An Assessment of Socioeconomic Conditions, Technology Access, Institutional Support, and Livelihood Status among Rural Farmers in Jamalpur District, Bangladesh

Authors

Muhammad Azizul Hoque

Research officer, Bangladesh Forest Research Institute, Chattogram, Bangladesh (Bangladesh)

Shishir Rasul

Scientific officer, Bangladesh Sugarcrop Research Institute, Ishurdi, Pabna, Bangladesh (Bangladesh)

Jannatul Ferdous Moonmoon

Farm manager, Bangladesh Institute of Nuclear Agriculture, Mymensingh, Bangladesh (Bangladesh)

Md. Mobinur Rahman

Scientific officer, Bangladesh Wheat and Maize Research Institute, Dinajpur, Bangladesh (Bangladesh)

Faria Rahman

Scientific officer, Bangladesh Agricultural Research Institution, Gazipur, Bangladesh (Bangladesh)

Md. Mostafijur Rahman

Scientific officer, Bangladesh Rice Research Institution, Gazipur, Bangladesh (Bangladesh)

Naima Nargis

Assistant soil scientist, Bangladesh Forest Research Institute, Chattogram, Bangladesh (Bangladesh)

Md. Yeasinul Haque Rayhan

Scientific officer, Bangladesh Agricultural Research Institution, Gazipur, Bangladesh (Bangladesh)

Shakhaowat Hossain

Scientific officer, Bangladesh Jute Research Institute, Dhaka, Bangladesh (Bangladesh)

Nazmul Alam Khan

Scientific officer, Bangladesh Institute of Nuclear Agriculture, Mymensingh, Bangladesh (Bangladesh)

Article Information

DOI: 10.47772/IJRISS.2026.100800350

Subject Category: Education

Volume/Issue: 10/8 | Page No: 5422-5433

Publication Timeline

Submitted: 2026-08-21

Accepted: 2026-08-26

Published: 2026-09-05

Abstract

Bangladesh's rural livelihoods and food security are dependent on agriculture. This study assessed Jamalpur District rural farmers' socioeconomic conditions, technology access, institutional assistance, and livelihood issues. DAE Attachment and Village Study was part of the N-32nd Foundation Training Course of the National Agriculture Training Academy. Semi-structured questionnaires, face-to-face interviews, and focus group discussions were used to collect primary data from 100 farming households, while relevant reports and publications provided secondary data. Frequencies, percentages, tables, and graphs were used to analyse the data. Most responses were male (74%), and 73% were 26-50. 82% of farmers were married, and 61% lived in 4-6-person homes. Approximately 68% of recorded agricultural land was cultivated. All respondents had modern domestic technologies, but agriculture technologies were rarely used. Most farmers (42%) earned between BDT 10,000 and 15,000 per month. With 87% of farmers in agricultural organisations and 73% using agricultural loans, institutional support was common. Extension officers, input providers, and field visits provided agricultural information. Farmers still struggled with climate change, inadequate irrigation, fragmented land ownership, low machinery, unstable markets, and a lack of quality agricultural inputs. The study emphasises farmer-centered extension services, climate-smart agriculture, access to finance and modern machinery, market connections, and women and youth involvement in agriculture.

Keywords

Agriculture Extension

Downloads

References

1. Afrad, M. S. I., Wadud, F., & Babu, S. C. (2019). Reforms in agricultural extension service system in Bangladesh. In S. C. Babu & P. K. Joshi (Eds.), Agricultural extension reforms in South Asia: Status, challenges, and policy options (pp. 13-40). Elsevier. https://doi.org/10.1016/B978-0-12-818752-4.00002-3 [Google Scholar] [Crossref]

2. Ahmad, B., Sarkar, M. A. R., Khanom, F., Lucky, R. Y., Sarker, M. R., Rabbani, M. G., Ray, S. R. R., Rahman, M. N., & Sarker, M. N. I. (2024). Experience of farmers using mobile phone for farming information flow in Boro rice production: A case of Eastern Gangetic Plain. Social Sciences & Humanities Open, 9, 100811. https://doi.org/10.1016/j.ssaho.2024.100811 [Google Scholar] [Crossref]

