A model of winter wheat foliar disease is described, parameterised and tested for Septoria tritici (leaf blotch), Puccinia striiformis (yellow rust), Erysiphe graminis (powdery mildew) and Puccinia triticina (brown rust). The model estimates diseaseinduced green area loss, and can be coupled with a wheat canopy model, in order to estimate remaining light intercepting green tissue, and hence the capacity for resource capture. The model differs from those reported by other workers in three respects. Firstly, variables (such as weather, host resistance and inoculum pressure) which affect disease risk are integrated in their effect on disease progress. The agronomic and meteorological data called for are restricted to those commonly av...
A mechanistic model, PROCULTURE, for assessing the development of each of the last five leaf layers ...
A mechanistic model, PROCULTURE, for assessing the development of each of the last five leaf layers ...
International audiencePlant diseases are major causes of crop yield losses globally, yet their effec...
A model of the effect of foliar-applied fungicides on disease-induced yield loss is described, param...
A model of the effect of foliar-applied fungicides on disease-induced yield loss is described, param...
The first step in the formulation of disease management strategy for any cropping system is to ident...
peer reviewedThe first step in the formulation of disease management strategy for any cropping syste...
The first step in the formulation of disease management strategy for any cropping system is to ident...
A mechanistic model, PROCULTURE, for assessing in real time the risk of progression of Septoria trit...
Developing disease models to simulate and analyse yield losses for various pathogens is a challenge ...
A mechanistic model, PROCULTURE, for assessing the development of each of the last five leaf layers ...
peer reviewedA mechanistic model, PROCULTURE, based on commonly available meteorological data and a...
International audienceThe model PROCULTURE has been developed by the Université Catholique de Louvai...
peer reviewedA mechanistic model, PROCULTURE, for assessing in real time the risk of progression of ...
A mechanistic model, PROCULTURE, for assessing the development of each of the last five leaf layers ...
A mechanistic model, PROCULTURE, for assessing the development of each of the last five leaf layers ...
A mechanistic model, PROCULTURE, for assessing the development of each of the last five leaf layers ...
International audiencePlant diseases are major causes of crop yield losses globally, yet their effec...
A model of the effect of foliar-applied fungicides on disease-induced yield loss is described, param...
A model of the effect of foliar-applied fungicides on disease-induced yield loss is described, param...
The first step in the formulation of disease management strategy for any cropping system is to ident...
peer reviewedThe first step in the formulation of disease management strategy for any cropping syste...
The first step in the formulation of disease management strategy for any cropping system is to ident...
A mechanistic model, PROCULTURE, for assessing in real time the risk of progression of Septoria trit...
Developing disease models to simulate and analyse yield losses for various pathogens is a challenge ...
A mechanistic model, PROCULTURE, for assessing the development of each of the last five leaf layers ...
peer reviewedA mechanistic model, PROCULTURE, based on commonly available meteorological data and a...
International audienceThe model PROCULTURE has been developed by the Université Catholique de Louvai...
peer reviewedA mechanistic model, PROCULTURE, for assessing in real time the risk of progression of ...
A mechanistic model, PROCULTURE, for assessing the development of each of the last five leaf layers ...
A mechanistic model, PROCULTURE, for assessing the development of each of the last five leaf layers ...
A mechanistic model, PROCULTURE, for assessing the development of each of the last five leaf layers ...
International audiencePlant diseases are major causes of crop yield losses globally, yet their effec...