Core Ideas: SOC decline, due to increased temperatures, reduces wheat and maize yields globally. CO2 increase to 540 ppm partially compensates yield losses due to increased temperatures. Accounting for soil feedbacks is critical when evaluating climate change impacts on crop yield. A critical omission from climate change impact studies on crop yield is the interaction between soil organic carbon (SOC), nitrogen (N) availability, and carbon dioxide (CO2). We used a multimodel ensemble to predict the effects of SOC and N under different scenarios of temperatures and CO2 concentrations on maize (Zea mays L.) and wheat (Triticum aestivum L.) yield in eight sites across the world. We found that including feedbacks from SOC and N losses due to in...
Soil carbon (C) is the largest terrestrial C pool globally, containing more C than the atmosphere an...
Soil carbon (C) is the largest terrestrial C pool globally, containing more C than the atmosphere an...
Perennial legumes in crop rotations increase soil C sequestration from greater productivity with N2 ...
Core Ideas: SOC decline, due to increased temperatures, reduces wheat and maize yields globally. CO2...
Core Ideas: SOC decline, due to increased temperatures, reduces wheat and maize yields globally. CO2...
A critical omission from climate change impact studies on crop yield is the interaction between soil...
A critical omission from climate change impact studies on crop yield is the interaction between soil...
peer reviewedA critical omission from climate change impact studies on crop yield is the interaction...
Articles in A&EL are published under the CC-BY NC ND (non-commercial; no derivatives) license (https...
Climate change is likely to increase the frequency of drought and more extreme precipitation events....
International audienceClimate change is known to impact crop yields, mainly through increased temper...
Changes in the soil organic carbon (SOC) stock are determined by the balance between the carbon inpu...
Agricultural system models provide an effective tool for forecasting crop productivity and nutrient ...
Agricultural system models provide an effective tool for forecasting crop productivity and nutrient ...
Soil organic carbon (SOC) represents a significant pool of carbon within the biosphere. Climatic shi...
Soil carbon (C) is the largest terrestrial C pool globally, containing more C than the atmosphere an...
Soil carbon (C) is the largest terrestrial C pool globally, containing more C than the atmosphere an...
Perennial legumes in crop rotations increase soil C sequestration from greater productivity with N2 ...
Core Ideas: SOC decline, due to increased temperatures, reduces wheat and maize yields globally. CO2...
Core Ideas: SOC decline, due to increased temperatures, reduces wheat and maize yields globally. CO2...
A critical omission from climate change impact studies on crop yield is the interaction between soil...
A critical omission from climate change impact studies on crop yield is the interaction between soil...
peer reviewedA critical omission from climate change impact studies on crop yield is the interaction...
Articles in A&EL are published under the CC-BY NC ND (non-commercial; no derivatives) license (https...
Climate change is likely to increase the frequency of drought and more extreme precipitation events....
International audienceClimate change is known to impact crop yields, mainly through increased temper...
Changes in the soil organic carbon (SOC) stock are determined by the balance between the carbon inpu...
Agricultural system models provide an effective tool for forecasting crop productivity and nutrient ...
Agricultural system models provide an effective tool for forecasting crop productivity and nutrient ...
Soil organic carbon (SOC) represents a significant pool of carbon within the biosphere. Climatic shi...
Soil carbon (C) is the largest terrestrial C pool globally, containing more C than the atmosphere an...
Soil carbon (C) is the largest terrestrial C pool globally, containing more C than the atmosphere an...
Perennial legumes in crop rotations increase soil C sequestration from greater productivity with N2 ...