Carvalho, A. M. & Barata, A. M. The consumption of wild edible plants. In Wild plants, mushrooms and nuts: functional food properties and applications (eds Isabel, C. F. R. et al.) (John Wiley & Sons, New York City, 2017).
Diazgranados, M. et al. World checklist of useful plant species. Royal Botanic Gardens, Kew. (Richmond, UK, 2020).
Ulian, T. et al. Unlocking plant resources to support food security and promote sustainable agriculture. Plants People Planet 12(5), 421–445 (2020).
Google Scholar
Shaheen, S., Ahmad, M., Haroon, N. Edible wild plants: a solution to overcome food insecurity. In: Edible Wild Plants: An alternative approach to food security (eds Shaheen, S., et al.) 41–57. Springer, Cham. https://doi.org/10.1007/978-3-319-63037-3_2 (2017).
Google Scholar
Food and Agriculture Organization. World programme for the census of agriculture 2020, Vol. 1. FAO, (Rome, Italy, 2015).
Wolff, F. Legal factors driving agrobiodiversity loss. Environ. Law Netw. Int. 1, 1–11 (2004).
Padulosi, S., Heywood, V., Hunter, D. & Jarvis, A. Underutilized species and climate change: current status and outlook. In Crop Adaptation to Climate Change (eds Shyam, S. Y. et al.) 507–517 (Blackwell Publishers, 2011).
Google Scholar
Kalamandeen, M., Gloor, E. & Mitchard, E. Pervasive raise of small-scale deforestation in Amazonia. Sci. Rep. 8(1600), 1–10 (2018).
Google Scholar
Kor, L., Homewood, K., Dawson, T. P. & Diazgranados, M. Sustainability of wild plant use in the Andean community of South America. Ambio 50, 1681–1697 (2021).
Google Scholar
Nogueira, S. & Nogueira-Filho, S. Wildlife farming: an alternative to unsustainable hunting and deforestation in neotropical forests?. Biodivers. Consrv. 20, 1385–1397 (2011).
Google Scholar
Pilgrim, S. E., Cullen, L. C., Smith, D. J. & Pretty, J. Ecological knowledge is lost in wealthier communities and countries. Environ. Sci. Technol. 42(4), 1004–1009 (2008).
Google Scholar
Sánchez-Cuervo, A. M. & Mitchell-Aide, T. Consequences of the armed conflict forced human displacement, and land abandonment on forest cover change in Colombia: a multi-scaled analysis. Ecosystems 16, 1052–1070 (2013).
Google Scholar
Rodriguez-Eraso, N., Armenteras-Pascual, D. & Retana-Alumbreros, J. Land use and land cover change in the Colombian Andes: dynamics and future scenarios. J. Land Use Sci. 8(2), 154–174 (2013).
Google Scholar
Food and Agriculture Organization. in The State of the World’s biodiversity for food and agriculture. FAO Commission on Genetic Resources for Food and Agriculture Assessments (eds Bélanger, J., Pilling, D.). (FAO, Rome, Italy, 2019).
Borelli, T. et al. Local solutions for sustainable food systems: the contribution of orphan crops and wild edible species. Agronomy 10(2), 231–256 (2020).
Google Scholar
Padulosi, S., Thompson, J. & Rudebjer, P. Fighting poverty, hunger and malnutrition with neglected and underutilized species (NUS): needs, challenges and the way forward (Bioversity International, 2013).
Hunter, D. et al. The potential of neglected and underutilized species for improving diets and nutrition. Planta 250, 709–729 (2019).
Google Scholar
Brehmy, J. M., Maxted, N., Martin-Louçao, M. A. & Frod-Lloyd, B. V. New approaches for establishing conservation priorities for socio-economically important plant species. Biodivers. Conserv. 19(9), 2715–2740 (2010).
Google Scholar
N’Danikou, S., Achigan-Dako, E. G. & Wong, J. L. G. Eliciting local values of wild edible plants in Southern Benin to identify priority species for conservation. Econ. Bot. 65, 381–395 (2011).
Google Scholar
Dulloo, M. E. et al. Conserving agricultural biodiversity for use in sustainable food systems. (2017).
de Oliveira Beltrame, D. M. et al. Brazilian underutilised species to promote dietary diversity, local food procurement, and biodiversity conservation: a food composition gap analysis. Lancet Planet. Health. 2, S22. (2018).
Google Scholar
Raven, P. H. et al. The distribution of biodiversity richness in the tropics. Sci. Adv. 6(37), 1–5 (2020).
