Identifying spatial components of ecological and evolutionary processes for regional conservation planning in the Cape Floristic Region, South Africa

被引:102
作者
Rouget, M [1 ]
Cowling, RM
Pressey, RL
Richardson, DM
机构
[1] Univ Cape Town, Inst Plant Conservat, Dept Bot, ZA-7701 Rondebosch, South Africa
[2] Univ Port Elizabeth, Terr Ecol Res Unit, ZA-6000 Port Elizabeth, South Africa
[3] Univ Port Elizabeth, So African Hotspots Programme Conservat Int, Dept Bot, ZA-6000 Port Elizabeth, South Africa
[4] New S Wales Natl Parks & Wildlife Serv, Armidale, NSW 2350, Australia
关键词
biodiversity hotspot; biodiversity; conservation; fynbos; karoo; plant and animal diversification; species persistence;
D O I
10.1046/j.1472-4642.2003.00025.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Conservation seeks ultimately to protect and maintain biodiversity indefinitely. Most biodiversity features targeted in past conservation planning have been largely aspects of ecological and biogeographical pattern rather than process. However, the persistence of biodiversity can only be ensured through consideration of the ecological and evolutionary processes that underpin biodiversity, as well as its present spatial pattern. This paper identifies spatial surrogates of ecological and evolutionary processes for regional conservation planning in one of the world's biodiversity hotspots, the Cape Floristic Region. We identified six types of spatial components (namely edaphic interfaces, upland-lowland interfaces, sand movement corridors, riverine corridors, upland-lowland gradients and macroclimatic gradients) as surrogates for key processes such as ecological and geographical diversification, and species migration. Spatial components were identified in a GIS using published data and expert knowledge. Options for achieving targets for process components have been seriously compromised by habitat transformation. Between 30 and 75% of the original extent of the spatial components currently remain functional. Options for achieving upland-lowland and macroclimatic gradients are very limited in the lowlands where most of the habitat has been transformed by agriculture. We recommend that future studies place their research on ecological and evolutionary processes in a spatially explicit framework. Areas maintaining adaptive diversification (e.g. environmental gradients, ecotones) or containing historically isolated populations should be identified and protected. The spatial dimensions of eco-logical processes such as drought and fire refugia also need to be determined and such insights incorporated in conservation planning. Finally, connectivity within these areas should be ensured to maintain species migration and gene flow.
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页码:191 / 210
页数:20
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