An overview of farming system typology methodologies and its use in the study of pasture-based farming system: a review

  • W. Mądry Department of Experimental Design and Bioinformatics, Warsaw University of Life Sciences - SGGW, Nowoursynowska 159, 02-776 Warsaw
  • Y. Mena Departamento de Ciencias Agroforestales. Escuela Técnica Superior de Ingeniería Agronómica. Universidad de Sevilla. Ctra. de Utrera km 1. 41013 Sevilla
  • B. Roszkowska-Mądra Unit of Business, Faculty of Economics and Management, Białystok University, Warszawska 63, 15-062 Białystok
  • D. Gozdowski Department of Experimental Design and Bioinformatics, Warsaw University of Life Sciences - SGGW, Nowoursynowska 159, 02-776 Warsaw
  • R. Hryniewski Department of Experimental Design and Bioinformatics, Warsaw University of Life Sciences - SGGW, Nowoursynowska 159, 02-776 Warsaw
  • J. M. Castel Departamento de Ciencias Agroforestales. Escuela Técnica Superior de Ingeniería Agronómica. Universidad de Sevilla. Ctra. de Utrera km 1. 41013 Sevilla
Keywords: livestock systems, grazing, multivariate analysis, expert methods, farming typologies, GIS

Abstract

The main objective of the paper is to do a critic study of the use of typology methodologies within pasture-based farming systems (PBFS), especially those situated in less favoured areas, showing in each case the more relevant variables or indicators determining the farming system classification. Another objective is to do an overview of the most used farming system typology methodologies in general. First some considerations about the concept of farming system and approaches to its study have been done. Next, the farming system typology methodologies have been showed in general to different farming systems, but addressed preferably to PBFS. The different tools integrated in these methodologies have been considered: sampling methods, sources of data, variables or indicators obtained from available data and techniques of analysis (statistical or not). Methods for farming system classification have been presented (expert methods, analytical methods or a combination of both types). Among the statistical methods, the multivariate analysis has been overall treated, including the principal component analysis and the cluster analysis. Finally, the use of farming system typology methodologies on different pasture-based farming systems has been presented. The most important aspects considered are following: the main objective of the typology, the main animal species, the employed methods of classification and the main variables involved in this classification.

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References

Acosta-Alba IS, Lopez-Ridaura S, van der Werf MG, Leterme F, Corson MS, 2012. Exploring sustainable farming scenarios at a regional scale: an application to dairy farms in Brittany. J Clean Prod 28: 160-167.
http://dx.doi.org/10.1016/j.jclepro.2011.11.061 

Andersen E, Elbersen B, Godeschalk F, Verhoog D, 2007. Farm management indicators and farm typologies as a basis for assessments in a changing policy environment. J Environ Manage 82: 353–362.
http://dx.doi.org/10.1016/j.jenvman.2006.04.021
PMid:17126987  

Asselin LM, Anh VT, 2005. Multidimensional poverty in Vietnam 1993-1998 according to CBMS indicators. Vietnam Socio-Economic Development Review: 41.

 

Benzécri JP, 1992. Correspondence analysis handbook. Marcel Dekker, NY, 665 pp.
PMid:1610434  

Bernués A, Ruiz R, Olaizola A, Villalba D, Casasús I, 2011. Sustainability of pasture-based livestock farming systems in the European Mediterranean context: synergies and trade-offs. Livest Sci 139: 44–57.
http://dx.doi.org/10.1016/j.livsci.2011.03.018 

Bertaglia M, Joost S, Roosen J, 2007. Econogene consortium identifying European marginal areas in the context of local sheep and goat breeds conservation: A geographic information system approach. Agr Syst 94: 657-670.
http://dx.doi.org/10.1016/j.agsy.2007.02.006 

Bock RD, 1960. Methods and applications of optimal scaling. Psychometric Laboratory Report # 25, Univ North Carolina, Chapel Hill, NC, USA.

 

Caballero R, 2001. Typology of cereal–sheep farming systems in Castile-La Mancha (South-central Spain). Agric Syst 68: 215–232.
http://dx.doi.org/10.1016/S0308-521X(01)00009-9 

Caballero R, Gil A, Fernández Santos X, 2008. An experts survey on sustainability across twenty-seven extensive European systems of grassland management. Environ Manage 42: 190–199.
http://dx.doi.org/10.1007/s00267-008-9134-2
PMid:18491183  

Caballero R, Fernández-González F, Pérez-Badia R, Molle G, Roggero PP, Bagella S, D'Ottavio P, Papanastasis VP, Fotiadis G, Sidiropoulou A, Ispikoudis I, 2009. Grazing systems and biodiversity in Mediterranean areas: Spain, Italy and Greece. Pastos XXXIX(1): 9-152. 

