, E.A. Access and application of information and communication technology (ICT) among farming households of south east Nigeria. Agric. Biol. J. N. Am. 2013, 4, 605–616. [Google Scholar]
- Olaniyi, O.; Adetumbi, S.; Adereti, M. Accessibility and relevance of information and communication technologies (ICTs) among cassava farmers in Nigeria. Afr. J. Agric. Res. 2013, 8, 4514–4522. [Google Scholar]
- Abila, R.; Ojwang, W.; Othina, A.; Lwenya, C.; Oketch, R.; Okeyo, R. Using ICT for fish marketing: The EFMIS model in Kenya. Food Chain 2013, 3, 48–63. [Google Scholar]
- Agbongiarhuoyi, A.E.; Thomas, K.A.; Uwagboe, E.O.; Famuyiwa, B.S. Utilization of ICTs in accessing cocoa beans market information by cross river state farmers, Scientific Papers Series. Manag. Econ. Eng. Agric. Rural Dev. 2020, 20, 45–51. [Google Scholar]
- Aker, J.C.; Ghosh, I.; Burrell, J. The promise (and pitfalls) of ICT for agriculture initiatives. Agric. Econ. 2016, 47, 35–48. [Google Scholar]
- Barau, A.A.; Afrad, S.I. An overview of social media use in agricultural extension service delivery. J. Agric. Inform. 2017, 8, 50–61. [Google Scholar]
- Enwelu, I.; Enwereuzor, S.; Asadu, A.; Nwalieji, H.; Ugwuoke, B. Access and Use of Information and Communication Technologies by Extension Workers in Anambra State Agricultural Development Programme, Nigeria. J. Agric. Ext. 2017, 21, 152–162. [Google Scholar]
- Lamberts, M.; Mayer, H.; Regalado, R.; Hunsberger, A.; Mannion, C. Developing a bilingual video/video podcast to teach clients how to apply a soil drench insecticide to control a new pest, the fig whitefly. Proc. Fla. State Hort. Soc. 2008, 121, 358–359. [Google Scholar]
- Abdullahi, K.A.; Oladele, O.I.; Yusuf, O.J. Use of Mobile Phone Applications by Farmers in North West Nigeria. J. Agric. Ext. 2019, 23, 182–195. [Google Scholar] [CrossRef]
- Narine, L.K.; Harder, A.; Roberts, T.G. Farmers’ intention to use text messaging for extension services in Trinidad. J. Agric. Educ. Ext. 2019, 25, 293–306. [Google Scholar]
- Onyancha, O.; Onyango, E. Information and Communication Technologies for Agriculture (ICT4Ag) in sub-Saharan Africa: A bibliometrics perspective based on web of science data, 1991–2018. Afr. J. Food Agric. Nutr. Dev. Pract. 2020, 20, 16343–16370. [Google Scholar]
- Abdus, S.; Khan, M.Z. Farmers’ perception analysis about the use of information and communication technologies (ICT) in agriculture extension services of Khyber Pakhtunkhwa. Sarhad J. Agric. 2020, 36, 754–760. [Google Scholar]
- Liu, M.; Min, S.; Ma, W.; Liu, T. The adoption and impact of E-commerce in rural China: Application of an endogenous switching regression model. J. Rural Stud. 2021, 83, 106–116. [Google Scholar]
- Narine, L.K.; Harder, A.; Roberts, T.G. Farmers’ Preferences for Modern Information Communication Technologies in Trinidad. J. Int. Agric. Ext. Educ. 2019, 26, 86–104. [Google Scholar]
- Alsaghan, B.; Ahmed, D.; Alhotan, A. Social network sites utilized in agricultural extension services in Kingdom of Saudi Arabia. AGROFOR 2017, 2, 19–27. [Google Scholar]
- Apio, L.; Okello, D. Promoting use of ICTs for empowerment of rural women farmers in Uganda. In Proceedings of the Fifth African Higher Education Week and RUFORUM Biennial Conference 2016, Linking Agricultural Universities with Civil Society, the Private Sector, Governments and Other Stakeholders in Support of Agricultural Development in Africa, Cape Town, South Africa, 17–21 October 2016. [Google Scholar]
