© The Author 2017. Published by Oxford University Press on behalf of the Society for Experimental Biology. Root architecture impacts water and nutrient uptake efficiency. Identifying exactly which root architectural properties influence these agronomic traits can prove challenging. In this paper, approximately 300 wheat (Triticum aestivum) plants were divided into four groups using two binary classifications, high versus low nitrogen uptake efficiency (NUpE), and high versus low nitrate in the growth medium. The root system architecture for each wheat plant was captured using 16 quantitative variables. The multivariate analysis tool, linear discriminant analysis, was used to construct composite variables, each a linear combination of the or...
The root system architecture (RSA) of a crop has a profound effect on the uptake of nutrients and co...
International audienceOptimization of the root system architecture (RSA) is a promising lever to inc...
Phosphorus (P) and nitrogen macronutrient deficiencies remain a primary constraint to global agricul...
© The Author 2017. Published by Oxford University Press on behalf of the Society for Experimental Bi...
Root architecture impacts water and nutrient uptake efficiency. Identifying exactly which root arch...
The root system architecture (RSA) of a crop has a profound effect on the uptake of nutrients and co...
Background and aims Root system architecture is a vital part of the plant that has been shown to var...
The spatial arrangement of the root system, termed root system architecture, is important for resour...
Root system architecture (RSA) is important in optimizing the use of nitrogen. High-throughput pheno...
Identifying genotypes with a greater ability to absorb nitrogen (N) may be important to reducing N l...
Wheat (Triticum spp.) is a particularly important crop for food security, providing 20% of worldwide...
Global demand for cereals is growing and will continue to do so with increasing uncertainties around...
Not AvailableRoots have significant impact on plants ability to adapt to different environmental con...
Seedling root traits of wheat (Triticum aestivum L.) have been shown to be important for efficient e...
Root system architecture is a vital part of the plant that has been shown to vary between species an...
The root system architecture (RSA) of a crop has a profound effect on the uptake of nutrients and co...
International audienceOptimization of the root system architecture (RSA) is a promising lever to inc...
Phosphorus (P) and nitrogen macronutrient deficiencies remain a primary constraint to global agricul...
© The Author 2017. Published by Oxford University Press on behalf of the Society for Experimental Bi...
Root architecture impacts water and nutrient uptake efficiency. Identifying exactly which root arch...
The root system architecture (RSA) of a crop has a profound effect on the uptake of nutrients and co...
Background and aims Root system architecture is a vital part of the plant that has been shown to var...
The spatial arrangement of the root system, termed root system architecture, is important for resour...
Root system architecture (RSA) is important in optimizing the use of nitrogen. High-throughput pheno...
Identifying genotypes with a greater ability to absorb nitrogen (N) may be important to reducing N l...
Wheat (Triticum spp.) is a particularly important crop for food security, providing 20% of worldwide...
Global demand for cereals is growing and will continue to do so with increasing uncertainties around...
Not AvailableRoots have significant impact on plants ability to adapt to different environmental con...
Seedling root traits of wheat (Triticum aestivum L.) have been shown to be important for efficient e...
Root system architecture is a vital part of the plant that has been shown to vary between species an...
The root system architecture (RSA) of a crop has a profound effect on the uptake of nutrients and co...
International audienceOptimization of the root system architecture (RSA) is a promising lever to inc...
Phosphorus (P) and nitrogen macronutrient deficiencies remain a primary constraint to global agricul...