Hostname: page-component-cd9895bd7-gvvz8 Total loading time: 0 Render date: 2024-12-29T02:55:25.084Z Has data issue: false hasContentIssue false

Modelling responses of forages to climate change with a focus on nutritive value

Published online by Cambridge University Press:  28 October 2016

P. Virkajärvi*
Affiliation:
Green Technology, Natural Resources Institute Finland (Luke), Halolantie 31A, FI-71750 Maaninka, Finland
P. Korhonen
Affiliation:
Green Technology, Natural Resources Institute Finland (Luke), Halolantie 31A, FI-71750 Maaninka, Finland
G. Bellocchi
Affiliation:
Grassland Ecosystem Research Unit, French National Institute for Agricultural Research (INRA), 5 Chemin de Beaulieu, 63039 Clermont-Ferrand, France
Y. Curnel
Affiliation:
Farming Systems, territories and information technologies unit, Walloon Agricultural Research Center (CRA-W), Rue de Liroux, 9, 5030 Gembloux, Belgium
L. Wu
Affiliation:
Rothamsted Research, North Wyke, Okehampton EX20 2SB, UK
G. Jégo
Affiliation:
Québec Research and Development Centre, Agriculture and Agri-Food Canada, 2560 Hochelaga Boulevard, Quebec (QC), G1V 2J3, Canada
T. Persson
Affiliation:
Norwegian Institute of Bioeconomy Research (NIBIO), Po. Box 115, NO-1431 Ås, Norway
M. Höglind
Affiliation:
Norwegian Institute of Bioeconomy Research (NIBIO), Po. Box 115, NO-1431 Ås, Norway
M. Van Oijen
Affiliation:
Centre for Ecology and Hydrology (CEH), Bush Estate, Penicuik, EH26 0QB, UK
A.-M. Gustavsson
Affiliation:
Swedish University of Agricultural Sciences, (SLU), Department of Agricultural Research for Northern Sweden, SE-901 83 Umeå, Sweden
R. P. Kipling
Affiliation:
Institute of Biological, Environmental and Rural Sciences (IBERS), Aberystwyth University, 1st Floor, Stapledon Building, PlasGogerddan Aberystwyth, Ceredigion, SY23 3EE, UK
Get access

Abstract

Image of the first page of this content. For PDF version, please use the ‘Save PDF’ preceeding this image.'
Type
Full Paper
Copyright
© The Animal Consortium 2016 

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Bonesmo, H and Bélanger, G 2002. Timothy yield and nutritive value by the CATIMO Model: II. Digestibility and fiber. Agronomy Journal 94, 345350.Google Scholar
Graux, AI, Gaurut, M, Agabriel, J, Baumont, R, Delagarde, R, Delaby, L and Soussana, JF 2011. Development of the pasture simulation model for assessing livestock production under climate change. Agriculture, Ecosystems and Environment 144, 6991.Google Scholar
Gustavsson, AM, Angus, JF and Torssell, BWR 1995. An integrated model for growth and nutritional value of timothy. Agricultural Systems 47, 7392.Google Scholar
Höglind, M, Van Oijen, M, Cameron, D and Persson, T 2016. Process-based simulation of growth and overwintering of grassland using the BASGRA model. Ecological Modelling 335, 115.Google Scholar
Jégo, G, Bélanger, G, Tremblay, GF, Jing, Q and Baron, VS 2013. Calibration and performance evaluation of the STICS crop model for simulating timothy growth and nutritive value. Field Crops Research 151, 6577.Google Scholar
Rotz, CA, Corson, MS, Chianese, DS, Hafner, SD, Jarvis, R and Coiner, CU 2015. The integrated farm system model – reference manual – version 4.2, September 2015. Retrieved on 2 June 2016 from http://www.ars.usda.gov/sp2UserFiles/Place/19020500/Reference%20Manual.pdf.Google Scholar
Stilmant, D, Rabier, F, Dufrasne, S, Oger, R and Buffet, D 2001. Prévision des quantités et des qualités des fourrages disponibles: aide à l'établissement d’une stratégie alimentaire à l'échelle de l’exploitation et de la région agricole. Rapport final. Telsat 4. Ministère des Classes moyennes et de l’Agriculture, CRA, Section Biométrie, Gestion des données et Agrométéorologie, Programme de recherche ‘Observation de la terre par satellite’. Gembloux, 85pp. (in French).Google Scholar
Wu, L, McGechan, MB, McRoberts, N, Baddeley, JA and Watson, CA 2007. SPACSYS: integration of a 3D root architecture component to carbon, nitrogen and water cycling-model description. Ecological Modelling 200, 343359.Google Scholar
Zaka, S, Frak, E., Julier, B, Gastal, F and Louarn, G 2016. Intraspecific variation in thermal acclimation of photosynthesis across a range of temperatures in a perennial crop. AoB PLANTS 48p. Available at http://aobpla.oxfordjournals.org.Google Scholar