- Mukherjee, P.; Chander, B.S.M. Convergence of dynamic extension approaches for promoting bajra napier hybrid among the livestock farmers: A success story in Uttar Pradesh. J. Crop Weed 2020, 16, 167–171. [Google Scholar]
- Abuta, C.M.-A.; Agumagu, A.C.; Adesope, O.M. Social Media Used by Arable Crop Farmers for Communicating Climate Change Adaptation Strategies in Imo State, Nigeria. J. Agric. Ext. 2021, 25, 73–82. [Google Scholar]
- Nuutinen, M. Online Communities of Practice Empowering Members to Realize Climate-Smart Agriculture in Developing Countries. In Climate Literacy and Innovations in Climate Change Education; Springer: Cham, Switzerland, 2018. [Google Scholar]
- Olaitan, O.K.; Jimoh, F.A.; David, O.O. Appropriateness of Information and Communication Technologies’ (ICTS) Use: A Case Study of Agricultural Information Dissemination in Ogun State, Nigeria. Int. J. Agric. Ext. 2018, 5, 93–101. [Google Scholar]
- Omulo, G.; Kumeh, E.M. Farmer-to-farmer digital network as a strategy to strengthen agricultural performance in Kenya: A research note on ‘Wefarm’ platform. Technol. Forecast. Soc. Chang. 2020, 158, 120120. [Google Scholar]
- Adetumbi, S.I.; Olaniyi, O.A.; Adewale, J. Assessment of use of selected information communication technologies (ICTs) for extension service delivery: Implication for agricultural development in Nigeria. Int. J. Agric. Manag. Dev. 2013, 3, 131–139. [Google Scholar]
- Molina-Maturano, J.; Verhulst, N.; Tur-Cardona, J.; Güereña, D.T.; Gardeazábal-Monsalve, A.; Govaerts, B.; Speelman, S. Understanding smallholder farmers’ intention to adopt agricultural apps: The role of mastery approach and innovation hubs in Mexico. Agron. Sustain. Dev. 2021, 11, 194. [Google Scholar]
- Swathi Lekshmi, P.; Chandrakandan, K.; Balasubramani, N. Mass media utilization behaviour of farm women. Agric. Sci. Dig. 2015, 36, 51–55. [Google Scholar]
- Viscusi, G.; Cabitza, F.; Maurino, A.; Stella, F. Determining factors in ICT adoption by MSME’s in agriculture clusters: An exploratory case study. In Proceedings of the IEEE 7th International Conference on Research Challenges in Information Science (RCIS), Paris, France, 29–31 May 2013. [Google Scholar]
- Zoundji, G.C.; Okry, F.; Vodouhê, S.D.; Bentley, J.W.; Witteveen, L. Commercial channels vs free distribution and screening of agricultural learning videos: A case study from Benin and Mali. Exp. Agric. 2020, 56, 544–560. [Google Scholar]
- Zoundji, G.C.; Vodouhê, S.D.; Okry, F.; Bentley, J.W.; Tossou, R.C. Beyond Striga Management: Learning Videos Enhanced Farmers‟ Knowledge on Climate-Smart Agriculture in Mali. Sustain. Agric. Res. 2018, 7, 80–91. [Google Scholar]
- Umadikar, J.; Sangeetha, U.; Kalpana, M.; Soundarapandian, M.; Prashant, S.; Jhunjhunwala, A. mASK: A Functioning Personalized ICT-based Agriculture Advisory System. In Proceedings of the 2014 IEEE Region 10 Humanitarian Technology Conference (R10 HTC), Chennai, India, 6 August 2014. [Google Scholar]
- Van Campenhout, B.; Spielman, D.J.; Lecoutere, E. Information and Communication Technologies (ICTs) to Provide Agricultural Advice to Smallholder Farmers: Experimental Evidence from Uganda; International Food Policy Research Institute: Washington, DC, USA, 2018; Volume 1778. [Google Scholar]
- Shang, L.; Heckelei, T.; Gerullis, M.K.; Börner, J.; Rasch, S. Adoption and diffusion of digital farming technologies-integrating farm-level evidence and system interaction. Agric. Syst. 2021, 190, 103074. [Google Scholar] [CrossRef]
