Trade off ecosystem services

Helmers, S. Martinuzzi, et al. Projected land-use change impacts on ecosystem services in the United States. Lauf, S. Haase, and B. Linakges between ecosystem services provisioning, urban growth and shrinkage—A modeling approach assessing ecosystem service trade-offs.

Ecological Indicators 73— Lee, H. A quantitative review of relationships between ecosystem services. Ecological Indicators — Lindenmayer, D. Hulvey, R. Hobbs, M. Colyvan, A. Felton, H. Possingham, W. Steffen, K. Wilson, et al. Avoiding bio-perversity from carbon sequestration solutions. Conservation Letters 5: 28— Liu, J. Dietz, S. Carpenter, M. Alberti, C. Folke, E. Moran, A. Pell, P. Deadman, et al. Complexity of coupled human and natural systems. Science — Li, Z. Ouyang, C. Tam, and X. Yang, and S. Framing ecosystem service in the telecoupled anthropocene. Frontiers in Ecology and the Environment 27— MA Millennium Ecosystem Assessment.

Ecosystems and human well-being. Washington, DC: Island Press.

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Google Scholar. Maes, J. Paracchini, G. Zulian, M. Dunbar, and R. Synergies and trade-offs between ecosystem service supply, biodiversity, and habitat conservation status in Europe. Biological Conservation 1— Marra, M. Pannell, and A. The economics of risk, uncertainty and learning in the adoption of new agricultural technologies: Where are we on the learning curve? Agricultural Systems — Trade- offs across value-domains in ecosystem services assessment.

Martinez-Harms, M. Bryan, P. Balvanera, E. Law, J. Rhodes, H. Possingham, and K. Making decisions for managing ecosystem services. Meacham, M. Queiroz, A. Miteva, D. Pattanayak, and P. Oxford Review of Economic Policy 69— Mouchet, M. Lamarque, B. Crouzat, P. Gos, C. Byczek, and S. An interdisciplinary methodological guide for quantifying associations between ecosystem services. Nelson, E. Mendoza, J. Regetz, S. Polasky, H. Tallis, D. Cameron, K. Chan, G. Daily, et al.

Modeling multiple ecosystem services, biodiversity conservation, commodity production, and tradeoffs at landscape scales. Frontiers in Ecology and the Environment 7: 4— Pearl, J. Causal inference in statistics: An overview. Statistics Surveys 3: 96— Potschin, M. Ecosystem services: Exploring a geographical perspective. Progress in Physical Geography: Earth and Environment — Raudsepp-Hearne, C. Peterson, and E. Ecosystem service bundles for analyzing tradeoffs in diverse landscapes. Rey Benayas, J. Martins, J. Nicolau, and J. Abandonment of agricultural land: An overview of drivers and consequences.

Beard, E. Bennett, G. Cumming, S. Cork, J. Agard, A. Dobson, and G. Trade-offs across space, time, and ecosystem services. Ecology and Society Rounsevell, M. Dawson, and P. A conceptual framework to assess the effects of environmental change on ecosystem services. Biodiversity and Conservation — Rubin, D. Causal inference using potential outcomes: Design, modeling, decisions.

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Journal of the American Statistical Association — Runting, R. Bryan, L. Dee, F. Maseyk, L. Mandle, P. Hamel, K. Wilson, K. Yetka, et al. Incorporating climate change into ecosystem service assessments and decisions: A review. Global Change Biology 28— Schindler, D. Whole-ecosystem experiments: Replication versus realism: the need for ecosystem-scale experiments. Ecosystems 1: — Cramer, R. Leemans, I. Prentice, M. Arnell, A. Bondeau, H.

Bugmann, et al. Ecosystem service supply and vulnerability to global change in Europe. Spake, R. Lasseur, E. Crouzat, J. Bullock, S. Lavorel, K. Parks, M. Schaafsma, E. Bennett, et al. Unpacking ecosystem service bundles: Towards predictive mapping of synergies and trade-offs between ecosystem services. Global Environmental Change 37— Stutter, M. Chardon, and B. Riparian buffer strips as a multifunctional management tool in agricultural landscapes: Introduction. Journal of Environmental Quality — Su, C. Fu, C. He, and Y. Google Scholar.

