The Ecosystem Functioning Dimension in Conservation: insights from remote sensing.

Autores

Cabello, J., Fernández, N., Alcaraz-Segura, D., Oyonarte, C., Pi neiro, G., Altesor, A., Delibes, M. and Paruelo, J.M.

Publicado en

Biodibersity and Conservation, v. 21:3287-3305

Año de publicación

2012

Afiliaciones

Departamento Biología Vegetal y Ecología, Centro Andaluz para la Evaluación y Seguimiento del Cambio Global, Universidad de Almería, Ctra. Sacramento s/n La Cañada de San Urbano, 04120 Almería, Spain
Department of Conservation Biology, Estación Biolo´gica de Doñana, Spanish Council for Scientific Research-CSIC, Av. Américo Vespucio s/n, 41092 Sevilla, Spain
Environmental Sciences Department, University of Virginia, 291 McCormick Road, Charlottesville, VA 22904, USA
Departamento de Botánica. Facultad de Ciencias, Campus Universitario de Fuentenueva, Universidad de Granada, 18071 Granada, Spain
Laboratorio de Análisis Regional y Teledetección, IFEVA-Facultad de Agronomía, Universidad de Buenos Aires y CONICET, Av. San Martín, 4453, 1417 Buenos Aires, Argentina
Departamento de Edafología y Química Agrícola, Centro Andaluz para la Evaluación y Seguimiento del Cambio Global, Universidad de Almería, Ctra. Sacramento s/n, La Cañada de San Urbano, 04120 Almería, Spain
Departamento de Ecología, Facultad de Ciencias, Universidad de la República, Iguá 4225, Montevideo, Uruguay Programa

Programa

CRN3

Proyecto

CRN3094

Keywords

Conservation planning, Ecosystem functioning descriptors, Ecosystem monitoring, Environmental change, Species–environment relationships, Restoration ecology, Protected areas

DOI

https://doi.org/10.1007/s10531-012-0370-7

Resumen

An important goal of conservation biology is the maintenance of ecosystem processes. Incorporating quantitative measurements of ecosystem functions into conservation practice is important given that it provides not only proxies for biodiversity patterns, but also new tools and criteria for management. In the satellite era, the translation of spectral information into ecosystem functional variables expands and complements the more traditional use of satellite imagery in conservation biology. Remote sensing scientists have generated accurate techniques to quantify ecosystem processes and properties of key importance for conservation planning such as primary production, ecosystem carbon gains, surface temperature, albedo, evapotranspiration, and precipitation use efficiency however, these techniques are still unfamiliar to conservation biologists. In this article, we identify specific fields where a remotely-sensed characterization of ecosystem functioning may aid conservation science and practice. Such fields include the management and monitoring of species and populations of conservation concern the assessment of ecosystem representativeness and singularity the use of protected areas as reference sites to assess global change effects the implementation of monitoring and warning systems to guide adaptive management the direct evaluation of supporting ecosystem services and the planning and monitoring of ecological restorations. The approaches presented here illustrate feasible ways to incorporate the ecosystem functioning dimension into conservation through the use of satellite-derived information.