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Biodiversity and indigenous management of the endangered non-toxic germplasm of Jatropha curcas L. in the Totonacapan (Mexico), and the implications for its conservation

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Abstract

Mexico is a center of diversity of Jatropha curcas. Worldwide there are two groups of germplasm, the toxic and the non-toxic, and most of the biofuels programs are based on toxic germplasm. In the mountains of the Totonacapan (Mexico), non-toxic genotypes have been cultivated for human food from ancient times, and now they are in serious risk of being lost because of the “biofuel program”, as well as the ethnobotanical knowledge about this germplasm in the Totonaca culture. The starting hypothesis is that this ethnobotanical knowledge must be related with a high biodiversity of the germplasm of this crop, which is necessary to preserve to avoid genetic erosion. The objective of the work was to assess the biodiversity of the native germplasm using morphological traits, and to analyse socio-economic aspects related with the ethnobotany of this germplasm, to design strategies for the conservation of the germplasm and of the culture linked to it. Other specific objective was to select morphological variables highly discriminant and easy-to-measure, for the characterization of this crop. We selected eight morphological descriptors as the most discriminant, related with the leaves: Length and width of the blade, and length of the petiole; and the fruit: weight, length, diameter, length of the peduncle, and number of fruits per bunch. On the basis of the principal component analysis and canonical discriminant analysis of the morphological data, it was possible to identify as different germplasm pools the six locations sampled, in spite of their proximity, confirming the starting hypothesis that there is high biodiversity of this crop in the region. The pools from Camocuautla and Tuzamapan were the most similar between them, with small fruits and a low number of teeth in the leaves. The germplasm form Jonotla showed also small fruits, but small leaves and a short petiole. Tetelilla’s germplasm showed a high number of teeth in the leaves, big fruits and leaves, and long petiole. The accessions from Ecatlán showed big fruits, low number of fruits per bunch and short fruit’s peduncle, with small leaves and a short petiole. The differential traits of the accession from Zozocolco were a high number of fruits per bunch and a long fruit’s peduncle. Unlike what happened with the germplasm, the socio-economic profile of the farmers did not follow a geographical pattern. Facing the scenario of establishment of the “biofuel program” in the region, we proposed an on farm conservation strategy consisting in the exclusive use of local non-toxic germplasm, which will need the involvement of all the stakeholders, and in special of the local plant nurseries. As this is difficult to achieve, the ex situ conservation has been proposed as an emergency action. Even if the genetic erosion is stopped, it is necessary to develop other companion measures to avoid the loss of the knowledge about the ancestral uses of this crop, as the farmers could prefer to sell the crop for the industry, instead of use at least a part of it for their own food.

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References

  • Achten WMJ, Maes WH, Aerts R, Verchot L, Trabucco A, Mathijs E, Singh VP, Muys B (2010a) Jatropha: from global hype to local opportunity. J Arid Environ 74(1):164–165. doi:10.1111/j.1757-1707.2010.01049

    Article  Google Scholar 

  • Achten WMJ, Nielsen LR, Aerts R, Lengkeek AG, Kjaer ED, Trabucco A, Hansen JK, Maes WH, Graudal L, Akinnifesi FK, Muys B (2010b) Towards domestication of Jatropha curcas. Biofuels 1(1):91–107. doi:10.4155/bfs.09.4

    Article  CAS  Google Scholar 

  • Arellanes Y, Casas A, Arellanes A, Vega E, Blancas J, Vallejo M, Torres I, Rangel-Landa S, Moreno AI, Solís L, Pérez-Negrón E (2013) Influence of traditional markets on plant management in the Tehuacan Valley. J Ethnobiol Ethnomed 9:38. doi:10.1186/1746-4269-9-38

    Article  PubMed  PubMed Central  Google Scholar 

  • Cano Asseleih LM (1992) El piñoncillo (Jatropha curcas L.): una especie oleaginosa con potencial de uso agroindustrial. Revista la Ciencia y el Hombre 10:131–138

    Google Scholar 

  • Christie TC (2001) Use of molecular techniqus in the distinctness, uniformity and stability (DUS) testing of Brassicas: UPOV working group on biochemical and molecular techniques. Scottish agricultural science agency scientific review 1997–2000. Scott Agri Sci Agency 6.2:72–73

    Google Scholar 

  • CONAFOR (2011) Reglas de Operación del Programa ProArbol 2012. http://dof.gob.mx/nota_detalle.php?codigo=5225984&fecha=21/12/2011. Accessed 10 November 2013

  • Dahl K, Nabhan GP (1992) Conservation of plant genetic resources. Grassroots efforts in North America. ACTS Press, Nairobi

    Google Scholar 

  • Divakara BN, Upadhyay HD, Wani SP, Gowda CLL (2010) Biology and genetic improvement of Jatropha curcas L.: a review. Appl Energy 87(3):732–742. doi:10.1016/j.apenergy.2009.07.013

