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Multifunctional shade-tree management in tropical agroforestry landscapes - a review

Multifunctional shade-tree management

Datos Bibliográficos

ID23322181
AutoresTeja Tscharntke (0000-0002-4482-3178, University of Göttingen), Yann Clough (0000-0002-2901-7602, University of Göttingen), Shonil Bhagwat (0000-0002-3237-7852, University of Oxford), Shonil A Bhagwat, Damayanti Buchori (0000-0002-2843-0737, IPB University), H Faust (0000-0003-0307-6943, University of Göttingen), Dietrich Hertel (0000-0001-6793-6602, University of Göttingen), Dirk Hölscher (0000-0002-7097-3102, University of Göttingen), Jana Juhrbandt (University of Göttingen), Michael Kessler (0000-0003-4612-9937, University of Zurich), Ivette Perfecto (0000-0003-1749-7191, University of Michigan), Christoph Scherber (0000-0001-7924-8911, University of Göttingen), Götz Schroth (Universidade Federal do Oeste do Pará), Edzo Veldkamp (0000-0002-8318-8349, University of Göttingen), Thomas Cherico Wanger (0000-0002-0435-1153, The University of Adelaide)
Año2011
Volumen48
Número3
Páginas619-629
Fecha de publicación2011-06-01
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaJournal of Applied Ecology (JOURNAL)
Identificadores de la revistaISSN: 0021-8901 • E-ISSN: 1365-2664
EditorialWiley (PUBLISHER • GB)
DOI10.1111/j.1365-2664.2010.01939.x
OpenAlexW2163210582
IdiomaEN
Citas recibidas66
Referencias citadas70

1. Agricultural intensification reduces ecological resilience of land-use systems, whereas paradoxically, environmental change and climate extremes require a higher response capacity than ever. Adaptation strategies to environmental change include maintenance of shade trees in tropical agroforestry, but conversion of shaded to unshaded systems is common practice to increase short-term yield. \n \n2. In this paper, we review the short-term and long-term ecological benefits of shade trees in coffee Coffea arabica, C. canephora and cacao Theobroma cacao agroforestry and emphasize the poorly understood, multifunctional role of shade trees for farmers and conservation alike. \n \n3. Both coffee and cacao are tropical understorey plants. Shade trees in agroforestry enhance functional biodiversity, carbon sequestration, soil fertility, drought resistance as well as weed and biological pest control. However, shade is needed for young cacao trees only and is less important in \nolder cacao plantations. This changing response to shade regime with cacao plantation age often results in a transient role for shade and associated biodiversity in agroforestry. \n \n4. Abandonment of old, unshaded cacao in favour of planting young cacao in new, thinned forest sites can be named ‘short-term cacao boom-and-bust cycle’, which counteracts tropical forest conservation. In a ‘long-term cacao boom-and-bust cycle’, cacao boom can be followed by cacao bust due to unmanageable pest and pathogen levels (e.g. in Brazil and Malaysia). Higher pest densities can result from physiological stress in unshaded cacao and from the larger cacao area planted. Risk-averse farmers avoid long-termvulnerability of their agroforestry systems by keeping shade as an insurance against insect pest outbreaks, whereas yield-maximizing farmers reduce shade and aim at short-termmonetary benefits. \n \n5. Synthesis and applications . Sustainable agroforestry management needs to conserve or create a diverse layer of multi-purpose shade trees that can be pruned rather than removed when crops mature. Incentives from payment-for-ecosystem services and certification schemes encourage \nfarmers to keep high to medium shade tree cover. Reducing pesticide spraying protects functional agrobiodiversity such as antagonists of pests and diseases, pollinating midges determining cacao yields and pollinating bees enhancing coffee yield. In a landscape perspective, natural forest alongside agroforestry allows noncrop-crop spillover of a diversity of functionally important organisms. \nKnowledge transfer between farmers, agronomists and ecologists in a participatory approach helps to encourage a shade management regime that balances economic and ecological needs and provides a ‘diversified food-and-cash crop’ livelihood strategy.

Agroforestry · Biology · Geography · Tree (set theory) · Tropical forest · Tropics · African Botany and Ecology Studies · Agroforestry and silvopastoral systems · Cocoa and Sweet Potato Agronomy · Ecology · Environmental Science · Forestry · Mathematics

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