- Subash, S.; Gupta, J.; Gereketi, P. Effectiveness of the interactive web-module on knowledge empowerment of dairy farmers. J. Anim. Health Prod. 2018, 6, 13–17. [Google Scholar] [CrossRef]
- Tegegne, A.K.; Alemu, T.A. SMS-Based Agricultural Information System for Rural Farmers in Ethiopia. J. Usability Stud. 2019, 15, 47–62. [Google Scholar]
- Temba, B.; Kajuna, F.; Pango, G.; Benard, R. Accessibility and Use of Information and Communication Tools Among Farmers for Improving Chicken Production in Morogoro Municipality, Tanzania. Livest. Res. Rural Dev. 2016, 28, 1–9. [Google Scholar]
- Thar, S.P.; Ramilan, T.; Farquharson, R.J.; Chen, D. Identifying Potential for Decision Support Tools through Farm Systems Typology Analysis Coupled with Participatory Research: A Case for Smallholder Farmers in Myanmar. Agriculture 2021, 11, 516. [Google Scholar] [CrossRef]
- Warner, L.A.; Silvert, C.J.; Benge, M. Using Adoption and Perceived Characteristics of Fertilizer Innovations to Identify Extension Educational Needs of Florida’s Residential Audiences. J. Agric. Educ. 2019, 60, 155–172. [Google Scholar] [CrossRef]
- Taragola, N.; Van Lierde, D.; Gelb, E. Information and communication technology (ICT) adoption in horticulture: Comparison of the EFITA, ISHS and ILVO questionnaires. In Proceedings of the XVI International Symposium on Horticultural Economics and Management 831, Chiang Mai, Thailand, 28 June 2009. [Google Scholar]
- Anand, P.; Kumaran, M. Information seeking behaviour of shrimp farmers and their perception towards technology dissemination through mobile phones. J. Ext. Educ. 2017, 29, 5787–5796. [Google Scholar] [CrossRef]
- George, W.; Jimmy, P.; Charles, M.; Zeyaur, K. An assessment of effectiveness of participatory video and drama in enhancing learning of “climate-smart” push-pull technology: A case study of butere and vihiga farmers in western Kenya. Int. J. Agric. Ext. 2018, 6, 109–115. [Google Scholar] [CrossRef]
- Voss, R.C.; Jansen, T.; Mané, B.; Shennan, C. Encouraging technology adoption using ICTs and farm trials in Senegal: Lessons for gender equity and scaled impact. World Dev. 2021, 146, 105620. [Google Scholar]
- Surudhi, M.; Asokhan, M.; Arunachalam, R. Utilization pattern of extension tools and methods by Agricultural Extension Agents. J. Ext. Educ. 2017, 29, 5838–5849. [Google Scholar]
- Usman, J.; Adeboye, J.; Oluyole, K.; Ajijola, S. Use of information and communication technologies by rural farmers in Oluyole local government area of Oyo State, Nigeria. J. Stored Prod. Postharvest Res. 2012, 3, 156–159. [Google Scholar]
- Joseph, M.K.; Andrew, T.N. Convergence opportunities and factors influencing the use of internet and telephony by rural women in South Africa and India towards empowerment. Presented at the Conference on Home Informatics and Telematics—ICT for the Next Billion, Chennai, India, 22–25 August 2007. [Google Scholar]
- Michels, M.; Bonke, V.; Musshoff, O. Understanding the adoption of smartphone apps in crop protection. Precis. Agric. 2020, 21, 1209–1226. [Google Scholar]
- Arinloye, D.; Linnemann, A.; Hagelaar, G.; Omta, S.; Coulibaly, O.; van Boekel, M. Willingness to pay for market information received by mobile phone among smallholder pineapple farmers in Benin. In Quality innovation in Food Chains; Bitzer, J.B.a.V., Ed.; Wageningen Academic Publishers: Wageningen, The Netherlands, 2016; pp. 75–100. [Google Scholar]