Carmona A, Nahuelhual L, Echeverría C, Báez A, 2010. Linking farming systems to landscape change: An empirical and spatially explicit study in southern Chile. Agric Ecosyst Environ 139: 40–50.
http://dx.doi.org/10.1016/j.agee.2010.06.015 

Castel JM, Mena Y, Delgado-Pertínez M, Camúnez J, Basulto J, Caravaca F, Guzmán-Guerrero JL, Alcalde MJ, 2003. Characterization of semi-extensive goat production systems in southern Spain. Small Ruminant Res 47: 133–143.
http://dx.doi.org/10.1016/S0921-4488(02)00250-X 

Castel JM, Mądry W, Gozdowski D, Roszkowska-Mądra B, Dąbrowski M, Lupa W, Mena Y, 2010. Family dairy farms in the Podlasie province, Poland: farm typology according to farming system. Span J Agric Res 8: 946-961. 

Castel JM, Mena Y., Ruiz FA, Camú-ez-Ruiz J, Sánchez-Rodríguez M, 2011. Changes occurring in dairy goat production systems in less favoured areas of Spain. Small Ruminant Res 96: 83–92.
http://dx.doi.org/10.1016/j.smallrumres.2011.01.002 

Clavel L, Soudais J, Baudet D, Leenhardt D, 2011. Integrating expert knowledge and quantitative information for mapping cropping systems. Land Use Policy 28: 57-65.
http://dx.doi.org/10.1016/j.landusepol.2010.05.001 

Daskalopoulou I, Petrou A, 2002. Utilising a farm typology to identify potential adopters of alternative farming activities in Greek agriculture. J Rural Stud 18: 95–103.
http://dx.doi.org/10.1016/S0743-0167(01)00027-4 

Dixon J, Gulliver A, Gibbon D, 2001. Farming systems and poverty: Improving farmers' livelihoods in a changing world. FAO, Rome. 

Engledow F, Barker MG, Ridgman WJ, 1978. A system of farm classification as an aid in formulating policies and for measuring the effects of changes in agricultural strategy. Agr Admin 5: 195-209. 

Escobar G, Berdegué J (eds), 1990. Tipificación de sistemas de producción agrícola. Ed. RIMISP, Santiago de Chile.
PMCid:488062 

Everitt E, 1980. Cluster analysis, 2nd ed. Heinhemann, London. 

Gaspar P, Escribano M, Mesías FJ, Rodriguez de Ledesma A, Pulido F, 2008. Sheep farms in the Spanish rangelands (dehesas): Typologies according to livestock management and economic indicators. Small Ruminant Res 74: 52–63.
http://dx.doi.org/10.1016/j.smallrumres.2007.03.013 

Gaspar P, Escribano AJ, Mesías FJ, Escribano M, Pulido AF, 2011. Goat systems of Villuercas-Ibores area in SW Spain: Problems and perspectives of traditional farming systems. Small Ruminant Research 97: 1–11.
http://dx.doi.org/10.1016/j.smallrumres.2011.03.001 

Gelasakis AI, Valergakis GE, Arsenos G, Banos G, 2012. Description and typology of intensive Chios dairy sheep farms in Greece. J Dairy Sci 95: 3070-3079.
http://dx.doi.org/10.3168/jds.2011-4975
PMid:22612943  

Gibon A, Sibbald AR, Flamant JC, Lhoste P, Revilla R, Rubino R, Sorensen JT, 1999. Livestock farming systems research in Europe and its potential contribution for managing towards sustainability in livestock farming. Livest Prod Sci 61: 121-137.
http://dx.doi.org/10.1016/S0301-6226(99)00062-7 

Hair JF, Anderson RE, Tathaam RL, Black WC, 1998. Multivariate data analysis, 5th ed, Prentice Hall Int, 799 pp. 