Google Scholar
Renjifo, L. M., Amaya-Villareal, A. M. & Butchart, S. H. M. Tracking extinction risk trends and patterns in a mega-diverse country: a red list index for birds in Colombia. PLoSONE 15(1), 1–19 (2020).
Google Scholar
Clerici, N., Salazar, C., Pardo-Díaz, C., Jiggins, C. D. & Linares, M. Peace in Colombia is a critical moment for neotropical connectivity and conservation: save the northern Andes-Amazon biodiversity bridge. Conserv. Lett. 12, 1–7 (2019).
Google Scholar
Hurtado-Bermudez, L. J., Vélez-Torres, I. & Méndez, F. No land for food: prevalence of food insecurity in ethnic communities enclosed by sugarcane monocrop in Colombia. Int. J. Public Health 65, 1087–1096 (2020).
Google Scholar
Boron, V., Payan, E., McMillan, D. & Tzanopulos, J. Achieving sustainable development in rural areas in Colombia: future scenarios for biodiversity conservation under land use change. Land Use Policy 59, 27–37 (2016).
Google Scholar
Grau, H. R. & Aide, M. Globalization and land-use transitions in Latin America. Ecol. Soc. 13(2), 1–16 (2008).
Google Scholar
Rivas Abadía, X., Pazos, S. C., Castillo, S. K. & Pachón, H. Indigenous foods of the indigenous and Afro-descendant communities of Colombia (International Center for Tropical Agriculture (CIAT), Cali, 2010) ((In Spanish, English summary)).
López Diago, D. & García, N. Wild edible fruits of Colombia: diversity and use prospects. Biota Colomb. 22(2), 16–55 (2021).
Google Scholar
Pieroni, A., Pawera, L. & Shah, G. M. Gastronomic ethnobiology. In Introduction to Ethnobiology (eds Albuquerque, U. P. & Alves, R. N.) 53–62 (Springer, 2016).
Google Scholar
Castañeda, R. R. Frutas silvestres de Colombia. Instituto Colombiano de Cultura Hispánica. (1991).
Medina, C. I., Martínez, E. & López, C. A. Phenological scale for the mortiño or agraz (Vaccinium meridionale Swartz) in the high Colombian Andean area. Revista Facultad Nacional de Agronomía Medellín 72(3), 8897–8908 (2019).
Google Scholar
Asprilla-Perea, J. & Díaz-Puente, J. M. Traditional use of wild edible food in rural territories within tropical forest zones: a case study from the northwestern Colombia. New Trends Issues Proc. Humanit. Soc. Sci. 5(1), 162–181 (2018).
López Estupiñán, L. Potatoes and land in Boyacá: ethnobotanical and ethnohistorical research of one of the main products of Colombian food. Boletín de Antropología Universidad de Antioquia 30(50), 170–190 (2015) ((In Spanish)).
Marín Santamaría, C.M. Potential for food use for human consumption of wild fruits in Encenillo Biological Reserve, Guasca, Cundinamarca. Thesis in Biological Sciences. Pontificia Universidad Javeriana. Bogotá, Colombia. (2010) (In Spanish).
Molina Samacá, J. R. Ancestral Food Plant Heritage: Construction of the Baseline in the Province of Sumapaz. Master thesis in Agricultural Sciences. University of Cundinamarca, Colombia (2019) (In Spanish).
Pasquini, M. W., Sánchez-Ospina, C. & Mendoza, J. S. Traditional food plant knowledge and use in three afro-descendant communities in the Colombian Caribbean Coast: Part II drivers of change. Econ. Bot. 72(3), 295–310 (2018).
Google Scholar
Villa Villegas, M. Análisis del conocimiento asociado al uso de la flora alimenticia y medicinal en la comunidad de San Francisco, Acandí (Chocó. Pontificia Universidad Javeriana, 2020).
Cook, E. M. F. Economic botany data collection standard (Royal Botanic Gardens, Kew, Richmond, 1995).
Diazgranados, M. & Kor, L. Notes on the biogeographic distribution of the useful plants of Colombia. In: Catalogue of useful plants of Colombia (eds Negrão, R. et al.) 147–161. Royal Botanic Gardens, Kew. Kew Publishing, London (in press).
Diazgranados, M. et al. Annotated checklist of useful plants of Colombia. In: Catalogue of useful plants of Colombia (eds Negrão, R. et al.) 165–473. Royal Botanic Gardens, Kew. Kew Publishing, London (in press).