- Ifejika, P.I. Assessment of fisherfolk information seeking behaviour with mobile phone for improve extension and advisory services. J. Agric. Sci. 2016, 8, 170–178. [Google Scholar]
- Kumar, U.; Werners, S.; Sharmishtha, R.; Sadia, A.; Hoang, L.; Dilip Kumar, D.; Ludwig, F. Role of information in farmers’ response to weather and water related stresses in the Lower Bengal delta, Bangladesh. Sustainability 2020, 12, 6598. [Google Scholar] [CrossRef]
- Kumar, V.; Lehri, S.; Sharma, A.K.; Meena, P.; Kumar, A. Image based rapeseed-mustard disease expert system: An effective extension tool. Indian Res. J. Ext. Educ. 2016, 8, 10–13. [Google Scholar]
- Lamm, K.W.; Rumble, J.N.; Carter, H.S.; Lamm, A.J. Agricultural Opinion Leader Communication Channel Preferences: An Empirical Analysis of Participants of Agricultural and Natural Resource Leadership Development Programs. J. Agric. Educ. 2016, 57, 91–105. [Google Scholar]
- Moeletsi, M.; Mellaart, E.; Mpandeli, N.; Hamandawana, H. The use of rainfall forecasts as a decision guide for small-scale farming in Limpopo Province, South Africa. J. Agric. Educ. Ext. 2013, 19, 133–145. [Google Scholar]
- Ogutu, S.O.; Okello, J.J.; Otieno, D.J. Impact of information and communication technology-based market information services on smallholder farm input use and productivity: The case of Kenya. World Dev. 2014, 64, 311–321. [Google Scholar]
- Pezeshki Rad, G.; Haji Hashemi, Z.; Chizari, M. Encouraging and discouraging factors in application of information and communication technologies in agricultural extension in Isfahan Province of Iran. Int. J. Agric. Manag. Dev. Pract. 2015, 5, 221–234. [Google Scholar]
- Rahman, M.H.; Uddin, M.N.; Khan, M. Communication Behaviour of Farmers with the Agricultural Extension Agents Using Cell Phone: A Case of Bangladesh. Int. J. Agric. Sci. Res. Technol. Ext. Educ. Syst. 2018, 8, 121–127. [Google Scholar]
- Rathod, P.; Chander, M.; Rajput, D.S. Livestock Extension Service Delivery by State Department of Animal Husbandry, Karnataka: A SWOT Analysis. Vet. Pract. 2015, 16, 157–161. [Google Scholar]
- Tumbo, S.D.; Mwalukasa, N.; Fue, K.G.; Mlozi, M.R.; Haug, R.; Sanga, C. Exploring information seeking behavior of farmers’ in information related to climate change adaptation through ICT (CHAI). Int. Rev. Res. Open Distrib. Learn. 2018, 19, 3. [Google Scholar] [CrossRef]
- Umar, S.; Musa, M.W.; Olayemi, Y.T.; Suleiman, R. Awareness and use of Information and Communication Technologies among extension agents in Kaduna State of Nigeria. J. Agric. Ext. 2015, 19, 66–76. [Google Scholar]
- Rivza, B.; Vasilevska, D.; Rivza, P. Impact of digital innovation on development of agriculture in Latvia. In Proceedings of the 18th international scientific conference on engineering for rural development (ERD), Jelgava, Latvia, 22–24 May 2019. [Google Scholar]
- Taragola, N.M.; Van Lierde, D.F. Factors affecting the Internet behaviour of horticultural growers in Flanders, Belgium. Comput. Electron. Agric. 2010, 70, 369–379. [Google Scholar] [CrossRef]
- Woźniakowski, T.; Jałowiecki, P. IT systems adoption and its impact on the food and agricultural sector. Acta Sci. Polonorum. Oeconomia 2013, 12, 45–55. [Google Scholar]
- Zhang, Y. Social Enterprises in Organic Farming and Their Usage of IT. In Proceedings of the Twenty-Second Americas Conference on Information Systems, San Diego, CA, USA, 11–14 August 2016. [Google Scholar]
