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A Social and Ecological Assessment of Tropical Land Uses at Multiple Scales: the Sustainable Amazon Network

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Specialty Biology
Date 2013 Apr 24
PMID 23610172
Citations 30
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Abstract

Science has a critical role to play in guiding more sustainable development trajectories. Here, we present the Sustainable Amazon Network (Rede Amazônia Sustentável, RAS): a multidisciplinary research initiative involving more than 30 partner organizations working to assess both social and ecological dimensions of land-use sustainability in eastern Brazilian Amazonia. The research approach adopted by RAS offers three advantages for addressing land-use sustainability problems: (i) the collection of synchronized and co-located ecological and socioeconomic data across broad gradients of past and present human use; (ii) a nested sampling design to aid comparison of ecological and socioeconomic conditions associated with different land uses across local, landscape and regional scales; and (iii) a strong engagement with a wide variety of actors and non-research institutions. Here, we elaborate on these key features, and identify the ways in which RAS can help in highlighting those problems in most urgent need of attention, and in guiding improvements in land-use sustainability in Amazonia and elsewhere in the tropics. We also discuss some of the practical lessons, limitations and realities faced during the development of the RAS initiative so far.

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References
1.
DeFries R, Herold M, Verchot L, Macedo M, Shimabukuro Y . Export-oriented deforestation in Mato Grosso: harbinger or exception for other tropical forests?. Philos Trans R Soc Lond B Biol Sci. 2013; 368(1619):20120173. PMC: 3638436. DOI: 10.1098/rstb.2012.0173. View

2.
Nepstad D, Soares-Filho B, Merry F, Lima A, Moutinho P, Carter J . Environment. The end of deforestation in the Brazilian Amazon. Science. 2009; 326(5958):1350-1. DOI: 10.1126/science.1182108. View

3.
Malhi Y, Roberts J, Betts R, Killeen T, Li W, Nobre C . Climate change, deforestation, and the fate of the Amazon. Science. 2007; 319(5860):169-72. DOI: 10.1126/science.1146961. View

4.
Steffen W, Persson A, Deutsch L, Zalasiewicz J, Williams M, Richardson K . The anthropocene: from global change to planetary stewardship. Ambio. 2012; 40(7):739-61. PMC: 3357752. DOI: 10.1007/s13280-011-0185-x. View

5.
McIntire E, Fajardo A . Beyond description: the active and effective way to infer processes from spatial patterns. Ecology. 2009; 90(1):46-56. DOI: 10.1890/07-2096.1. View