R Core Team. R: A language and environment for statistical computing. R Foundation for Statistical Computing. Vienna, Austria. Available at: https://www.R-project.org/. (2021)
POWO. Plants of the World Online. Facilitated by the Royal Botanic Gardens, Kew. Retrieved on 14 April, 2021, from: http://www.plantsoftheworldonline.org/ (2021).
Missouri Botanical Gardens. Tropicos.org. Retrieved on 10 April 2021, https://tropicos.org (2021)
Wickham, H. The split-apply-combine strategy for data analysis. J. Stat. Softw. 40(1), 1–29 (2011).
Google Scholar
Wickham, H., Francois, R. Dplyr: A Grammar of Data Manipulation. R Package Version 0.4.3 (2021).
GBIF Sectretaria. GBIF backbone taxonomy. Retrieved on 22 April 2021, from: https://www.gbif.org/ (2021)
Food and Agriculture Organization. The second report on the State of The World’s plant genetic resources for food and agriculture. (FAO, Rome, Italy, 2015).
Bystriakova, N. et al. Colombia’s bioregions as a source of useful plants. PLoS One 16(8), 1–19 (2021).
Google Scholar
Olson, D. M. et al. Terrestrial ecoregions of the world: A new map of life on earth a new global map of terrestrial ecoregions provides an innovative tool for conserving biodiversity. BioScience 51(11), 933–938 (2001).
Google Scholar
Chamberlain, S., Oldoni, D., Barve, V., Desmet, P., Geffert, L., Mcglinn, D., Ram, K. Rgbif: interface to the global “Biodiversity” information facility API. R Package Version 3.6.0. (2021)
Ondo, I. et al. ShinyCCleaner: an interactive app for cleaning species occurrence records. Unpublished (2021).
Bivand, R., Keitt, T., Rowlingson, B., Pebesma, E., Summer, M., Hijmans, R., Baston, D., Rouault, E., et al. Rgdal: bindings for the “Geospatial” data abstraction library. R Package Version 1.5-23. Retrieved from: https://cran.r-project.org/web/packages/rgdal/index.html (2021)
Hijmans, R. J., van Etten, J. Raster: geographic analysis and modeling with raster data. R package version 2.0-12. Available at: http://CRAN.R-project.org/package=raster (2012)
Bivand, R.S., Pebesma, E., Gomez-Rubio, V. Applied spatial data analysis with R, Second edition. Springer, NY. Available at: https://asdar-book.org/ (2013)
Brown, J. L., Bennett, J. & French, C. M. SDMtoolbox: the next generation python-based GIS toolkit for landscape genetic, biogeographic and species distribution model analyses. PeerJ 5, e4095 (2017).
Google Scholar
DANE. Indigenous population of Colombia. In: Results of the national population and housing census 2018 (eds DANE). (Bogotá, Colombia, 2019) (In Spanish).
Minority Rights Home Minorities and indigenous peoples in Colombia. Retrieved on 20 October, 2021, from: Colombia – World Directory of Minorities & Indigenous Peoples (minorityrights.org) (2021).
Maffi, L. & Woodley, E. Biocultural diversity conservation: a global sourcebook 304 (Routledge, 2012).
Google Scholar
van Zonnevelda, M. et al. Human diets drive range expansion of megafauna-dispersed fruit species. PNAS 115(13), 3326–3331 (2018).
Google Scholar
Diazgranados, M., Mendoza, J. E., Peñuela, M., Ramírez, W. Comida, identidad, paisaje… ¿articulación o antagonismo? Universitas Humanistica pp. 119–127. ISSN-0120-4807 (1997).
Rojas, T.M., Cortés, C., Pizano, M.N., Ulian, T., Diazgranados, M. Evaluación del estado de los desarrollos bioeconómicos colombianos en plantas y hongos. Royal Botanic Gardens, Kew and Instituto de Investigaciones en Recursos Biológicos Alexander von Humboldt (2020).
Departamento Administrativo de la Función Pública. Decree 690 of 2021, Article 10. Bogotá, Colombia (2021).
Ahoyo, C. C. et al. A quantitative ethnobotanical approach toward biodiversity conservation of useful woody species in Wari-Maro forest reserve (Benin, West Africa). Environ. Dev. Sustain. https://doi.org/10.1007/s10668-017-9990-0 (2017).
Google Scholar
Suwardi, A. B., Navia, Z. I., Harmawan, T. & Syamsuardi, E. Ethnobotany and conservation of indigenous edible fruit plants in South Aceh, Indonesia. Biodiversitas 12(5), 1850–1860 (2020).