- Sinha, N.; Verma, P. Adoption of ICT enabled Agricultural Extension Services through Perceived Economic Wellbeing: ICT and PEWB. Int. J. Inf. Commun. Technol. Educ. 2020, 16, 30–41. [Google Scholar] [CrossRef]
- Yaseen, M.; Shiwei, X.; Wen, Y.; Luqman, M.; Saqib, R.; Ameen, M.; Hassan, S.; Butt, T.M. Farmers preferred information sources for agricultural productivity in Hebei province, China. Sarhad J. Agric. 2021, 37, 468–474. [Google Scholar] [CrossRef]
- Larsen, C.; Montagu, K.; Lucas, D.; Blaesing, D.; Boland, A.M.; Rogers, G. Evaluating the effectiveness of an integrated extension delivery approach in the Australian vegetable industry. Rural Ext. Innov. Syst. J. 2018, 14, 124–129. [Google Scholar]
- Subashini, K.P.; Fernando, S. Empowerment of farmers through ICT literacy. In Proceedings of the 2017 National Information Technology Conference (NITC), Colombo, Sri Lanka, 14–15 September 2017. [Google Scholar]
- Troxel, T. Case study: An evaluation of extension communication methods. Prof. Anim. Sci. 2010, 26, 250–255. [Google Scholar] [CrossRef]
- Sharma, N.R.; Sharma, S.; Sharma, D. Towards a mobile app technology-enabled sustainable agriculture in India. Plant Arch. 2020, 20, 3065–3071. [Google Scholar]
- Van Campenhout, B. There is an app for that? The impact of community knowledge workers in Uganda. Inf. Commun. Soc. 2017, 20, 530–550. [Google Scholar] [CrossRef]
- Wright, D.; Hammond, N.; Thomas, G.; MacLeod, B.; Abbott, L.K. The provision of pest and disease information using Information Communication Tools (ICT); an Australian example. Crop Prot. 2018, 103, 20–29. [Google Scholar] [CrossRef]
- Silvestri, S.; Richard, M.; Edward, B.; Dharmesh, G.; Dannie, R. Going digital in agriculture: How radio and SMS can scale-up smallholder participation in legume-based sustainable agricultural intensification practices and technologies in Tanzania. Int. J. Agric. Sustain. 2021, 19, 583–594. [Google Scholar] [CrossRef]
- Uduji, J.I.; Okolo-Obasi, E.N. Adoption of improved crop varieties by involving farmers in the e-wallet program in Nigeria. J. Crop Improv. 2018, 32, 717–737. [Google Scholar] [CrossRef]
- Wan, M.; Chan, F.W.; Zhang, Q.; Dodsworth, E.; Edge, P.; Low, Y.C. ICT/E-Learning Readiness Analysis for Farmers in China. In Proceedings of the World Conference on Agricultural Information and IT, IAALD AFITA WCCA 2008, Tokyo, Japan, 24–27 August 2008; Tokyo University of Agriculture: Tokyo, Japan, 2008. [Google Scholar]
- Siriwardena, B.; Dhanushka, T.; Vidanapathirana, N.; Siriwardena, B. The adoption of e-learning technology for farmers using extensions to Technology Acceptance Model (TAM). In Proceedings of the Edulearn 18: 10th International Conference on Education and New Learning Technology, Palma, Spain, 2–4 July 2018; IATED Academy: Valencia, Spain, 2018. [Google Scholar]
- Wadkar, S.K.; Singh, K.; Mohammad, A.; Malhotra, R.; Kale, R.B. Identifying the factors governing attitude towards the e-Agriservice among dairy farmers in Maharashtra, India. J. Agric. Rural. Dev. Trop. Subtrop. 2016, 117, 1–10. [Google Scholar]
- Verdouw, C.; Robbemond, R.; Ravensbergen, P.; Beulens, A.; Wolfert, J. Digital horticulture: Adoption and enhancement of information management in the Dutch horticulture. In Proceedings of the Conference Proceedings EFITA/WCCA’11 Congress, Prague, Czech Republic, 11–14 July 2011. [Google Scholar]
