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Ecosystem services of regulation and support in Amazonian pioneer fronts: searching for landscape drivers
Authors:Michel Grimaldi  Johan Oszwald  Sylvain Dolédec  Maria del Pilar Hurtado  Izildinha de Souza Miranda  Xavier Arnauld de Sartre  William Santos de Assis  Edna Castañeda  Thierry Desjardins  Florence Dubs  Edward Guevara  Valery Gond  Tâmara Thaiz Santana Lima  Raphaël Marichal  Fernando Michelotti  Danielle Mitja  Norberto Cornejo Noronha  Mariana Nascimento Delgado Oliveira  Bertha Ramirez  Gamaliel Rodriguez  Max Sarrazin  Mário Lopes da Silva Jr  Luiz Gonzaga Silva Costa  Simão Lindoso de Souza  Iran Veiga  Elena Velasquez  Patrick Lavelle
Institution:1. Biogeochemistry and Ecology of Continental Environments (BIOEMCO) Research Unit (UMR IRD 211), Institute of Research for Development (IRD), IRD-France-Nord Research Centre, 32 Av. Henri Varagnat, 93143, Bondy Cedex, France
2. Climate and Land Use by Remote Sensing (COSTEL) Research Unit (UMR CNRS 6554), Rennes 2 University, Place du Recteur Henri Le Moal, 35043, Rennes Cedex, France
3. UMR 5023, LEHNA, Biodiversité des Ecosystèmes Lotiques, Université Lyon 1, 69622, Villeurbanne Cedex, France
4. International Center for Tropical Agriculture (CIAT), Cali, Colombia
5. Rural Federal University of Amazonia (UFRA), 66077-530, Belém, PA, Brazil
6. Society Environment Territory (SET), UMR CNRS 5603, Pau & Pays Adour University (UPPA), Avenue du Doyen Poplawski, 64000, Pau, France
7. Federal University of Pará (UFPA), 66075-900, Belém, PA, Brazil
8. University of Amazonia, Carrera 9B No 7-56, Florencia, Caquetá, Colombia
9. Center for International Agricultural Research for Development (CIRAD), Goods and Services of Tropical Forest Ecosystems (UPR B&SEF), 34398, Montpellier, France
10. Space for Development Research Unit (ESPACE-DEV UMR), Institute of Research for Development (IRD), 34093, Montpellier, France
11. Institute of Research for Development (IRD), 97323, Cayenne, French Guiana
12. National University of Colombia, Carrera 32 Chapinero, Vía Candelaria, Palmira, Colombia
Abstract:Landscape dynamics result from forestry and farming practices, both of which are expected to have diverse impacts on ecosystem services (ES). In this study, we investigated this general statement for regulating and supporting services via an assessment of ecosystem functions: climate regulation via carbon sequestration in soil and plant biomass, water cycle and soil erosion regulation via water infiltration in soil, and support for primary production via soil chemical quality and water storage. We tested the hypothesis that patterns of land-cover composition and structure significantly alter ES metrics at two different scales. We surveyed 54 farms in two Amazonian regions of Brazil and Colombia and assessed land-cover composition and structure from remote sensing data (farm scale) from 1990 to 2007. Simple and well-established methods were used to characterize soil and vegetation from five points in each farm (plot scale). Most ES metrics were significantly correlated with land-use (plot scale) and land-cover (farm scale) classifications; however, spatial variability in inherent soil properties, alone or in interaction with land-use or land-cover changes, contributed greatly to variability in ES metrics. Carbon stock in above-ground plant biomass and water infiltration rate decreased from forest to pasture land covers, whereas soil chemical quality and plant-available water storage capacity increased. Land-cover classifications based on structure metrics explained significantly less ES metric variation than those based on composition metrics. Land-cover composition dynamics explained 45 % (P < 0.001) of ES metric variance, 15 % by itself and 30 % in interaction with inherent soil properties. This study describes how ES evolve with landscape changes, specifying the contribution of spatial variability in the physical environment and highlighting trade-offs and synergies among ES.
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