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Forest–grassland biodiversity hotspot under siege: land conversion counteracts nature conservation

Authors :
Heinrich Hasenack
Marion Lang
Juliana W. Gonçalves
Julia-Maria Hermann
Source :
Ecosystem Health and Sustainability. 2
Publication Year :
2016
Publisher :
American Association for the Advancement of Science (AAAS), 2016.

Abstract

We report extent and rate of land use/land cover change in a forest–grassland mosaic of Rio Grande do Sul, Brazil, during a recent period of increasing conflicts between native habitat protection and conversion. The area is part of the Atlantic rain forest biome, a Global Biodiversity Hotspot. Analyzing Landsat and Google Earth imagery, and calculating an effective conservation risk index () as ratio of converted to remnant area, we specifically compared the effectiveness of designated fully protected areas (-s) and Sustainable Use areas (-s) in preventing conversion of native forest and grassland habitats for agri- and silviculture, relative to areas outside. Grassland area decreased by 17%, corresponding to a net loss of 59,671 ha, in the entire area. Forest gains exceeded losses, and was zero inside Full Protection s. Non-native tree plantation area increased by 94% over the entire study area; cropland increased by 7%. Conversion for silviculture predominated outside the designated s and conversion for agriculture predominated inside the designated s. was generally higher for grassland than forest, and in -s, grassland was several times higher than in areas without any protection status. These developments are in stark contrast to the high standards of the Brazilian protected area system and corresponding International Union for Conservation of Nature and Natural Resources categories. They are due to protracted regularization of land conversion and establishment of designated protection areas. Furthermore, they reveal the dilemma of previously managed grasslands in strictly protected areas being eventually succeeded by forest, and the hazards of broad interpretation of the term “sustainable development”.

Details

ISSN :
23328878 and 20964129
Volume :
2
Database :
OpenAIRE
Journal :
Ecosystem Health and Sustainability
Accession number :
edsair.doi...........6f416fa1d5585fb2b0e3e11915151e17
Full Text :
https://doi.org/10.1002/ehs2.1224