- Wangalachi, A.; Poland, D.; Mugo, S.; Gichuki, S.; Ouya, D.; Kimani, G.; Rabar, J. Experiences in effective communication on transgenic technology in Africa–the case of the insect resistant maize for Africa (IRMA) project. Afr. J. Biotechnol. 2011, 10, 4694–4698. [Google Scholar]
- Walker, S. Value-added weather advisories for small-scale farmers in South Africa delivered via mobile apps. Irrig. Drain. 2021, 70, 505–511. [Google Scholar] [CrossRef]
- Yamano, T.; Khanam, T.; Yaguchi, Y. Who Pays for Agricultural Information on Mobile Phones? Evidence from Three Countries in South Asia. In Proceedings of the 2017 ASAE 9th International Conference, Bangkok, Thailand, 11–13 January 2017. [Google Scholar]
- Muktar, B.G.; Man, N.; Saleh, J.M.; Daneji, M.I. Evaluation of ICTs access, use and preferences for livelihood resilience: Results from a survey of Malaysian fisher folks. J. Agric. Educ. Ext. 2018, 24, 377–388. [Google Scholar] [CrossRef]
- Pajk, T.; Van Isacker, K.; Aberšek, B.; Flogie, A. STEM Education in Eco-Farming Supported by ICT and Mobile Applications. J. Balt. Sci. Educ. 2021, 20, 277–288. [Google Scholar] [CrossRef]
- Joseph, J.; Barry, T. Confronting a global pandemic: Responses from Caribbean extension service providers. J. Int. Agric. Ext. Educ. 2020, 18, 24–33. [Google Scholar] [CrossRef]
- Chang, C.-W.; Lindner, J.R. Taiwanese Smallholder Farmers’ Perceptions and Barriers to Adopting Facebook. J. Int. Agric. Ext. Educ. 2017, 24, 36–51. [Google Scholar]
- Erjavec, K.; Janžekovič, M.; Kovač, M.; Simčič, M.; Mergeduš, A.; Terčič, D.; Klopčič, M. Changes in Use of Communication Channels by Livestock Farmers during the COVID-19 Pandemic. Sustainability 2021, 13, 10064. [Google Scholar] [CrossRef]
- Berhanu, D.; Muche, M.; Fikadu, B.; Melaku, E.; Lemma, T. Assessment of rural households’ mobile phone usage status for rural innovation services in Gomma Woreda, Southwest Ethiopia. Cogent Food Agric. 2020, 6, 1728083. [Google Scholar]
- Zhang, W.; Chintagunta, P.K.; Kalwani, M.U. Social media, influencers, and adoption of an eco-friendly product: Field experiment evidence from rural China. J. Mark. Pract. Appl. Mark. Sci. 2021, 85, 10–27. [Google Scholar]
- Llewellyn, R.S.; Brown, B. Predicting Adoption of Innovations by Farmers: What is Different in Smallholder Agriculture? Appl. Econ. Perspect. Policy 2020, 42, 100–112. [Google Scholar]
- Leta, G.; Kelboro, G.; Stellmacher, T.; Hornidge, A.-K. The Agricultural Extension System in Ethiopia: Operational Setup, Challenges and Opportunities; University of Bonn: Bonn, Germany, 2017. [Google Scholar]
- Chiumia, D.; Gondwe, T.N.; Banda, L.J.; Sivaselvam, S.N.; Ulbrich, S.E.; Chagunda, M.G. Enhancing knowledge exchange and performance recording through use of short mes-saging service in smallholder dairy farming systems in Malawi. Cogent Food Agric. 2020, 6, 1801214. [Google Scholar]
- Berhanu, K.; Poulton, C. The political economy of agricultural extension policy in Ethiopia: Economic growth and political control. Dev. Policy Rev. 2014, 32, s197–s213. [Google Scholar]
- Chau, V.N.; Holland, J.; Cassells, S.; Tuohy, M. Using GIS to map impacts upon agriculture from extreme floods in Vietnam. Appl. Geogr. 2013, 41, 65–74. [Google Scholar]
- Ferris, S.; Engoru, P.; Kaganzi, E. Making market information services work better for the poor in Uganda. Cah. Agric. 2014, 23, 336–343. [Google Scholar]
