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Farmers Preference and Perception towards Cropland Agroforestry in Bangladesh

  • Chakraborty, M. (Economics Discipline, Khulna University) ;
  • Haider, M.Z. (Economics Discipline, Khulna University) ;
  • Rahaman, M.M. (Economics Discipline, Khulna University)
  • Received : 2015.04.16
  • Accepted : 2015.08.07
  • Published : 2015.11.30

Abstract

This study attempts to examine farmers' preference and perception towards cropland agroforestry (CAF) and its economic benefits in Bangladesh. It surveys 84 farmers of two sub-districts named Manirampur and Bagherpara under Jessore district of Bangladesh to address the study objectives with the help of a questionnaire during the period of June to July 2013. We follow a multistage random sampling procedure for selecting respondents of the survey. A total of 27 plant species under 19 families are identified in the surveyed crop fields, among which 11 are tree species and 1 is shrub from 8 families and 15 species are agricultural crops from 11 families. According to the survey findings, most of the farmers prefer multipurpose tree species like Swietenia macrophylla (67 percent), Phoenix sylvestris (48 percent), Mangifera indica (48 percent) and Cocos nucifera (43 percent). We also find that Curcuma longa (92 percent), Oryza spp. (56 percent), Solanum melongena (43 percent) and Amorphophallus campanulatus (33 percent) are the available agriculture crops which are grown in association with trees in the study area. The surveyed farmers report that they practice CAF to get fuel wood, fodder, juice, fruit and food for family consumption and revenue earnings. About 76 percent of the surveyed farmers endorse the existence of a positive interaction between trees and agriculture crops, while the rest 24 percent endorse the existence of a negative interaction between trees and agriculture crops. This study finds that CAF farmers on an average earn US$ 1,410 per farm per year and the yearly average revenue difference between CAF and non-cropland agroforestry (NCAF) farmers is US$ 214. Overall, CAF needs to develop through scientific intervention in the study area to conserve the biodiversity and to enhance farmers' sustainable livelihood.

