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Production viability and farmers’ willingness to adopt Jatropha curcas L. as a biofuel source in traditional agroecosystems in Totonacapan, Mexico

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  • Vera Castillo, Y.B.
  • Pritchard, H.W.
  • Frija, A.
  • Chellattan Veettil, P.
  • Cuevas Sanchez, J.A.
  • Van Damme, P.
  • Van Huylenbroeck, G.

Abstract

This paper gives an overview on the traditional Jatropha curcas L. (physic nut) production practices as a multipurpose vegetable resource in the Totonacapan, Mexico, and the social acceptability of changes involved both in its agronomic management and use, promotion by the Mexican Energy Ministry through a special program, which, in the case for J.curcas L., includes, exclusively, toxic genotypes. In this region, there is important infra-specific genetic diversity for non-toxic genotypes, which have been used by the local indigenous population for centuries, mainly for human consumption (roasted seeds). In contrast with other studies about the industrial-scale productivity of physic nut as a monoculture for biodiesel yield, this research assessed the several functions of this species within local, traditional agroecosystems and as part of the family’s diet. In order to evaluate the pertinence of its diffusion in relation with the Totonac economy, the feasibility of implementing the official program was critically assessed, by using a binary logistic mathematical model for the “farmers’ willingness to adopt it. The results show the following barriers to agricultural adoption: (1) a low financial capacity of farmers; (2) the current price instability of J. curcas seeds; (3) the Totonac familys’ need to cultivate all the plant species involved in their agroecosystems for economic and cultural reasons. Nevertheless, J. curcas remains as a very important plant resource for the local people, with several important contributions to farmers’ livelihoods, and multiple roles (economic, ecological and cultural) that add resilience to the Totonac’s traditional agroecosystems. The monoculture of J.curcas established only for biodiesel production in different regions of Mexico, has not led to a significant increase in the income of local farmers, because government policies have been ineffective in recognizing the several functions of this species in the local agroecosystems from the peasant’ perspective. This critical situation could be repeated in the Totonacapan, negatively affecting, not only the local non-toxic genotypes, but also this ancestral culture and consequently the Totonac’s economy.

Suggested Citation

  • Vera Castillo, Y.B. & Pritchard, H.W. & Frija, A. & Chellattan Veettil, P. & Cuevas Sanchez, J.A. & Van Damme, P. & Van Huylenbroeck, G., 2014. "Production viability and farmers’ willingness to adopt Jatropha curcas L. as a biofuel source in traditional agroecosystems in Totonacapan, Mexico," Agricultural Systems, Elsevier, vol. 125(C), pages 42-49.
  • Handle: RePEc:eee:agisys:v:125:y:2014:i:c:p:42-49
    DOI: 10.1016/j.agsy.2013.12.003
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    References listed on IDEAS

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    1. Feder, Gershon & Just, Richard E & Zilberman, David, 1985. "Adoption of Agricultural Innovations in Developing Countries: A Survey," Economic Development and Cultural Change, University of Chicago Press, vol. 33(2), pages 255-298, January.
    2. Charles, Michael B. & Ryan, Rachel & Ryan, Neal & Oloruntoba, Richard, 2007. "Public policy and biofuels: The way forward?," Energy Policy, Elsevier, vol. 35(11), pages 5737-5746, November.
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    1. Bijan Abadi & Taher Azizi-Khalkheili & Mohammad Reza Morshedlooc, 2023. "What factors determine the conversion of wild medicinal and aromatic resources to cultivated species? An intention and behavior analysis," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 25(8), pages 8031-8053, August.
    2. Shehu, Basiru Gwandu & Clarke, Michèle L., 2020. "Successful and sustainable crop based biodiesel programme in Nigeria through ecological optimisation and intersectoral policy realignment," Renewable and Sustainable Energy Reviews, Elsevier, vol. 134(C).

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