- García-Villegas, J.d.D.; García-Martínez, A.; Arriaga-Jordán, C.M.; Ruiz-Torres, M.E.; Rayas-Amor, A.A.; Dorward, P.; Martínez-García, C.G. Use of information and communication technologies in small-scale dairy production systems in central Mexico. Exp. Agric. 2020, 56, 767–779. [Google Scholar]
- Ansari, M.; Pandey, N. Assessing the potential and use of mobile phones in agriculture. Karnataka J. Agric. Sci. 2013, 26, 388–392. [Google Scholar]
- Chavula, H.K. The role of ICTs in agricultural production in Africa. J. Dev. Agric. Econ. 2014, 6, 279–289. [Google Scholar]
- Devesh, T.; Chander, M. Effectiveness of whatsapp for sharing agricultural information among farmers of Himachal Pradesh. J. Hill Agric. 2018, 9, 119–123. [Google Scholar]
- Bentley, J.W.; Van Mele, P.; Barres, N.F.; Okry, F.; Wanvoeke, J. Smallholders download and share videos from the Internet to learn about sustainable agriculture. Int. J. Agric. Sustain. 2019, 17, 92–107. [Google Scholar] [CrossRef]
- Beal, T.; Braga, F.S.; Thiam, B. Building professional capacity in the livestock industry through ITC in East Africa. Int. Food Agribus. Manag. Rev. 2014, 17, 117–123. [Google Scholar]
- Kiplang, J.; Ocholla, D.N. Diffusion of information and communication technologies in communication of agricultural information among agricultural researchers and extension workers in Kenya. Q. Bull. IAALD 2005, 50, 148–160. [Google Scholar]
- Kumbhar, M.I.; Sheikh, S.A.; Shuhabuddin, M.; Channa, M.J. Perception of the extension agents regarding information sources of sustainable agriculture in Sindh province of Pakistan. J. Basic Appl. Sci. 2012, 8, 334–338. [Google Scholar] [CrossRef]
- Audu, B.S. Implications of the Nigerian information technology policy for agricultural extension services in Nigeria. J. Emerg. Trends Eng. Appl. Sci. 2017, 8, 14–24. [Google Scholar]
- Brhane, G.; Mammo, Y.; Negusse, G. Sources of information and information seeking behavior of smallholder farmers of Tanqa Abergelle Wereda, central zone of Tigray, Ethiopia. J. Agric. Ext. Rural Dev. 2017, 9, 47–52. [Google Scholar]
- Kari, H.K. Availability and accessibility of ICT in the rural communities of Nigeria. Electron. Libr. 2007, 25, 363–372. [Google Scholar] [CrossRef]
- Burch, S. Transforming barriers into enablers of action on climate change: Insights from three municipal case studies in British Columbia, Canada. Glob. Environ. Chang. 2010, 20, 287–297. [Google Scholar]
- Godson Ibeji, C.; Chikaire, J.; Anaeto, F.; Oparaojiaku, J. Agricultural Extension and Advisory Officers? Familiarity and Competence for Application of ICTs in Agricultural Advisory Services Delivery in Imo State, Nigeria. J. Biol. Today’s World 2020, 9, 231–235. [Google Scholar]
# | Opportunities in Developing Interactive DESs in the Agricultural Sector | % (n) |
---|---|---|
1 | Best source for learning and exchanging information/ideas/experiences | 71.6 (101) |
2 | Useful for enhancing overall agricultural productivity/profit/income | 54.6 (71) |
3 | Creating networks and collaboration among farmers and different stakeholders | 51.1 (72) |
4 | Make extension service delivery more cost-effective | 40.4 (57) |
5 | Facilitate the process of farm input procurement (information, financial, fertilizers, pesticides, weather, climate, making plan, and input supplier) | 39.7 (56) |
6 | Facilitate the marketing of products (supply chains and prices) | 36.9 (52) |
7 | Improve price negotiation capacities, find alternative markets, and enable them to timely sell or buy at better prices | 33.3 (47) |