    Article  CAS  Google Scholar 

  • Francis G, Edinger R, Becker K (2005) A concept for simultaneous wasteland reclamation, fuel production, and socio-economic development in degraded areas in India: need, potential and perspectives of Jatropha plantations. Nat Resour Forum 29(1):12–24

    Article  Google Scholar 

  • Francis G, Oliver J, Sujatha M (2013) Non-toxic Jatropha plants as a potential multipurpose multi-use oilseed crop. Ind Crop Prod 42:397–401. doi:10.1016/j.indcrop.2012.06.015

    Article  Google Scholar 

  • Fresnedo-Ramírez J, Orozco-Ramírez Q (2013) Diversity and distribution of genus Jatropha in Mexico. Genet Resour Crop Evol 60(3):1087–1104

    Article  Google Scholar 

  • González-Andrés F, Casquero P, San-Pedro C, Hernández-Sanchez E (2007) Diversity in white lupin (Lupinus albus L.) landraces from northwest Iberian plateau. Genet Resour Crop Evol 54:27–44

    Article  Google Scholar 

  • Govaerts R, Frodin DG, Radcliffe-Smith A, Carter S, Royal Botanic Gardens Kew (2012) World checklist and bibliography of Euphorbiaceae (with Pandaceae). World checklists and bibliographies, vol 4. Royal Botanic Gardens, Kew, Richmond, Surrey, UK

  • Guarino L (1995) Assessing the threat of genetic erosion. In: Guarino L, Rao VR, Reid R (eds) Collecting plant genetic diversity-Technical guidelines. CAB International, Wallingford, pp 67–74

    Google Scholar 

  • Gubitz GM, Mittelbach M, Trabi M (1999) Exploitation of the tropical oil seed plant Jatropha curcas L. Bioresour Technol 67(1):73–82. doi:10.1016/S0960-8524(99)00069

    Article  CAS  Google Scholar 

  • Hammer K (2004) Resolving the challenge posed by agrobiodiversity and plant genetic resources an attempt. Journal of Agriculture and Rural Development in the Tropics and Subtropics, vol 76. Kassel Univ Press, Kassel

    Google Scholar 

  • Hammer K, Knüpffer H, Xhuveli L, Perrino P (1996) Estimating genetic erosion in landraces—two case studies. Genet Resour Crop Evol 43:329–336. doi:10.1007/BF00132952

    Article  Google Scholar 

  • He W, King AJ, Khan MA, Cuevas JA, Ramiaramanana D, Graham IA (2011) Analysis of seed phorbol-ester and curcin content together with genetic diversity in multiple provenances of Jatropha curcas L. from Madagascar and Mexico. Plant Physiol Biochem 49(10):1183–1190. doi:10.1016/j.plaphy.2011.07.006

    Article  PubMed  CAS  Google Scholar 

  • Heller J (1996) Physic nut, Jatropha curcas L. Promoting the conservation and use of underutilized and neglected crops 1. International Plant Genetic Resources Institute, Rome

    Google Scholar 

  • IBM Corp. Released (2010) IBM SPSS statistics for windows, Version 19.0. Armonk, NY, USA

  • Insanu M, Dimaki C, Wilkins R, Brooker J, van der Linde P, Kayser O (2013) Rational use of Jatropha curcas L. in food and medicine: from toxicity problems to safe applications. Phytochem Rev 12(1):107–119. doi:10.1007/s11101-012-9258-0

    Article  CAS  Google Scholar 

  • Jaenicke H, Höschle-Zeledon I (eds) (2006) Strategic framework for underutilized plant species research and development. International Centre for Underutilised Crops, Colombo, Sri Lanka and Global Facilitation Unit for Underutilized Species. Rome, Italy

  • JATROPT (2011) Jatropha curcas Applied and Technological Research on Plant Traits. European Union. http://www.jatropt.eu/. Accessed 10 November 2013

  • Jones N, Miller JH (1992) Jatropha curcas: a multipurpose species for problematic sites. The World Bank, Washington DC

    Google Scholar 

  • Jongschaap REE, Montes Osorio LR, de Ruijter FJ, van Loo EN (2010) Highlights of the Jatropha curcas Evaluation Program (JEP): crop management and the fate of press (cake and other by (products with its effects on environmental sustainability. International conference on Jatropha curcas 2010. ICJC2010, 1(2 November 2010, Groningen, The Netherlands)

  • King AJ, He W, Cuevas JA, Freudenberger M, Ramiaramanana D, Graham IA (2009) Potential of Jatropha curcas as a source of renewable oil and animal feed. J Exp Bot 60:2897–2905. doi:10.1093/jxb/erp025

    Article  PubMed  CAS  Google Scholar 

  • Kumar RS, Parthiban KT, Rao MG (2009) Molecular characterization of Jatropha genetic resources through inter-simple sequence repeat (ISSR) markers. Mol Biol 36(7):1951–1956. doi:10.1007/s11033-008-9404-3

