Projections based on invariant genotypes and agronomic practices indicate that climate change will largely decrease crop yields. The comparatively few studies considering farmers’ adaptation result in a diversity of impacts depending on their assumptions. We combined experiments and process-based modeling for analyzing the consequences of climate change on European maize yields if farmers made the best use of the current genetic variability of cycle duration, based on practices they currently use. We first showed that the genetic variability of maize flowering time is sufficient for identifying a cycle duration that maximizes yield in a range of European climatic conditions. This was observed in six field experiments with a panel of 121 acc...
Climate change affects global agricultural production and threatens food security. Faster phenologic...
We estimate the effects of climate anomalies (heat stress and drought) on annual maize production, v...
Potential consequences of climate change on crop production can be studied using mechanistic crop si...
Abstract Understanding, and then modelling, the effects of sowing date and cultivar on maize yield...
The development of crop varieties that are better suited to new climatic conditions is vital for fut...
Adaptive management of crop growing periods by adjusting sowing dates and cultivars is one of the ce...
Climate services that can anticipate crop yields can potentially increase the resilience of food sec...
Understanding the drivers of yield levels under climate change is required to support adaptation pla...
Today already climate variability has an impact on crop yield. Under future climate change, not only...
Improved crop yield forecasts could enable more effective adaptation to climate variability and chan...
Climate change has increasingly adverse effects on global crop yields through the occurrence of heat...
Potential consequences of climate change on crop production can be studied using mechanistic crop si...
Agriculture is facing the complex challenge of satisfying increasing food demands, despite the curre...
Climate change (CC) will alter the environmental conditions for crop growth. In order to minimize ne...
Climate change affects global agricultural production and threatens food security. Faster phenologic...
We estimate the effects of climate anomalies (heat stress and drought) on annual maize production, v...
Potential consequences of climate change on crop production can be studied using mechanistic crop si...
Abstract Understanding, and then modelling, the effects of sowing date and cultivar on maize yield...
The development of crop varieties that are better suited to new climatic conditions is vital for fut...
Adaptive management of crop growing periods by adjusting sowing dates and cultivars is one of the ce...
Climate services that can anticipate crop yields can potentially increase the resilience of food sec...
Understanding the drivers of yield levels under climate change is required to support adaptation pla...
Today already climate variability has an impact on crop yield. Under future climate change, not only...
Improved crop yield forecasts could enable more effective adaptation to climate variability and chan...
Climate change has increasingly adverse effects on global crop yields through the occurrence of heat...
Potential consequences of climate change on crop production can be studied using mechanistic crop si...
Agriculture is facing the complex challenge of satisfying increasing food demands, despite the curre...
Climate change (CC) will alter the environmental conditions for crop growth. In order to minimize ne...
Climate change affects global agricultural production and threatens food security. Faster phenologic...
We estimate the effects of climate anomalies (heat stress and drought) on annual maize production, v...
Potential consequences of climate change on crop production can be studied using mechanistic crop si...