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A coffee agroecosystem model: I. Growth and development of the coffee plant

Author

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  • Rodríguez, Daniel
  • Cure, José Ricardo
  • Cotes, José Miguel
  • Gutierrez, Andrew Paul
  • Cantor, Fernando

Abstract

This paper is the first of three on the coffee production system consisting of (1) the coffee plant, (2) coffee berry borer (CBB) and (3) the role of CBB parasitoids. A previous simulation model of the coffee plant was developed using data from Brazil where coffee phenology is characterized by distinct seasonal flowering (Gutierrez et al., 1998). In contrast, flowering in Colombia is continuous with low seasonality. To capture the differences in coffee phenology and growth in the two climatic regions, the Gutierrez et al. (1998) model was modified using new data from Colombia.

Suggested Citation

  • Rodríguez, Daniel & Cure, José Ricardo & Cotes, José Miguel & Gutierrez, Andrew Paul & Cantor, Fernando, 2011. "A coffee agroecosystem model: I. Growth and development of the coffee plant," Ecological Modelling, Elsevier, vol. 222(19), pages 3626-3639.
  • Handle: RePEc:eee:ecomod:v:222:y:2011:i:19:p:3626-3639
    DOI: 10.1016/j.ecolmodel.2011.08.003
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    Citations

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    Cited by:

    1. Rahn, Eric & Vaast, Philippe & Läderach, Peter & van Asten, Piet & Jassogne, Laurence & Ghazoul, Jaboury, 2018. "Exploring adaptation strategies of coffee production to climate change using a process-based model," Ecological Modelling, Elsevier, vol. 371(C), pages 76-89.
    2. Rodríguez, Daniel & Cure, José Ricardo & Gutierrez, Andrew Paul & Cotes, José Miguel, 2017. "A coffee agroecosystem model: III. Parasitoids of the coffee berry borer (Hypothenemus hampei)," Ecological Modelling, Elsevier, vol. 363(C), pages 96-110.
    3. Meylan, Louise & Merot, Anne & Gary, Christian & Rapidel, Bruno, 2013. "Combining a typology and a conceptual model of cropping system to explore the diversity of relationships between ecosystem services: The case of erosion control in coffee-based agroforestry systems in," Agricultural Systems, Elsevier, vol. 118(C), pages 52-64.
    4. Tosto, Ambra & Morales, Alejandro & Rahn, Eric & Evers, Jochem B. & Zuidema, Pieter A. & Anten, Niels P.R., 2023. "Simulating cocoa production: A review of modelling approaches and gaps," Agricultural Systems, Elsevier, vol. 206(C).
    5. Kouadio, Louis & Tixier, Philippe & Byrareddy, Vivekananda & Marcussen, Torben & Mushtaq, Shahbaz & Rapidel, Bruno & Stone, Roger, 2021. "Performance of a process-based model for predicting robusta coffee yield at the regional scale in Vietnam," Ecological Modelling, Elsevier, vol. 443(C).
    6. Rodríguez, Daniel & Cure, José Ricardo & Gutierrez, Andrew Paul & Cotes, José Miguel & Cantor, Fernando, 2013. "A coffee agroecosystem model: II. Dynamics of coffee berry borer," Ecological Modelling, Elsevier, vol. 248(C), pages 203-214.
    7. Motisi, Natacha & Bommel, Pierre & Leclerc, Grégoire & Robin, Marie-Hélène & Aubertot, Jean-Noël & Butron, Andrea Arias & Merle, Isabelle & Treminio, Edwin & Avelino, Jacques, 2022. "Improved forecasting of coffee leaf rust by qualitative modeling: Design and expert validation of the ExpeRoya model," Agricultural Systems, Elsevier, vol. 197(C).
    8. Ceballos-Sierra, Federico & Dall'Erba, Sandy, 2021. "The effect of climate variability on Colombian coffee productivity: A dynamic panel model approach," Agricultural Systems, Elsevier, vol. 190(C).

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