Sanabria Siles, N. Accessed: 6th June Sarkar, S. Ardron, J. Marxan Good Practices Handbook, Version 2. Pacific Marine Analysis and Research Association BirdLife Data Zone. Fjeldsa, J. Birds of the High Andes. Phillips, S. Maximum entropy modeling of species geographic distributions. Ecological Modelling 3—4 — Allouche, O. Assessing the accuracy of species distribution models: Prevalence, kappa and the true skill statistic TSS. Wilson, K. Sensitivity of conservation planning to different approaches to using predicted species distribution data.

4. Interactions among ecosystem services

Lessmann, J. Maximizing species conservation in continental Ecuador: A case of systematic conservation planning for biodiverse regions. Accessed: 25th October Hjarsen, T. Biological diversity in high altitude woodlands and plantations in the bolivian Andes: implications for development of sustainable land-use. Andersen, P. Monitoring and management of high Andean biodiversity — a study from Cochabamba , Bolivia. Marcora, P. The effect of altitude and grazing on seedling establishment of woody species in central Argentina.

Forest Ecol. Gareca, E. Regeneration patterns of Polylepis subtusalbida growing with the exotic trees Pinus radiata and Eucalyptus globulus at Parque Nacional Tunari, Bolivia. Plant Ecol.


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Bellis, L. Influences of succession and erosion on bird communities in a South American highland wooded landscape. Conserving the biological diversity of Polylepis woodlands of the highland of Peru and Bolivia. A contribution to sustainable natural resource management in the Andes. Lloyd, H. Bird community variation across Polylepis woodland fragments and matrix habitats: implications for biodiversity conservation within a high Andean landscape. Herzog, S. Seasonal variation in avian community composition in a high-Andean Polylepis Rosaceae forest fragment.

Wilson J. Soesbergen, A. Modelling multiple threats to water security in the Peruvian Amazon using the WaterWorld policy support system. Earth Syst.

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Mulligan, M. The human water quality footprint: agricultural, industrial, and urban impacts on the quality of available water globally and in the Andean region. Water Resour. Bruijnzeel, L. Hydrometeorology of tropical montane cloud forests: emerging patterns. The Andes basins: biophysical and developmental diversity in a climate of change. Water Int. WaterWorld: a self-parameterising, physically based model for application in data-poor but problem-rich environments globally.

Torres, R. Giorgis, M. Can livestock coexist with Polylepis australis forests in mountains of central Argentina? Setting thresholds for a land sharing landscape.

Valuation of Ecosystem Services: Classes of Values

Effect of South American grazing camelids on soil fertility and vegetation at the Bolivian Andean grasslands. Hofstede, R. Cierjacks, A. Effects of altitude and livestock on the regeneration of two tree line forming Polylepis species in Ecuador. Licata, J. Increased water use by ponderosa pine plantations in northwestern Patagonia, Argentina compared with native forest vegetation.

Burgman, M. Managing landscapes for conservation under uncertainty. Ecology 86 , — The relationship between biodiversity and population centres: the high Andes region as an example. Macek, P. Morphological and ecophysiological traits shaping altitudinal distribution of three Polylepis treeline species in the dry tropical Andes.

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Acta Oecol. Hensen, I. Impacts of anthropogenic activity on the vegetation of Polylepis woodlands in the region of Cochabamba, Bolivia. Ecotropica 8 , — The avifauna of the Polylepis woodlands of the Andean highlands: the efficiency of basing conservation priorities on patterns of endemism. Bird Conserv. Purcell, J. Download references. L Ledeganckstraat 32, , Gent, Belgium. You can also search for this author in PubMed Google Scholar. Hugh P. Possingham, Diederik Strubbe and Erik Matthysen supervised the analysis and reviewed the manuscript.

Reprints and Permissions. Identifying trade-offs between biodiversity conservation and ecosystem services delivery for land-use decisions. Sci Rep 10, Download citation.

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