Hazeu GW, Metzger MJ, Mücher CA, Perez-Soba M, Renetzeder CH, Andersen E, 2011. European environmental stratifications and typologies: An overview. Agr Ecosyst Environ 142: 29–39.
http://dx.doi.org/10.1016/j.agee.2010.01.009 

Jellema A, Stobbelaar DJ, Groot JCJ, Rossing WAH, 2009. Landscape character assessment using region growing techniques in geographical information systems. J Environ Manage 90: 161-174.
http://dx.doi.org/10.1016/j.jenvman.2008.11.031
PMid:19193485  

Keating BA, McCown RL, 2001. Advances in farming systems analysis and intervention. Agr Syst 70: 555–579.
http://dx.doi.org/10.1016/S0308-521X(01)00059-2 

Kempen M, Elbersen BS, Staritsky I, Andersen E, Heckelei T, 2011. Spatial allocation of farming systems and farming indicators in Europe. Agr Ecosyst Environ 142: 51-62.
http://dx.doi.org/10.1016/j.agee.2010.08.001 

Köbrich C, Rehman T, Khan M, 2003. Typification of farming systems for constructing representative farm models: two illustrations of the application of multi-variate analyses in Chile and Pakistan. Agr Syst 76: 141–157.
http://dx.doi.org/10.1016/S0308-521X(02)00013-6 

Kostrowicki J, 1977. Agricultural typology concept and method. Agr Syst 2: 33–45.
http://dx.doi.org/10.1016/0308-521X(77)90015-4 

Lesschen JP, Verburg PH, Staal SJ, 2005. Statistical methods for analyzing the spatial dimension of changes in land use and farming systems. LUCC Report Series No. 7.

 

López-Gelats F, Milán MJ, Bartolomé J, 2011. Is farming enough in mountain areas? Farm diversification in the Pyrenees. Land Use Policy 28: 783–791.
http://dx.doi.org/10.1016/j.landusepol.2011.01.005 

Marey-Pérez MF, Rodríguez-Vicente V, 2011. Factors determining forest management by farmers in northwest Spain: Application of discriminant analysis. Forest Policy Econ 13: 318–327.
http://dx.doi.org/10.1016/j.forpol.2011.03.008 

Maseda F, Diaz F, Álvarez CJ, 2004. Family dairy farms in Galicia (N.W. Spain): classification by some family and farm factors relevant to quality of life. Biosyst Eng 87: 509-521.
http://dx.doi.org/10.1016/j.biosystemseng.2004.01.002 

Meert H, Van Huylenbroeck G, Vernimmen T, Bourgeois M, van Hecke E, 2005. Farm household survival strategies and diversification on marginal farms. J Rural Stud 21: 81–97.
http://dx.doi.org/10.1016/j.jrurstud.2004.08.007 

Mena Y, Nahed J, Ruiz FA, Sánchez-Mu-oz JB, Ruiz-Rojas JL, Castel JM, 2012. Evaluating mountain goat dairy systems for conversion to the organic model, using a multicriteria method. Animal 6: 693-703.
http://dx.doi.org/10.1017/S175173111100190X
PMid:22436287  

Milán MJ, Bartolome J, Quintanilla R, Garcia-Cachan MD, Espejo M, Herraiz PL, Sanchez-Recio JM, Piedrafita J, 2006. Structural characterisation and typology of beef cattle farms of Spanish wooded rangelands (dehesas). Livest Sci 99: 197–209.
http://dx.doi.org/10.1016/j.livprodsci.2005.06.012 

Milán MJ, Caja G, González-González R, Fernández-Pérez AM, Such X, 2011. Structure and performance of Awassi and Assaf dairy farms in northwestern Spain. J Dairy Sci 94: 771-784.
http://dx.doi.org/10.3168/jds.2010-3520
PMid:21257045  

Moreno-Pérez O, Arnalte-Alegre E, Ortiz-Miranda D, 2011. Breaking down the growth of family farms: A case study of an intensive Mediterranean agriculture. Agr Syst 104: 500-511.
http://dx.doi.org/10.1016/j.agsy.2011.03.007 

Nahed TJ, Castel JM, Mena Y, Caravaca F, 2006. Appraisal of the sustainability of dairy goat systems in Southern Spain according to their degree of intensification. Livest Sci 101: 10-23.
http://dx.doi.org/10.1016/j.livprodsci.2005.08.018 

Pardos L, Maza MT, Fantova E, Sepulveda W, 2008. The diversity of sheep production systems in Aragon (Spain): characterisation and typification of meat sheep farms. Span J Agric Res 6: 497–507. 