    Google Scholar 

  • Liberalino AAA, Bambirra EA, Moraessantos T, Vieira EC (1998) Jatropha curcas L. seeds chemical analysis and toxicity. Arq Biol Tecnol 31:539–550

    Google Scholar 

  • Makkar HPS, Becker K, Schmook B (1998) Edible provenances of Jatropha curcas from Quintana Roo state of Mexico and effect of roasting on antinutrient and toxic factors in seeds. Plant Foods Hum Nutr 52(1):31–36

    Article  PubMed  CAS  Google Scholar 

  • Nuñez Colín CA, Barrientos Priego AF (2006) Estimación de la variabilidad interna de muestras poblacionales, mediante análisis de componentes principales. Interciencia 31(011):802–806

    Google Scholar 

  • Núñez-Colín A, Goytia-Jiménez A (2009) Distribution and agroclimatic characterization of potential cultivation regions of physic nut in Mexico. Pesquis Agropecu Bras 44(9):1078–1085

    Article  Google Scholar 

  • Pecina-Quintero V, Luis Anaya-Lopez J, Zamarripa Colmenero A, Montes Garcia N, Nunez Colin CA, Solis Bonilla JL, Rocio Aguilar-Rangel M, Gill Langarica HR, Mejia Bustamante DJ (2011) Molecular characterisation of Jatropha curcas L. genetic resources from Chiapas, Mexico through AFLP markers. Biomass Bioenerg 35(5):1897–1905. doi:10.1016/j.biombioe.2011.01.027

    Article  CAS  Google Scholar 

  • Ram SG, Parthiban KT, Kumar RS, Thiruvengadam V, Paramathma M (2008) Genetic diversity among Jatropha species as revealed by RAPD markers. Genet Resour Crop Evol 55(6):803–809

    Article  CAS  Google Scholar 

  • Robinson S, Beckerlegge J (2008) Jatropha in Africa: economic potential. http://www.jatropha.pro/PDF%20bestanden/Jatropha_in_Africa_Economic_Potential-2008.pdf. Accessed 8 November 2013

  • Santiago LA (2008) Caracterización de piñón (Jatropha curcas L.) del estado de Chiapas por morfología y contenido de aceite de sus semillas. Dissertation, Universidad Autónoma de Chapingo

  • Skutsch M, de los Rios E, Solis S, Riegelhaupt E, Hinojosa D, Gerfert S, Gao Y, Masera O (2011) Jatropha in Mexico: environmental and social impacts of an incipient biofuel program. Ecol Soc 16(4):11. doi:10.5751/ES-04448-160411

    Google Scholar 

  • Stamp P, Messmer R, Walter A (2012) Competitive underutilized crops will depend on the state funding of breeding programmes: an opinion on the example of Europe. Plant Breed 131(4):461–464. doi:10.1111/j.1439-0523.2012.01990

    Article  Google Scholar 

  • Steinmann VW (2002) Diversidad y endemismo de la familia Euphorbiaceae en Mexico. Acta Botánica Mexicana 61:61–93

    Google Scholar 

  • Sunil N, Kumar V, Sujatha M, Rao GR, Varaprasad KS (2013) Minimal descriptors for characterization and evaluation of Jatropha curcas L. germplasm for utilization in crop improvement. Biomass Bioenerg 48:239–249

    Article  Google Scholar 

  • SWAFEA (2011) State of the art on alternative fuels in aviation. Sustainable way for alternative fuels and energy in aviation. http://large.stanford.edu/courses/2012/ph240/greenbaum1/docs/SW_WP9_D.9.1-July2011.pdf. Accessed 10 November 2013

  • Tanya P, Taeprayoon P, Hadkam Y, Srinives P (2011) Genetic diversity among Jatropha and Jatropha-related species based on ISSR markers. Plant Mol Biol Rep 29(1):252–264. doi:10.1007/s11105-010-0220-2

    Article  Google Scholar 

  • Tatikonda L, Wani SP, Kannan S, Beerelli N, Sreedevi TK, Hoisington DA, Devi P, Varshney RK (2009) AFLP-based molecular characterization of an elite germplasm collection of Jatropha curcas L., a biofuel plant. Plant Sci 176(4):505–513. doi:10.1016/j.plantsci.2009.01.006

    Article  CAS  Google Scholar 

  • Wilcoxon D, Dove B, McDavid D, Greer D (1995) Image tool version 3.00. User’s guide. University of Texas Health Science Center, San Antonio, p 62

    Google Scholar 

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Correspondence to Fernando González-Andrés.

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Vera-Castillo, Y.B., Cuevas, J.A., Valenzuela-Zapata, A.G. et al. Biodiversity and indigenous management of the endangered non-toxic germplasm of Jatropha curcas L. in the Totonacapan (Mexico), and the implications for its conservation. Genet Resour Crop Evol 61, 1263–1278 (2014). https://doi.org/10.1007/s10722-014-0109-2

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