[
Aguirre, Z., Kvist, L.P., Sánchez, O., (2006). Bosques secos en Ecuador y su diversidad. In M. Moraes, B, Ollgaard, L.P, Kvist, F, Borchsenius, Balslev, H. (Eds.), Botánica económica de los Andes Centrales. Universidad Mayor de San Andrés., La Paz, Boliva, pp. 162–187.
]Search in Google Scholar
[
Anderson, B.J., Armsworth, P.R., Eigenbrod, F., Thomas, C.D., Gillings, S., Heinemeyer, A., Roy, D.B., Gaston, K.J., (2009). Spatial covariance between biodiversity and other ecosystem service priorities. Journal of Applied Ecology. 46, 888–896. doi: 10.1111/j.1365-2664.2009.01666.x
]Search in Google Scholar
[
Arévalo-Morocho, C., Jácome-Aguirre, G., Ortega-Andrade, S., Rosales-Enríquez, O., Rodríguez-Echeverry, J., (2023). Evaluación del cambio del paisaje boscoso y su impacto en la distribución de Dipsas elegans en el norte de Ecuador. Investigaciones Geográficas. (79), 231-250. https://doi.org/10.14198/INGEO.23541
]Search in Google Scholar
[
Bai, Y., Zhuang, C., Ouyang, Z., Zheng, H., Jiang, B., (2011). Spatial characteristics between biodiversity and ecosystem services in a human-dominated watershed. Ecological Complexity. 8(2), 177-183.
]Search in Google Scholar
[
Bunnell, F.L., Huggard, D.J., (1999). Biodiversity across spatial and temporal scales: problems and opportunities. Forest Ecology and Management. 115 (1999) 113-126.
]Search in Google Scholar
[
Chan, K.M.A., Hoshizaki, L., Klinkenberg, B., (2011). Ecosystem Services in Conservation Planning: Targeted Benefits vs. Co- Benefits or Costs?. PLoS ONE. 6, 1-14.
]Search in Google Scholar
[
Chan, K.M.A., Shaw, M.R., Cameron, D.R., Underwood, E.C., Daily, G.C., (2006). Conservation Planning for Ecosystem Services. PLoS Biology. 4(11), e379.
]Search in Google Scholar
[
Cisneros-Heredia, D.F., Almendáriz, A., Yánez-Muñoz, M., (2017). Dipsas elegans. The IUCN Red List of Threatened Species. Retrieved February 10, 2025, from e.T50951285A50951294. http://dx.doi.org/10.2305/IUCN.UK.2017-2.RLTS.T50951285A50951294.en.
]Search in Google Scholar
[
Comber, A., Brunsdon, C., Charlton, M., Dong, G., Harris, R., Lu, B., Lü, Y, Murakami, D., Nakaya, T., Wang, Y., Harris, P., (2023). A Route Map for Successful Applications of Geographically Weighted Regression. Geographical Analysis. 55, 155–178. doi: 10.1111/gean.12316
]Search in Google Scholar
[
Costanza, R., Fisher, B., Mulder, K., Liu, S., Christopher, T., (2007). Biodiversity and ecosystem services: A multi-scale empirical study of the relationship between species richness and net primary production. Ecological Economics. 61, 478–491.
]Search in Google Scholar
[
de Groot, R.S., Alkemade, R., Braat, L., Hein, L., Willemen, L., (2010). Challenges in integrating the concept of ecosystem services and values in landscape planning, management and decision making. Ecological Complexity. 7(3), 260-272.
]Search in Google Scholar
[
Díaz, S., Fargione, J., Chapin, F., Stuart, I., Tilman, D., (2006). Biodiversity Loss Threatens Human Well-Being. PLoS Biology. 4, e277.
]Search in Google Scholar
[
Díaz, S., Demissew, S., Carabias, J., Joly, C., Lonsdale, M., Ash, N., … Zlatanova, D., (2015). The IPBES conceptual framework connecting nature and people. Curr. Opin. Environ. Sustain. 14, 1-16.
]Search in Google Scholar
[
Egoh, B., Reyers, B., Rouget, M., Bode, M., Richardson, D.M., (2009). Spatial congruence between biodiversity and ecosystem services in South Africa. Biological Conservation. 142, 553-562.
]Search in Google Scholar
[
Escribano-Ávila, G., (2016). El bosque seco neotropical de la provincia Ecuatoriana: un pequeño gran desconocido. Ecosistemas. 25, 1–4.
]Search in Google Scholar
[
ESRI (Environmental Systems Research Institute)., (2016). Environmental systems. Research Institute, Inc. New York.
]Search in Google Scholar
[
FAO-UNESCO., (1971). Soil map of the world. Volume IV. Paris: UNESCO.
