Many studies demonstrate that elevated atmospheric carbon dioxide concentrations (eCO2) can promote root nodulation and biological nitrogen fixation (BNF) in legumes such as lucerne (Medicago sativa). But when elevated temperature (eT) conditions are applied in tandem with eCO2, a more realistic scenario for future climate change, the positive effects of eCO2 on nodulation and BNF in M. sativa are often much reduced. Silicon (Si) supplementation of M. sativa has also been reported to promote root nodulation and BNF, so could potentially restore the positive effects of eCO2 under eT. Increased nitrogen availability, however, could also increase host suitability for aphid pests, potentially negating any benefit. We applied eCO2 (+240 ppm) and...
Ecologists have become increasingly aware that silicon uptake by plants, especially the Poaceae, can...
© 2019 Dr. Shahnaj ParvinAtmospheric CO2 concentration ([CO2]) is expected to rise from a current l...
Leguminous plants are considered to have a competitive advantage under global climate change because...
Many studies demonstrate that elevated atmospheric carbon dioxide concentrations (eCO2) can promote ...
Many studies demonstrate that elevated atmospheric carbon dioxide concentrations (eCO2) can promote ...
Many studies demonstrate that elevated atmospheric carbon dioxide concentrations (eCO2) can promote ...
Many studies demonstrate that elevated atmospheric carbon dioxide concentrations (eCO2) can promote ...
1.Plants, notably the Poacae, often accumulate large amounts of silicon (Si) from the soil. Si has m...
Ecologists have become increasingly aware that silicon uptake by plants, especially the Poaceae, can...
Predicted increases in atmospheric concentrations of CO2 may alter the susceptibility of many plants...
1. Plants, notably the Poacae, often accumulate large amounts of silicon (Si) from the soil. Si has ...
Global climate and atmospheric change (summarised as climate change for brevity) may alter patterns ...
Ecologists have become increasingly aware that silicon uptake by plants, especially the Poaceae, can...
Climate change is altering the dynamics of crop pests and diseases resulting in reduced crop yields....
Predicted increases in atmospheric concentrations of CO2 may alter the susceptibility of many plants...
Ecologists have become increasingly aware that silicon uptake by plants, especially the Poaceae, can...
© 2019 Dr. Shahnaj ParvinAtmospheric CO2 concentration ([CO2]) is expected to rise from a current l...
Leguminous plants are considered to have a competitive advantage under global climate change because...
Many studies demonstrate that elevated atmospheric carbon dioxide concentrations (eCO2) can promote ...
Many studies demonstrate that elevated atmospheric carbon dioxide concentrations (eCO2) can promote ...
Many studies demonstrate that elevated atmospheric carbon dioxide concentrations (eCO2) can promote ...
Many studies demonstrate that elevated atmospheric carbon dioxide concentrations (eCO2) can promote ...
1.Plants, notably the Poacae, often accumulate large amounts of silicon (Si) from the soil. Si has m...
Ecologists have become increasingly aware that silicon uptake by plants, especially the Poaceae, can...
Predicted increases in atmospheric concentrations of CO2 may alter the susceptibility of many plants...
1. Plants, notably the Poacae, often accumulate large amounts of silicon (Si) from the soil. Si has ...
Global climate and atmospheric change (summarised as climate change for brevity) may alter patterns ...
Ecologists have become increasingly aware that silicon uptake by plants, especially the Poaceae, can...
Climate change is altering the dynamics of crop pests and diseases resulting in reduced crop yields....
Predicted increases in atmospheric concentrations of CO2 may alter the susceptibility of many plants...
Ecologists have become increasingly aware that silicon uptake by plants, especially the Poaceae, can...
© 2019 Dr. Shahnaj ParvinAtmospheric CO2 concentration ([CO2]) is expected to rise from a current l...
Leguminous plants are considered to have a competitive advantage under global climate change because...