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Reconciling Biodiversity Conservation, Food Production and Farmers' Demand in Agricultural Landscapes

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Journal Ecol Modell
Date 2019 Dec 5
PMID 31798202
Citations 4
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Abstract

Efficient management of agricultural management should consider multiple services and stakeholders. Yet, it remains unclear how to guarantee ecosystem services for multiple stakeholders' demands, especially considering the observed biodiversity decline following reductions in semi-natural habitat (SNH), and global change. Here, we use an ecosystem service model of intensively-managed agricultural landscapes to derive the best landscape compositions for different stakeholders' demands, and how they vary with stochasticity and the degree of pollination dependence of crops. We analyse three groups of stakeholders assumed to value different ecosystem services most - individual farmers (crop yield per area), agricultural unions (landscape production) and conservationists (biodiversity). Additionally, we consider a social average scenario that aims at maximizing multifunctionality. Trade-offs among stakeholders' demands strongly depend on the degree of pollination dependence of crops, the strength of environmental and demographic stochasticity, and the relative amount of an ecosystem service demanded by each stakeholder. Intermediate amounts of SNH deliver relatively high levels of the three services (social average). Our analysis further suggests that the current levels of SNH protection lie below these intermediate amounts of SNH in intensively-managed agricultural landscapes. Given the worldwide trends in agriculture and global change, current policies should start to consider factors such as crop type and stochasticity, as they can strongly influence best landscape compositions for different stakeholders. Our results suggest ways of managing landscapes to reconcile several actors' demands and ensure for biodiversity conservation and food production.

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References
1.
Sutter L, Albrecht M . Synergistic interactions of ecosystem services: florivorous pest control boosts crop yield increase through insect pollination. Proc Biol Sci. 2016; 283(1824). PMC: 4760166. DOI: 10.1098/rspb.2015.2529. View

2.
Aizen M, Harder L . The global stock of domesticated honey bees is growing slower than agricultural demand for pollination. Curr Biol. 2009; 19(11):915-8. DOI: 10.1016/j.cub.2009.03.071. View

3.
Gaba S, Gabriel E, Chadoeuf J, Bonneu F, Bretagnolle V . Herbicides do not ensure for higher wheat yield, but eliminate rare plant species. Sci Rep. 2016; 6:30112. PMC: 4958924. DOI: 10.1038/srep30112. View

4.
Clough Y, Barkmann J, Juhrbandt J, Kessler M, Wanger T, Anshary A . Combining high biodiversity with high yields in tropical agroforests. Proc Natl Acad Sci U S A. 2011; 108(20):8311-6. PMC: 3100989. DOI: 10.1073/pnas.1016799108. View

5.
Montoya D, Rogers L, Memmott J . Emerging perspectives in the restoration of biodiversity-based ecosystem services. Trends Ecol Evol. 2012; 27(12):666-72. DOI: 10.1016/j.tree.2012.07.004. View