Pei, S., Alan, H. & Wang, Y. Vital roles for ethnobotany in conservation and sustainable development. Plant Divers. 42(6), 399 (2020).
Google Scholar
Bernal, M. H. Y. & Correa, Q. J. E. Erythrina edulis. In Promising plant species from countries of the Convenio Andrés Bello Vol. 8 (eds Bernal, M. H. Y. & Correa, Q. J. E.) 231–278 (Editora Guadalupe Ltda, Bogotá, 1992) ((In Spanish)).
Bernal, M.H.Y., Correa, Q.J.E. Food plants of Colombia. in Promising plant species from the Andrés Bello Convention countries (andean countries). First edition. (eds Bernal M.H.Y., Correa, Q.J.E.) Editora Guadalupe Ltda. Bogotá, D.C., Colombia. Volume I, p. 547; Volume II, 462; Volume III, 485; Volume IV, 489; Volume V, 569; Volume VI, 507; Volume VII, p. 684; Volume VIII, p. 547; Volume IX, p. 482; Volume X, 549; Volume XI, p. 516 and Volume XII, p. 621 (1989–1998) (In Spanish).
Bernal, M.H.Y., Farfán, M.M. Guide for the cultivation and use of the “chachafruto” or “balú” (Erythrina edulis Triana ex Micheli). Bogotá: Editoria Guadalupe Ltda. 50 p. (1996) (In Spanish).
Bernal, M.H.Y., Jiménez, L.C. The “Creole bean” Canavalia ensiformis (Linnaeus) De Candolle (Fabaceae-Faboideae). Bogotá: Editoria Guadalupe Ltda. 533 p. (1990) (In Spanish).
Jiménez, B.L.C., Bernal, M.H.Y. The “inchi” Caryodendron orinocense Karsten (Euphorbiaceae). Bogotá: Editora Guadalupe Ltda. p. 429 (1992) (In Spanish).
Melgarejo, L.M., Hernández, M.S., Barrera, J.A., Carrillo, M. Offers and potential of a germplasm bank of the genus Theobroma for the enrichment of Amazonian systems. Instituto de Investigaciones Científicas Sinchi. Universidad Nacional de Colombia. Bogotá, Colombia. p. 225 (2006) (In Spanish).
Bernal, R., Galeano, G., Rodríguez, A., Sarmiento, H., Gutiérrez, M. Nombres Comunes de las Plantas de Colombia. Retrieved 15 June, 2021, from: http://www.biovirtual.unal.edu.co/nombrescomunes/ (2017)
Food Plants International. Retrieved on 14 March 2021 at Articles & Books – Food Plants International (2021).
Lorenzi, H., Bacher, L., Lacerda, M. & Sartori, S. Brazilian fruits and cultivated exotics (Instituto Plantarum De Estudos Da Flora LTDA, Nova Odessa, 2000).
Martín, F.W., Campbell, C.W., Ruberté, R.M. Perennial Edible Fruits of the Tropics: An Inventory. U.S. Department of Agriculture, Agricultural Research Service. (1987)
Marrugo, S. L. Como Pepa’e Guama: Lo que no sabías acerca de la vida de los guamos (Royal Botanic Gardens Kew, Richmond, 2019).
Leon, J. Central American and West Indian Species of Inga (Leguminosae). Ann. Mo. Bot. Gard. 53(3), 265–359 (1966).
Google Scholar
Blombery, A. & Rodd, T. Palms of the world (Angus and Robertson, 1992).
Wickens, G. E. Edible nuts: non-wood forest products, handbook 5 (FAO, 1995).
Chízmar, C. Plantas comestibles de Centroamérica. Santo Domingo de Heredia, Costa Rica: Editorial INBio. p. 358 (2009)
Rodríguez, L. M. G. Growth and fruit production study of Bactris guineesis (güiscoyol) in Agroforestry Systems as development potential in the Chorotega Region (Universidad Técnica Nacional Investigación y transferencia, 2019).
Bax, V. & Francesconi, W. Conservation gaps and priorities in the Tropical Andes biodiversity hotspot: Implications for the expansion of protected areas. J. Environ. Manage. 232, 387–396 (2019).
Google Scholar
Noh, J. K. et al. Warning about conservation status of forest ecosystems in tropical Andes: National assessment based on IUCN criteria. PLoS One 15(8), e0237877 (2020).
