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A modelling approach to genotype × environment interaction: genetic analysis of the response of maize growth to environmental conditions Frontis
Sadok, W.; Boussuge, B.; Welcker, C.; Tardieu, F..
Expansive growth of organs has a very large genotype × environment (G×E) interaction. Maximum leaf expansion rate observed in the absence of stress and of evaporative demand has a genetic variability which is usually smaller than environmental effects. The mechanisms driving the reduction in leaf growth rate under stress, namely changes in cell division rate, in cell-wall mechanical properties and in turgor, and their signalling pathways, interact in such a way that a bottom-up approach from genes to the G×E interaction cannot be envisaged. We propose an approach combining modelling and genetic dissection of model parameters. Three genotype-dependent parameters are considered for analysing the G×E interaction for leaf elongation rate of maize. The maximum...
Tipo: Conference proceedings
Ano: 2007 URL: http://library.wur.nl/ojs/index.php/frontis/article/view/1297
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