8 | Faster and easy access to information (saving time) | 33.3 (47) |
9 | Contacts between farmers and extension workers | 32.6 (46) |
10 | Saving or reducing cost for searching quality information | 35.5 (50) |
11 | Useful for adoption and diffusion of latest agricultural technologies | 24.8 (35) |
12 | Further reduce the operational costs and raise revenue from information services | 22.0 (31) |
13 | Inspiring and attracting rural youths into agribusiness activities as it makes market information accessible | 6.4 (09) |
# | Barriers of Interactive Digital Extension Services in the Agricultural Sector | % (n) |
---|---|---|
1 | Lack of two-way interaction information | 66.7 (94) |
2 | Lack of a centralized information network for the farmers and service providers | 59.6 (84) |
3 | Lack of technical know-how on the use of ICTs (users) | 58.9 (83) |
4 | Poor internet connection | 53.2 (75) |
5 | Lack of effective training on using ICTs | 52.5 (74) |
6 | Information services providing poor-quality information | 48.2 (68) |
7 | Electricity problems | 46.1 (65) |
8 | Poor extension services | 45.4 (64) |
9 | Poor infrastructural facilities | 45.4 (64) |
10 | High illiteracy level among farmers | 44.0 (62) |
11 | Untimely information inputs provision | 43.3 (61) |
12 | Lack of capacity of extension staff | 43.3 (61) |
13 | High cost for investment and use | 42.6 (60) |
14 | Lack of ICT facilities for service providers | 39.0 (55) |
15 | Lack of trust in information from social networks | 34.8 (49) |
16 | Lack of human resources to support farmers to access digital extension services | 33.3 (47) |
17 | Lack of applicable software | 32.6 (46) |
18 | Lack of understanding or low awareness of how to obtain benefit from the various ICT options | 27.0 (38) |
19 | Local language not used in social media | 26.2 (37) |
20 | Lack of interest in using ICTs | 17.0 (24) |
21 | Social and culture barriers | 14.2 (20) |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2025 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Sen, L.T.H.; Phuong, L.T.H.; Chou, P.; Dacuyan, F.B.; Nyberg, Y.; Wetterlind, J. The Opportunities and Barriers in Developing Interactive Digital Extension Services for Smallholder Farmers as a Pathway to Sustainable Agriculture: A Systematic Review. Sustainability 2025, 17, 3007. https://doi.org/10.3390/su17073007
Sen LTH, Phuong LTH, Chou P, Dacuyan FB, Nyberg Y, Wetterlind J. The Opportunities and Barriers in Developing Interactive Digital Extension Services for Smallholder Farmers as a Pathway to Sustainable Agriculture: A Systematic Review. Sustainability. 2025; 17(7):3007. https://doi.org/10.3390/su17073007
Chicago/Turabian StyleSen, Le Thi Hoa, Le Thi Hong Phuong, Phanith Chou, Flordeliz B. Dacuyan, Ylva Nyberg, and Johanna Wetterlind. 2025. "The Opportunities and Barriers in Developing Interactive Digital Extension Services for Smallholder Farmers as a Pathway to Sustainable Agriculture: A Systematic Review" Sustainability 17, no. 7: 3007. https://doi.org/10.3390/su17073007
APA StyleSen, L. T. H., Phuong, L. T. H., Chou, P., Dacuyan, F. B., Nyberg, Y., & Wetterlind, J. (2025). The Opportunities and Barriers in Developing Interactive Digital Extension Services for Smallholder Farmers as a Pathway to Sustainable Agriculture: A Systematic Review. Sustainability, 17(7), 3007. https://doi.org/10.3390/su17073007