Google Scholar
Brooks, M. T. et al. Habitat loss and extinction in the hotspots of biodiversity. Biodivers. Conserv. 16(4), 909–923 (2002).
Ocampo, J. Diversidad y distribución de las Passifloraceae en el departamento del Huila en Colombia. Acta biologica Colombiana 18(3), 511–516 (2013).
Durán-Izquierdo, M. & Olivero-Verbel, J. Vulnerability assessment of Sierra Nevada de Santa Marta Colombia World’s most irreplaceable nature reserve. Glob. Ecol. Conserv. 28, e01592 (2021).
Google Scholar
Cabrera Gaviria, L.D., Gil Pereira, L.F. Comparative analysis of the loss of natural coverage in the protected areas Nukak and Puinawai and their effects on the ecosystems present in the period between the years 2000–2020. Thesis in Environmental and Sanitary Engineering. Universidad de La Salle, Bogotá. Available at: https://ciencia.lasalle.edu.co/ing_ambiental_sanitaria/1943 (2021) (In Spanish).
Castillo, H. M. N. A story of the indigenous struggle against mining: the creation of the Yaigojé-Apaporis National Natural Park in the Colombian Amazon (Universidade Federal De Minas Gerais, 2018) ((In Portuguese)).
Walsh, J. & Sanchez, G. The spreading of illicit crops in Colombia (Instituto de Estudios para el Desarrollo y la Paz, Bogotá, 2008).
MAPS, OPS, ICBF. Encuesta Nacional de la Situacion Nutricional-ENSIN. Retrieved on 12 October, 2-21, from: http://www.ensin.gov.co/Documents/Documento-metodologico-ENSIN-2015.pdf (2015)
Correa-García, E., Vélez-Correa, J., Zapata-Caldas, E., Vélez-Torres, I. & Figueroa-Casas, A. Territorial transformations produced by the sugarcane agroindustry in the ethnic communities of López Adentro and El Tiple, Colombia. Land Use Policy 76, 847–860 (2018).
Google Scholar
Hurtado, D. & Vélez-Torres, I. Toxic dispossession: on the social impacts of the aerial use of glyphosate by the sugarcane agroindustry in Colombia. Crit. Criminol. 28, 557–576 (2020).
Google Scholar
Vélez-Torres, I., Varela-Corredor, D., Rátiva-Gaona, S., Salcedo-Fidalgo, A. Agroindustry and extractivism in the Alto Cauca: impact on the livelihood systems of Afro-descendent Farmers and Resistance (1950–2011). CS, 12: 157–188. (2013) (In Spanish, English summary).
Fernández Lucero, M. Protocol for the use of Guáimaro (Brosimum alicastrum Sw.) seeds in Montes de María and Serranía del Perijá, Colombian Caribbean. Bogotá: Instituto de Investigación de Recursos Biológicos Alexander von Humboldt (2021) (In Spanish).
Santillán-Fernández, A. et al. Brosimum alicastrum Swartz as an alternative for the productive reconversion of agrosilvopastoral areas in Campeche. Revista Mexicana de Ciencias Forestales 11(61), 51–69 (2020).
Google Scholar
Subiria-Cueto, R. et al. Brosimum alicastrum Sw. (Ramón): an alternative to improve the nutritional properties and functional potential of the wheat flour tortilla. Foods 8(12), 613 (2019).
Google Scholar
Quiñones-Hoyos, C., Rengifo-Fernández, A., Bernal-Galeano, S., Peña, R., Fernández, M., Tatiana Rojas, M., Diazgranados, M. A look at useful plants and fungi in three biodiverse areas of Colombia. Royal Botanic Gardens, Kew and Instituto de Investigaciones en Recursos Biológicos Alexander von Humboldt. Bogotá, Colombia (2021) (In Spanish)
Royal Botanic Gardens, Kew. Discovering the Guáimaro trails: promote a market for native species. Retrieved on 18 February 2022 from https://storymaps.arcgis.com/stories/f540b764fc6c47db886b38515560852f (2022)
Gottesch, B. et al. Extinction risk of Mesoamerican crop wild relatives. Plants People Planet 3, 775–795 (2021).
Google Scholar
French, B. Food plants international database of edible plants of the world, a free resource for all. Acta Hort. 1241, 1–6 (2019).
Meyers, N., Mittermeier, R., Mittermeier, C. G. & Kent, J. Biodiversity hotspot for conservation priority. Nature 403(6772), 853–858 (2000).
Google Scholar
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