]Search in Google Scholar
[
Fastré, C., Possingham, H.P., Strubbe, D., Matthysen, E., (2020). Identifying trade-offs between biodiversity conservation and ecosystem services delivery for land-use decisions. Scientific Reports. 10, 7971. https://doi.org/10.1038/s41598-020-64668-z
]Search in Google Scholar
[
Fotheringham, A.S., Yang, W., Kang, W., (2017). Multiscale Geographically Weighted Regression (MGWR). Annals of the American Association of Geographers. 107, 6, 1247-1265, DOI: 10.1080/24694452.2017.1352480
]Search in Google Scholar
[
Gómez, L., Gallego, B., Naranjo, L (Eds.). (2017). Atlas socioambiental de las cuencas transfronterizas Mira y Mataje: aportes para su ordenamiento y gestión integral Colombia - Ecuador. WWF-Colombia, Cali.
]Search in Google Scholar
[
Harrison, P.A., Berry, P.M., Simpson, G., Haslett, J.R., Blicharska, M., Bucur, M., Dunford, R., Egoh, B., Garcia-Llorente, M., Geamănă, N., Geertsema, W. Lommelen, E., Meiresonne, L., Turkelboom, F., (2014). Linkages between biodiversity attributes and ecosystem services: A systematic review. Ecosystem Services. 9, 191–203. http://dx.doi.org/10.1016/j.ecoser.2014.05.006
]Search in Google Scholar
[
Hoffland, E., Kuyper, T.W., Comans, R.N.J., Creamer, R.E., (2020). Eco-functionality of organic matter in soils. Plant Soil. 455, 1–22. https://doi.org/10.1007/s11104-020-04651-9
]Search in Google Scholar
[
Instituto Nacional de Meteorología e Hidrología., (2005). Estudio hidrológico del río Mira. Estudios e Investigaciones Hidrológicas, Quito.
]Search in Google Scholar
[
Jongman, R.H.G., Mücher, C.A.,.Bunce, R.G.H., Lang, M., Sepp, K., (2019). A review of approaches for automated habitat mapping and their potential added value for biodiversity monitoring projects. Journal of Landscape Ecology. 12(3), 53-69. https://doi.org/10.2478/jlecol-2019-0015
]Search in Google Scholar
[
Karimi, A., Yazdandad, H., Fagerholm, N., (2020). Evaluating social perceptions of ecosystem services, biodiversity, and land management: Trade-offs, synergies and implications for landscape planning and management. Ecosystem Service. 45, 101188. https://doi.org/10.1016/j.ecoser.2020.101188
]Search in Google Scholar
[
IPBES., (2016). Summary for policymakers of the assessment report of the Intergovernmental science-policy Platform on Biodiversity and Ecosystem services (IPBES) on pollinators, pollination and food production. Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services, Bonn, Germany.
]Search in Google Scholar
[
Lal, R., (2015). Restoring soil quality to mitigate soil degradation. Sustainability. 7, 5875–5895.
]Search in Google Scholar
[
Lin, S., Wu, R., Yang, F., Wang, J., Wu, W., (2018). Spatial trade-offs and synergies among ecosystem services within a global biodiversity hotspot. Ecological Indicators. 84, 371–381. http://dx.doi.org/10.1016/j.ecolind.2017.09.007
]Search in Google Scholar
[
MA (Millennium Ecosystem Assessment, US)., (2005). Ecosystems and Human Well-Being: Synthesis. Island Press, Washington, DC.
]Search in Google Scholar
[
Ma, S., Qiao, Y.P., Wang, L.J., Zhang, J.C., (2021). Terrain gradient variations in ecosystem services of different vegetation types in mountainous regions: Vegetation resource conservation and sustainable development. Forest Ecology and Management. 482, 118856. https://doi.org/10.1016/j.foreco.2020.118856
]Search in Google Scholar
[
Manhaes, A.P., Mazzochini, G.G., Oliveira-Filho, A.T., Ganade, G., Carvalho, A.R., (2016). Spatial associations of ecosystem services and biodiversity as a baseline for systematic conservation planning. Diversity and Distributions. 22, 932–943. DOI: 10.1111/ddi.12459
]Search in Google Scholar
[
Mellin, C., Parrott, L., Andrefouet, S., Bradshaw, C.J.A., Macneil, M.A., Caley, M.J., (2012). Multi-scale marine biodiversity patterns inferred efficiently from habitat image processing. Ecological Applications. 22(3), 792–803.
]Search in Google Scholar
[
McGarigal, K., Cushman, S., Neel, M. y Ene, E., (2013). FRAGSTATS. Spatial pattern analysis program for categorical maps. University of Massachusetts (Landscape Ecology Program). Retrieved September 30, 2024, from http://www.umass.edu/landeco/research/fragstats/fragstats.html
]Search in Google Scholar
[
Ministerio del Ambiente del Ecuador., (2013). Sistema de clasificación de los ecosistemas del Ecuador continental. Subsecretaría de Patrimonio Natural. Ministerio del Ambiente, Quito.
]Search in Google Scholar
[
Morellia, F., Jiguetd, F., Sabatiera, R., Drossa, C., Princéa, K., Tryjanowskif, P., Tichit, M. (2017). Spatial covariance between ecosystem services and biodiversity pattern at a national scale (France). Ecological Indicators. http://dx.doi.org/10.1016/j.ecolind.2017.04.036
]Search in Google Scholar
[
Mori, A., Lertzman, K.P., Gustafsson, L., (2017). Biodiversity and ecosystem services in forest ecosystems: a research agenda for applied forest ecology. Journal of Applied Ecology. 54, 12–27. doi: 10.1111/1365-2664.12669
]Search in Google Scholar
[
NatureServe y EcoDecision, (2015). Hotspot de biodiversidad de los Andes Tropicales. Critical Ecosystem/Partnership Fund. Virginia, USA.
