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 Appendix 02: Post-AR5 annotated bibliography
Naidoo, G. 2016. The mangroves of South Africa: an ecophysiological review. Special Issue: Ecology and biodiversity of South African estuaries. South African Journal of Botany 107:101-113.
Osland, M.J., N. Enwright, R.H. Day, T.W. Doyle. 2013. Winter climate change and coastal wetland foundation species: Salt marshes vs. mangrove forests in the southeastern United States. Global Change Biology 19(5): 1482-1494.
Quisthoudt, K., J. Adams, A.Rajkaran, F. Dahdouh-Guebas, N. Koedam, C.F. Randin. 2013. Disentangling the effects of global climate and regional land-use change on the current and future distribution of mangroves in South Africa. Biodiversity and Conservation 22(06-Jul): 1369-1390.
2.8 Agricultural intensification: implication for land use and ecosystem services
Acín-Carrera, M., M. José Marques, P. Carral, A.M. Álvarez, C. López, B. Martín-López, J.A. González. 2013. Impacts of land-use intensity on soil organic carbon content, soil structure and water-holding capacity. Soil Use and Management 29(4): 547-556.
Davis K.F., P. D’Odorico. 2015. Livestock intensification and the influence of dietary change: A calorie-based assessment of competition for crop production. Science of the Total Environment 538: 817-823.
Giroldo, A.B., A. Scariot. 2015. Land use and management affects the demography and conservation of an intensively harvested Cerrado fruit tree species. Biological Conservation 191, pp. 150-158
Godfray, H.C.J. 2015. The debate over sustainable intensification. Food Security 7(2): 199-208.
Hatfield, J.L., R.M. Cruse, M.D. Tomer.2013. Convergence of agricultural intensification and climate change in the Midwestern United States: Implications for soil and water conservation. Marine and Freshwater Research 64(5): 423-435.
Jacobo, E., A. Rodriguez, J. Gonzalez, R. Golluscio. 2016. Effects of livestock intensification on fossil energy use efficiency and rangeland conservation in the lower basin of the Salado river, Buenos Aires province, Argentine. AgriScientia 33(1):1-14.
Kassam, A., H. Brammer 2016. Environmental implications of three modern agricultural practices: conservation Agriculture, the System of Rice Intensification and Precision Agriculture. International Journal of Environmental Studies 73(5):702-718.
Keil, A., C. Saint-Macary, M. Zeller. 2013. Intensive commercial agriculture in fragile uplands of vietnam: How to harness its poverty reduction potential while ensuring environmental sustainability? Quarterly Journal of International Agriculture 52(1): 1-25.
Nziguheba, G., S. Zingore, J. Kihara, R. Merckx, S. Njoroge, A. Otinga, E. Vandamme, B. Vanlauwe. 2016. Phosphorus in smallholder farming systems of sub-Saharan Africa: implications for agricultural intensification. Special
Issue: Integrating approches to sustainable phosphorus management in agroecosystems. Nutrient Cycling in Agroecosystems 104(3):321-340.
Ollenburger, M. H., K. Descheemaeker, T.A. Crane, O.M. Sanogo, K.E. Giller. 2016. Waking the Sleeping Giant: agricultural intensification, extensification or stagnation in Mali’s Guinea Savannah. Agricultural Systems 148:58-70.
Riwthong, S., P. Schreinemachers, C. Grovermann, T. Berger. 2015. Land use intensification, commercialization and changes in pest management of smallholder upland agriculture in Thailand. Environmental Science and Policy 45: 11-19.
Roy, E. D., P.D. Richards, L.A. Martinelli, L. D. Coletta, S.R.M. Lins, F.F. Vazquez, E. Willig, S.A. Spera, L.K. VanWey, S. Porder. 2016. The phosphorus cost of agricultural intensification in the tropics. Nature Plants 2(5):16043.
Steinmann, T., G. Welp, A. Wolf, B. Holbeck, T. Grosse-Ruschkamp, W. Amelung. 2016. Repeated monitoring of organic carbon stocks after eight years reveals carbon losses from intensively managed agricultural soils in Western Germany. Journal of Plant Nutrition and Soil Science 179(3):355-366.
Tardy, V., A. Spor, O. Mathieu, J. Lévèque, S. Terrat, P. Plassart, T. Regnier, R.D. Bardgett, W.H. van der Putten, P.P. Roggero, G. Seddaiu, S. Bagella, P. Lemanceau, L. Ranjard, P.A. Maron. 2015. Shifts in microbial diversity through land use intensity as drivers of carbon mineralization in soil. Soil Biology and Biochemistry 90: 204-213.
Thomson, B.C., E. Tisserant, P. Plassart, S. Uroz, R.I. Griffiths, S.E. Hannula, M. Buée, C. Mougel, L. Ranjard, J.A. Van Veen, F. Martin, M.J. Bailey, P. Lemanceau. 2015. Soil conditions and land use intensification effects on soil microbial communities across a range of European field sites. Soil Biology and Biochemistry 88: 403-413.
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