AbstractWith rising temperatures projected for a changing climate, it is of particular importance to determine how plant pathogens and plant disease profiles will be influenced in the future. In this study, we investigated the effect of increasing temperature on the pathogenic fitness of Fusarium pseudograminearum, an important necrotrophic pathogen associated with wheat and barley crown rot (CR) in Australia. Currently, CR costs an average of AU$79 million in losses each year through the reduction of crop yields. Under optimum environmental conditions, F. pseudograminearum also has the ability to produce harmful mycotoxins such as Deoxynivalenol (DON) in infected tissue, including in grains. In a glasshouse environment, we examined the inf...
This paper offers projections of potential effects of climate change on rusts of wheat and how we sh...
This paper offers projections of potential effects of climate change on rusts of wheat and how we sh...
Not AvailableGlobal climate change has considerably threatened wheat production. Rising global tempe...
AbstractWith rising temperatures projected for a changing climate, it is of particular importance to...
Warmer temperatures associated with climate change are expected to have a direct impact on plant pat...
Despite recent reports advancing our understanding of climate change on plant diseases, uncertainty ...
Despite recent reports advancing our understanding of climate change on plant diseases, uncertainty ...
Rising atmospheric carbon dioxide (CO2) concentration is increasingly affecting food production but ...
Rising atmospheric carbon dioxide (CO2) concentration is increasingly affecting food production but ...
This work details the impact of atmospheric CO2 and temperature conditions on two strains of Fusariu...
Information concerning the temperature requirements of the species causing Fusarium head blight of ...
'Fusarium' head blight (FHB) of wheat, caused mainly by a few members of the 'Fusarium graminearum' ...
This study examines the CO2-mediated influence of plant resistance on crown rot dynamics under conti...
Plant pathogenic fungi and oomycetes (hereafter ‘plant pathogens’) pose serious risks to crop produc...
Fusarium poae is one of the Fusarium species commonly detected in wheat kernels affected by Fusarium...
This paper offers projections of potential effects of climate change on rusts of wheat and how we sh...
This paper offers projections of potential effects of climate change on rusts of wheat and how we sh...
Not AvailableGlobal climate change has considerably threatened wheat production. Rising global tempe...
AbstractWith rising temperatures projected for a changing climate, it is of particular importance to...
Warmer temperatures associated with climate change are expected to have a direct impact on plant pat...
Despite recent reports advancing our understanding of climate change on plant diseases, uncertainty ...
Despite recent reports advancing our understanding of climate change on plant diseases, uncertainty ...
Rising atmospheric carbon dioxide (CO2) concentration is increasingly affecting food production but ...
Rising atmospheric carbon dioxide (CO2) concentration is increasingly affecting food production but ...
This work details the impact of atmospheric CO2 and temperature conditions on two strains of Fusariu...
Information concerning the temperature requirements of the species causing Fusarium head blight of ...
'Fusarium' head blight (FHB) of wheat, caused mainly by a few members of the 'Fusarium graminearum' ...
This study examines the CO2-mediated influence of plant resistance on crown rot dynamics under conti...
Plant pathogenic fungi and oomycetes (hereafter ‘plant pathogens’) pose serious risks to crop produc...
Fusarium poae is one of the Fusarium species commonly detected in wheat kernels affected by Fusarium...
This paper offers projections of potential effects of climate change on rusts of wheat and how we sh...
This paper offers projections of potential effects of climate change on rusts of wheat and how we sh...
Not AvailableGlobal climate change has considerably threatened wheat production. Rising global tempe...