]Search in Google Scholar
[
Nciizah, A.D., Wakindiki, I.I.C., (2015). Physical indicators of soil erosion, aggregate stability and erodibility. Archives of Agronomy & Soil Science. 61, 827–842.
]Search in Google Scholar
[
Obalum, S.E., Chibuike, G.U., Peth, S., Ouyang, Y., (2017). Soil organic matter as sole indicator of soil degradation. Environ. Monit. Assess. 189, 176. DOI 10.1007/s10661-017-5881-y
]Search in Google Scholar
[
Onaindia, M., Fernández de Manuel, B., Madariaga, I., Rodríguez-Loinaz, G., (2013). Co-benefits and trade-offs between biodiversity, carbon storage and water flow regulation. Forest Ecology and Management. 289(1), 1-9.
]Search in Google Scholar
[
Pascual, U., Balvanera, P., Díaz, S., Pataki, G., Roth, E., Stenseke, M., … Yagi, N., (2017). Valuing nature’s contributions to people: the IPBES approach. Curr. Opin. Environ. Sustain. 26, 7-16.
]Search in Google Scholar
[
Reyes-Puig, C., Almendariz, C., Torres-Carvajal, O., (2017). Diversity, threat, and conservation of reptiles from continental Ecuador. Amphibian and Reptile Conservation. 11(2), 51-58.
]Search in Google Scholar
[
Ricketts, T.H., Keri, B., Watson, K.B., Insu Koh, I., Ellis, A.M., Nicholson, C.C., Posner, C.C., Richardson, L.L., Sonter, L.J., (2016). Disaggregating the evidence linking biodiversity and ecosystem services. Nature Communications. 7, 13106. DOI: 10.1038/ncomms13106
]Search in Google Scholar
[
Rodríguez-Echeverry, J., Echeverría, C., Oyarzún, C. y Morales, L., (2017). Spatial congruence between biodiversity and ecosystem services in an anthropic landscape in Southern Chile: basis for conservation planning. Bosque. 38, 495–507. http://doi.org/10.4067/S0717-92002017000300007.
]Search in Google Scholar
[
Rodríguez-Echeverry, J., Leiton, M., (2021). Pérdida y fragmentación de ecosistemas boscosos nativos y su influencia en la diversidad de hábitats en el hotspot Andes tropicales. Revista Mexicana de Biodiversidad. 92, e923449 https://doi.org/10.22201/ib.20078706e.2021.92.3449
]Search in Google Scholar
[
Romportl, D., Andreas, M., Vlasáková, B., (2008). monitoring of biodiversity changes in the landscape scale. Journal of Landscape Ecology. 1(1), 49-68. https://doi.org/10.2478/v10285-012-0005-4
]Search in Google Scholar
[
Secretaría Nacional de Planificación y Desarrollo., (2013). Sistema Nacional de Información. Quito, Ecuador.
]Search in Google Scholar
[
SIGTIERRAS (Sistema Nacional de Información de Tierras)., (2017). Memoria explicativa del mapa de órdenes de suelos del Ecuador. Quito, Ecuador.
]Search in Google Scholar
[
Sistema Nacional de Información., (2023). Mapa de cobertura y uso de la tierra. Retrieved October 12, 2024, from http://sni.gob.ec
]Search in Google Scholar
[
Sokol, N.W., Kuebbing, S.E., Karlsen-Ayala, E., Bradford, M.A., (2018). Evidence for the primacy of living root inputs, not root or shoot litter, in forming soil organic carbon. New Phytol. 221, 233–246. https://doi.org/10.1111/nph.15361
]Search in Google Scholar
[
Turner, W.R., Brandon, K., Brooks, T.M., Costanza, R., da Fonseca, G.A.B., Portela, R., (2007). Global Conservation of Biodiversity and Ecosystem Services. Bioscience. 57(10), 868-873.
]Search in Google Scholar
[
Turner, K.G., Odgaard, M.V., Bøcher, P.K., Dalgaard, T., Svenning, J.C., (2014). Bundling ecosystem services in Denmark: trade-offs and synergies in a cultural landscape. Landscape Urban Plann. 125, 89–104.
]Search in Google Scholar
[
Vihervaara, P., Rönkä, M., Walls, M., (2010). Trends in Ecosystem Service Research: Early Steps and Current Drivers. AMBIO. 39(4), 314-24.
]Search in Google Scholar
[
Zhang, W., Dulloo, E., Kennedy, G., Bailey, A., Sandhu, H., Nkonya, E., (2019). Biodiversity and ecosystem services, in: Campanhola, C. et al., (Eds), Sustainable food and agriculture: An integrated approach. Academic Press, p.p. 137-152. DOI: https://doi.org/10.1016/B978-0-12-812134-4.00008-X
]Search in Google Scholar