Paz R, Togo J, Usandivaras P, Castel JM, Mena Y, 2005. Análisis de la diversidad en los sistemas lecheros caprinos y evaluación de los parámetros productivos en la principal cuenca lechera de Argentina. Livestock Research for Rural Development 17: Art. #8. Available in http://www.lrrd.org/lrrd17/1/paz17008.htm [Nov 12, 2012].

 

Perevolotsky A, 1990. Goat production systems in Piura, Peru: a multidisciplinary analysis. Agr Syst 32: 55-81.
http://dx.doi.org/10.1016/0308-521X(90)90030-T 

Riveiro-Vali-o JA, Marey MF, Marco JL, Alvarez CJ, 2008. Procedure for the classification and characterization of farms for agricultural production planning: Application in the Northwest of Spain. Comput Electron Agric 61: 169–178.
http://dx.doi.org/10.1016/j.compag.2007.11.003 

Riveiro-Vali-o JA, Álvarez-Lopez CJ, Marey-Perez MF, 2009. The use of discriminant analysis to validate a methodology for classifying farms based on a combinatorial algorithm. Comput Electron Agric 66: 113-120.
http://dx.doi.org/10.1016/j.compag.2008.12.001 

Ruiz FA, Castel JM, Mena Y, Camu-ez, J, González-Redondo P, 2008. Application of the technico-economic analysis for characterizing, making diagnoses and improving pastoral dairy goat systems in Andalusia (Spain). Small Ruminant Res 77: 208-220.
http://dx.doi.org/10.1016/j.smallrumres.2008.03.007 

Ruiz FA, Mena Y, Castel JM, Guinamard C, Bossis N, Caramelle-Holtz E, Contu M, Sitzia M, Fois N, 2009. Dairy goat grazing systems in Mediterranean regions: A comparative analysis in Spain, France and Italy. Small Ruminant Res 85: 42-49.
http://dx.doi.org/10.1016/j.smallrumres.2009.07.003 

Serrano Martínez E, Lavín González P. Giráldez García FJ, Bernués Jal A, Ruiz Mantecón A, 2004a. Classification variables of cattle farms in the mountains of León, Spain. Span J Agric Res 2: 504-511. 

Serrano Martínez E, Giráldez García FJ, Lavín González P, Bernués Jal A, Ruiz Mantecón A., 2004b. The identification of homogeneous groups of cattle farms in the mountains of León, Spain. Span J Agric Res 2: 512-523. 

Spedding CRW, Brockington NR, 1976. Experimentation in agricultural systems. Agr Syst 1: 47-56.
http://dx.doi.org/10.1016/0308-521X(76)90021-4 

Sturaro E, Cocca G, Gallo L, Mrad M, Ramanzin M, 2009. Livestock systems and farming styles in Eastern Italian Alps: an on-farm survey. Ital J Anim Sci 8: 541-554. 

Toussaint G, 2002. Notice des indicateurs de fonctionnement des systèmes laitiers (Report on working indicators for dairy systems). Opt Mediterr A-39: 147-157. 

Usai MG, Casu S, Molle G, Decandia M, Ligios S, Carta A, 2006. Using cluster analysis to characterize the goat farming system in Sardinia. Livest Sci 104: 63–76.
http://dx.doi.org/10.1016/j.livsci.2006.03.013 

van de Steeg J, Verburg P, Baltenweck I, Staal S, 2010. Characterization of the spatial distribution of farming systems in the Kenyan Highlands. Appl Geogr 30: 239–253.
http://dx.doi.org/10.1016/j.apgeog.2009.05.005 

van der Ploeg JD, Laurent C, Blondeau F, Bonnafous P, 2009. Farm diversity, classification schemes and multifunctionality. J Environ Manage 90: 124-131.
http://dx.doi.org/10.1016/j.jenvman.2008.11.022
PMid:19135775

Published
2013-03-11
How to Cite
Mądry, W., Mena, Y., Roszkowska-Mądra, B., Gozdowski, D., Hryniewski, R., & Castel, J. M. (2013). An overview of farming system typology methodologies and its use in the study of pasture-based farming system: a review. Spanish Journal of Agricultural Research, 11(2), 316-326. https://doi.org/10.5424/sjar/2013112-3295
Section
Agricultural engineering