3. Ahsan, M. B., Leifeng, G., Safiul Azam, F. M., Xu, B., Rayhan, S. J., Kaium, A., & Wensheng, W. (2023). Barriers, challenges, and requirements for ICT usage among sub-assistant agricultural officers in Bangladesh: Toward sustainability in agriculture. Sustainability, 15(1), 782. https://doi.org/10.3390/su15010782 [Google Scholar] [Crossref]

4. Alam, M. J., Sarma, P. K., Begum, I. A., Connor, J., Crase, L., Sayem, S. M., & McKenzie, A. M. (2024). Agricultural extension service, technology adoption, and production risk nexus: Evidence from Bangladesh. Heliyon, 10(14), e34226. https://doi.org/10.1016/j.heliyon.2024.e34226 [Google Scholar] [Crossref]

5. Alkire, S., Meinzen-Dick, R., Peterman, A., Quisumbing, A. R., Seymour, G., & Vaz, A. (2013). The Women's Empowerment in Agriculture Index. World Development, 52, 71-91. https://doi.org/10.1016/j.worlddev.2013.06.007 [Google Scholar] [Crossref]

6. Anderson, J. R., & Feder, G. (2007). Agricultural extension. In R. Evenson & P. Pingali (Eds.), Handbook of agricultural economics (Vol. 3, pp. 2343-2378). Elsevier. https://doi.org/10.1016/S1574-0072(06)03044-1 [Google Scholar] [Crossref]

7. Aryal, J. P., Rahut, D. B., Maharjan, S., & Erenstein, O. (2019). Understanding factors associated with agricultural mechanization: A Bangladesh case. World Development Perspectives, 13, 1-9. https://doi.org/10.1016/j.wdp.2019.02.002 [Google Scholar] [Crossref]

8. Asif, A. S., Uddin, M. N., Dev, D. S., & Miah, M. A. M. (2017). Factors affecting mobile phone usage by the farmers in receiving information on vegetable cultivation in Bangladesh. Journal of Agricultural Informatics, 8(2). https://doi.org/10.17700/jai.2017.8.2.376 [Google Scholar] [Crossref]

9. Bangladesh Bureau of Statistics. (2023). Yearbook of agricultural statistics of Bangladesh 2023. Bangladesh Bureau of Statistics, Ministry of Planning, Government of Bangladesh. [Google Scholar] [Crossref]

10. Creswell, J. W., & Creswell, J. D. (2023). Research design: Qualitative, quantitative, and mixed methods approaches (6th ed.). SAGE Publications. [Google Scholar] [Crossref]

11. Department of Agricultural Extension. (2025). Annual report 2023-2024. Ministry of Agriculture, Government of Bangladesh. [Google Scholar] [Crossref]

12. Feder, G., Just, R. E., & Zilberman, D. (1985). Adoption of agricultural innovations in developing countries: A survey. Economic Development and Cultural Change, 33(2), 255-298. https://doi.org/10.1086/451461 [Google Scholar] [Crossref]

13. Food and Agriculture Organization. (2022). The state of food and agriculture 2022: Leveraging automation in agriculture for transforming agrifood systems. Food and Agriculture Organization of the United Nations. [Google Scholar] [Crossref]

14. Food and Agriculture Organization. (2023). The status of women in agrifood systems. Food and Agriculture Organization of the United Nations. [Google Scholar] [Crossref]

15. Intergovernmental Panel on Climate Change. (2022). Climate change 2022: Impacts, adaptation and vulnerability. Cambridge University Press. [Google Scholar] [Crossref]

16. Islam, F., Alam, G. M. M., Begum, R., Sarker, M. N. I., & Bhandari, H. (2022). Farm level adaptation to climate change: Insight from rice farmers in the coastal region of Bangladesh. Local Environment, 27(6), 671-681. https://doi.org/10.1080/13549839.2022.2068139 [Google Scholar] [Crossref]

17. Islam, M. K., & Farjana, F. (2024). Impact of climate-smart agriculture practices on multidimensional poverty among coastal farmers in Bangladesh. Communications Earth & Environment, 5, 417. https://doi.org/10.1038/s43247-024-01570-w [Google Scholar] [Crossref]

