Hyperspectral remote sensing holds the potential to detect and quantify crop diseases in a rapid and non-invasive manner. Such tools could greatly benefit resistance breeding, but their adoption is hampered by i) a lack of specificity to disease-related effects and ii) insufficient robustness to variation in reflectance caused by genotypic diversity and varying environmental conditions, which are fundamental elements of resistance breeding. We hypothesized that relying exclusively on temporal changes in canopy reflectance during pathogenesis may allow to specifically detect and quantify crop diseases whilst minimizing the confounding effects of genotype and environment. To test this hypothesis, we collected time-resolved canopy hyperspect...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Accurate, high-throughput phenotyping for quantitative traits is a limiting factor for progress in p...
Detecting disease in crops increases yields and reduces economic loss. Traditional methods detect pl...
Producing quantitative and reliable measures of crop disease is essential for resistance breeding, b...
Producing quantitative and reliable measures of crop disease is essential for resistance breeding, b...
Producing quantitative and reliable measures of crop disease is essential for resistance breeding, b...
Producing quantitative and reliable measures of crop disease is essential for resistance breeding, b...
Accurate, high-throughput phenotyping for quantitative traits is the limiting factor for progress in...
Accurate, high-throughput phenotyping for quantitative traits is the limiting factor for progress in...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Accurate, high-throughput phenotyping for quantitative traits is a limiting factor for progress in p...
Detecting disease in crops increases yields and reduces economic loss. Traditional methods detect pl...
Producing quantitative and reliable measures of crop disease is essential for resistance breeding, b...
Producing quantitative and reliable measures of crop disease is essential for resistance breeding, b...
Producing quantitative and reliable measures of crop disease is essential for resistance breeding, b...
Producing quantitative and reliable measures of crop disease is essential for resistance breeding, b...
Accurate, high-throughput phenotyping for quantitative traits is the limiting factor for progress in...
Accurate, high-throughput phenotyping for quantitative traits is the limiting factor for progress in...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Quantitative resistance is likely to be more durable than major gene resistance for controlling Sept...
Accurate, high-throughput phenotyping for quantitative traits is a limiting factor for progress in p...
Detecting disease in crops increases yields and reduces economic loss. Traditional methods detect pl...