Part 1 North America
1.The Decision Support System for Agrotechnology Transfer (DSSAT) crop modeling ecosystem: evolution and advances: Kenneth J. Boote, Gerrit Hoogenboom, Cheryl H. Porter, Willingthon Pavan and Vakhtang Shelia, University of Florida, USA; et al.
2.The Crop, Land, and Soil Simulation (CLASSIM) group of models: D.H. Fleisher, D.J. Timlin, S. Li, J. Barnaby, S. Yesilkoy, E. Han and V.R. Reddy, USDA-ARS, USA et al.
3.The Cycles Agroecosystem Model: Armen R. Kemanian, Yuning Shi, Charlie M. White, Felipe Montes, Rachel K. N. Rozum, Amanda R. Burton and Ele Saltmarsh, The Pennsylvania State University, USA; and Claudio O. Stockle, Washington State University, USA
4.Crop modeling with simple simulation models (SSM): Afshin Soltani, Gorgan University of Agricultural Sciences and Natural Resources, Iran; and Thomas R. Sinclair, North Carolina State University, USA
5.The Systems Approach to Land Use Sustainability (SALUS) model: B. Basso, T. Tadiello, P. Sharma, L. Price and J.T. Ritchie, Michigan State University, USA
6.The denitrification-decomposition (DNDC) model: Kyle W. Proctor, Nilovna Chatterjee, Curtis Jones, Colin Hill, Gayathri Gopalakrishnan and William Salas, Regrow Ag, USA
7.The Agricultural Land Management Alternative with Numerical Assessment Criteria (ALMANAC) model: James R. Kiniry , USDA-ARS, USA
8.The USDA Root Zone Water Quality Model: Huihui Zhang, Liwang Ma and Jon D. Hanson, USDA-ARS, USA; and Zhiming Qi, McGill University, Canada;
Part 2 Europe
9.The STICS soil-crop model: a generic model to simulate the functioning of agroecosystems: Benjamin Dumont and Mathieu Delandmeter, University of Li¨ge, Belgium; et al.
10.The Simulator of crop trait Assembly, MAnagement Response and Adaptation crop model: Myriam Adam, UMR AGAP Institut and Universit© de Montpellier, Institut Agro, France and University of Battambang, Cambodia; et al.
11.The Genotype-by-Environment interaction on CROp growth Simulator model: Xinyou Yin, Wageningen University & Research, The Netherlands
12.The WOFOST (WOrld FOod STudies) cropping system model: Allard de Wit, Hendrik Boogaard, Herman Berghuijs and Martin K. van Ittersum, Wageningen University, The Netherlands
13.The Light INTerception and UtiLisation family of crop models: A.G.T. Schut, H.N.C. Berghuijs, A.J.W. de Wit and M.K van Ittersum, Wageningen University and Research, The Netherlands
14.SWAPWOFOST: a combined ecohydrological and crop growth simulation model: I. Supit, P. Groenendijk, J. van Dam, M. Mulder and M. Heinen, Wageningen University and Research, The Netherlands
15.The SIMPLACE crop and ecosystem management modelling platform: M. Vianna, A. Enders, T. Gaiser, G. Krauss and T. H. Nguyen, University of Bonn, Germany; et al.
16.The MONICA agroecosystem model: Claas Nendel, Michael Berg-Mohnicke, Rachel Escueta, Gohar Ghazaryan, Leonardo Inforsato, Bahareh Kamali, Marlene Palka, Ahsan Raza, Ehsan Eyshi Rezaei, Xenia Specka and Jing Yu, Leibniz Centre for Agricultural Landscape Research (ZALF), Germany
17.The AquaCrop model: Dirk Raes, KU Leuven University, Belgium; et al.
18.The Daisy crop model: Kiril Manevski, Aarhus University, Denmark and Chinese Academy of Sciences and University of the Chinese Academy of Sciences, China; et al.
Part 3 Asia and the Pacific
19.InfoCrop: a process-based dynamic crop simulation model for analysing genotype x environment interactions in tropical crops: S. Naresh Kumar, Bidisha Chakraborty, Arti Bhatia, Shweta Panjwani, DN Swaroopa Rani and Vikas Kumar, ICAR - Indian Agricultural Research Institute, India; et al.
20.The CropGrow model: Yan Zhu, Leilei Liu, Bing Liu, Liang Tang and Liujun Xiao, Nanjing Agricultural University, China