18. Islam, M. S., & Grönlund, A. (2010). An agricultural market information service (AMIS) in Bangladesh: Evaluating a mobile phone based e-service in a rural context. Information Development, 26(4), 289-302. https://doi.org/10.1177/0266666910385556 [Google Scholar] [Crossref]

19. Majumder, M. K., Rahman, M. S., Mondal, R. K., & Akter, M. S. (2024). Climate-smart agriculture and food security in climate-vulnerable coastal areas of Bangladesh. Heliyon, 10(22), e39885. https://doi.org/10.1016/j.heliyon.2024.e39885 [Google Scholar] [Crossref]

20. Medendorp, J. W., Reeves, N. P., Celi, V. G. S. y R., Harun-ar-Rashid, M., Krupnik, T. J., Lutomia, A. N., Pittendrigh, B., & Bello-Bravo, J. (2022). Large-scale rollout of extension training in Bangladesh: Challenges and opportunities for gender-inclusive participation. PLOS ONE, 17(7), e0270662. https://doi.org/10.1371/journal.pone.0270662 [Google Scholar] [Crossref]

21. Ministry of Agriculture. (2018). National agriculture policy 2018. Government of the People's Republic of Bangladesh. [Google Scholar] [Crossref]

22. Ministry of Agriculture. (2020a). National agricultural extension policy 2020. Government of the People's Republic of Bangladesh. [Google Scholar] [Crossref]

23. Ministry of Agriculture. (2020b). National agricultural mechanization policy 2020. Government of the People's Republic of Bangladesh. [Google Scholar] [Crossref]

24. Mottaleb, K. A., Krupnik, T. J., & Erenstein, O. (2016). Factors associated with small-scale agricultural machinery adoption in Bangladesh: Census findings. Journal of Rural Studies, 46, 155-168. https://doi.org/10.1016/j.jrurstud.2016.06.012 [Google Scholar] [Crossref]

25. Quisumbing, A., Meinzen-Dick, R., & Malapit, H. (2022). Women's empowerment and gender equality in South Asian agriculture: Measuring progress using the project-level Women's Empowerment in Agriculture Index (pro-WEAI) in Bangladesh and India. World Development, 151, 105396. https://doi.org/10.1016/j.worlddev.2021.105396 [Google Scholar] [Crossref]

26. Rahman, M. M., Ali, M. R., Oliver, M. M. H., Hanif, M. A., Uddin, M. Z., Tamim-Ul-Hasan, Saha, K. K., Islam, M. H., & Moniruzzaman, M. (2021). Farm mechanization in Bangladesh: A review of the status, roles, policy, and potentials. Journal of Agriculture and Food Research, 6, 100225. https://doi.org/10.1016/j.jafr.2021.100225 [Google Scholar] [Crossref]

27. Rahman, M. S., Sujan, M. H. K., Sherf-Ul-Alam, M., & Kabir, M. H. (2021). Adoption and dis-adoption of farm mechanization in Bangladesh: Case of rice-wheat thresher. Emirates Journal of Food and Agriculture, 33(12), 1000-1007. https://doi.org/10.9755/ejfa.2021.v33.i12.2794 [Google Scholar] [Crossref]

28. Seymour, G. (2017). Women's empowerment in agriculture: Implications for technical efficiency in rural Bangladesh. Agricultural Economics, 48(4), 513-522. https://doi.org/10.1111/agec.12352 [Google Scholar] [Crossref]

29. Timsina, J., Wolf, J., Guilpart, N., van Bussel, L. G. J., Grassini, P., van Wart, J., Hossain, A., Rashid, H., Islam, S., & van Ittersum, M. K. (2018). Can Bangladesh produce enough cereals to meet future demand? Agricultural Systems, 163, 36-44. https://doi.org/10.1016/j.agsy.2016.11.003 [Google Scholar] [Crossref]

30. World Bank. (2019). Bangladesh climate-smart agriculture investment plan: Investment opportunities in the agriculture sector's transition to a climate resilient growth path. World Bank. [Google Scholar] [Crossref]

31. World Bank. (2022). Bangladesh country climate and development report. World Bank. [Google Scholar] [Crossref]

Metrics

Views & Downloads

Similar Articles