Keywords

References

  1. Abedin MZ, Aktar S, Haque F, Alam S. 1987. Uses of multipurpose trees on the small farms of the low-rainfall ganges floodplain soils of Bangladesh. In: Multipurpose tree species (MPTS) for small-farm use (Withington D, MacDicken' KG, Sastry CB, Adams NR, eds). Proceeding of International Workshop in FAO and Winrock International, Pattaya, Thailand, pp 31-46.
  2. Abedin MZ, Quddus MA. 1990. Agroforestry systems in Bangladesh with particular reference to economics and tenurial issues. In: Expert Consultation on Agroforestry in the Asia-Pacific Region (Mellink W, Rao YS, MacDicken' KG, eds). Proceeding of International Workshop in FAO and Winrock International, Bangkok, Thailand, pp 13-33.
  3. Aktar MS, Haque F. 1986. Analytical framework for understanding rainfed agroforestry system. Paper Presented at the Workshop on Social Forestry in Bangladesh. Organized by Bangladesh Centre for Advanced Studies (BCAS) and University of California, September 12-14, 1986, Dhaka, Bangladesh.
  4. Aladi SF, John OO. 2014. Farmers perception of opportunities preferences and obstacles of growing multipurpose trees on farmland in Kogi State. J Eur Sci 10: 615.
  5. Banglapedia. 2014. National encyclopedia of Bangladesh, Dhaka: Asiatic Society of Bangladesh. http://banglapedia.org. Accessed 3 Jan 2014.
  6. BARC. 1993. Agroforestry training course module for Bangladesh. Proceeding of the workshop held at the Bangladesh Agricultural Research Council (BARC), Dhaka, February 27 to 4 March 1993. BRAC-Winrock International Agroforestry and Participatory Research and Training support Program, Dhaka, Bangladesh. pp 30-48.
  7. BARC. 2012. Fertilizer Recommendation Guide. Bangladesh Agricultural Research Council (BARC), Dhaka, Bangladesh, pp 274.
  8. BBS. 2011. Statistical year book of Bangladesh 2011. Bangladesh Bureau of Statistics (BBS), Statistics Division, Ministry of Planning, the Government of the Peoples Republic of Bangladesh, Dhaka, Bangladesh.
  9. Bhuiyan AA. 1994. Forest land agroforestry, the north Bengal experience of Bangladesh. Working Paper, Bangladesh Agricultural Research Council (BARC), Dhaka, Bangladesh.
  10. Chakraborty M, Haider MZ, Rahaman MM. 2015. Socio-economic impact of cropland agroforestry: evidence from jessore district of Bangladesh. J Res Agri For 2: 11-20.
  11. FAO. 2004. Community Forestry for Poverty Reduction in Bangladesh. Proceeding of the Regional Workshop on Forests for Poverty Reduction: Can Community Forestry Make Money? Chinese Academy of Forestry, Beijing, China.
  12. FD. 1981. Annual progress report of forest administration in Bangladesh. Forest Department (FD), Ministry of Environment and Forest, Dhaka, Bangladesh.
  13. Hasan MK, Satter MA, Asaduzzaman SM, Hussain MA, Haque MF. 1997. Agroforestry systems in the crop field and homestead at bagherpara FSR site jessore. Proceeding of the National Workshop on Agroforestry Research, Dhaka, Bangladesh, pp 55-62.
  14. Hasanuzzaman M, Mahmood H, Saroar M. 2014a. Floristic Composition and Management of Cropland agroforest in Southwestern Bangladesh. J For Res 25: 597-604. https://doi.org/10.1007/s11676-014-0451-4
  15. Hasanuzzaman M, Mahmood H, Saroar M. 2014b. Diversity and preference of agricultural crops in the cropland agroforests of Southwestern Bangladesh. Intl J Agri Crop Sci 7: 364-372.
  16. Hocking D, Islam MK. 1994. Trees in Bangladesh paddy fields and homesteads: participatory action research towards a model design. J Agrofor Syst 25: 193-216. https://doi.org/10.1007/BF00707460
  17. Hossain MA, Alam MA, Rahman MM, Rahaman MA, Nobi MN. 2005. Financial Variability of shifting cultivation versus agroforestry project: a case study in chittagong hill tracts. Int J Agri Biol 1: 29-34.
  18. Hossain MK. 1999. Shade effect on the yield and quality of pineapple in a Jackfruit-Pineapple Agroforestry System. MS thesis. Department of Agroforestry and Environment, Sheik Mujibur Rahman Agricultural University, Gazipur, Bangladesh, pp 57.
  19. Islam KK, Sato N. 2010. Constraints of participatory agroforestry program to poverty reduction: the case of the Sal forests, Bangladesh. Am Eur J Agri Environ Sci 9: 427-435.
  20. Islam MW. 2013. Comparative Financial Analysis of Agroforestry Land Uses: Cropland Agroforestry, Homestead Agroforestry and Annual Cropping in Rajshahi District. Lambert Academic Publishing, Germany.
  21. Jacalne DV. 1984. Report on Agroforestry. Community Forestry Project, Bogra, Bangladesh.
  22. Karim AB, Savill PS. 1991. Effect of spacing on growth and biomass yield production of Gliricidia sepium (Jack) Walp in an alley cropping system in Sierra Leone. Agroforestry Systems 16: 213-222. https://doi.org/10.1007/BF00119318
  23. Kibria MG, Anik SI. 2010. Homestead plant species diversity and its contribution to the household economy: a case study from northern part of Bangladesh. J For Sci 26: 9-15.
  24. Lundgren BO, Raintree JB. 1983. Sustained agroforestry. In: Agricultural Research for Development: Potentials and Challenges in Asia (Nestel B, ed). ISNAR, The Hague, The Netherlands, pp 37-49.
  25. Millat-e-Mustafa M. 1997. Tropical Homegardens: An overview. In: Agroforestry: Bangladesh perspective (Alam MK, Ahmed FU, Amin SM, eds). APAN/NAWG/BARC, Dhaka, Bangladesh, pp 18-33.
  26. Quddus MA. 2001. The cropland agroforestry experience of the village and farm forestry project in northwest Bangladesh. In: Development of agroforestry research in Bangladesh (Haq MF, Hasan MK, Asaduzzaman SM, Alim MY, eds). Proceeding of National Workshop on Agroforestry Research and Development in Bangladesh, Gazipur, Bangladesh, pp 229-239.
  27. Rahman M, Alam J. 2007. Composition and benefit of cropland agroforestry practices practised in Rajshahi district. J Agrofor Environ 1: 149-153.
  28. Rahman SA, Frhana KM, Rahman, AHMM, Imtiaj A. 2007. An economic evaluation of the multistrata agroforestry system in northern Bangladesh. Am Eur J Agri Environ Sci 2: 655-661.
  29. Rahman SA, Groot WD, Snelder DJ. 2008. Exploring the Agroforestry adoption gap: financial and socio-economics of litchi-based agroforestry by smallholders in Rajshahi (Bangladesh). In: Smallholder tree growing for rural development and environmental services: lessons from Asia (Snelder DJ, Lasco RD, eds). Springer, Netherlands, pp 227-244.
  30. Rahman SA. 2011. Cost benefit and livelihood impacts of agroforestry in Bangladesh. Lambert Academic Publishing, Saarbrucken, Germany, pp 172.
  31. Rahman SA, Paras FD, Khan SR, Imtiaj A, Farhana KM, Toy MM, Akhand MB, Sunderland T. 2011. Initiatives of tropical agroforestry to sustainable agriculture: a case study of capasia village, northern Bangladesh. J of Hortic and For 3: 115-121.
  32. Singh MP, Tewari DN. 1996. Agroforestry and wastelands. Ist ed., Anmol publications, ISBN 81-7488-343-6, New Delhi, India, pp 41-60.
  33. SRDI. 1977. Annual report. Soil Research and Development Institute (SRDI). Ministry of Agriculture, Dhaka, Bangladesh.
  34. Tejwani KG, Lai CK. 1992. Asia-Pacific agroforestry profiles. Agroforestry systems research and development in the Asia and Pacific Region, Asia and Pacific Agroforestry Network (APAN) Field Document No.1, Bogor, Indonesia.
  35. Uddin MN, Miah MMU, Rahman MS, Amin MHA, Rahman MS. 2010. Performance of Indian spinach in litchi based Agroforestry system. J Agrofor Environ 4: 97-100.
  36. Yasmin R, Wadud MA, Mandol MMA, Sharif MO. 2010. Tree diversity in the homestead and cropland areas of Madhupur upazila under Tangail district. J Agrofor Environ 4: 89-92.
  37. Zeleke AW. 2009. Status of traditional Agroforestry and Its future potential development as buffer zone agroforestry for the natural forest conservation in burkitu peasant association, Oromia, Ethiopia. Unpublished MSc thesis. Hawassa Unversity, Wondogenet College of Forestry and Natural Resource, Wondo Genet, Ethiopia.