Unsustainable agronomic practices and environmental change necessitate a revolution in agricultural production to ensure food security. A new generation of crops that yield more with fewer inputs and are adapted to more variable environments is needed. However, major changes in breeding programmes may be required to achieve this goal. By using the genetic variation in crop yield in specific target environments that vary in soil type, soil management, nutrient inputs and environmental stresses, robust traits suited to specific conditions can be identified. It is here that long-term experimental platforms and field phenotyping have an important role to play. In this review, we will provide information about some of the field-based platforms...
Selection processes in plant breeding depend critically on the quality of phenotype predictions. The...
The knowledge of interactions among crop genotypes, soil types, and crop management is essential for...
Substantial genotype x environment interactions impede breeding progress for yield. Identifying gene...
Unsustainable agronomic practices and environmental change necessitate a revolution in agricultural ...
Agriculture is already facing in several regions of the globe a warmer, more prone to drought and mo...
Global agricultural production has to double by 2050 to meet the demands of an increasing population...
The diversity of growing conditions and the development of new outlets for agricultural products fav...
Efficient evaluation of crop phenotypes is a prerequisite for breeding, cultivar adoption, genomics ...
Inability to efficiently implement high-throughput field phenotyping is increas-ingly perceived as a...
The amazing achievement of the 20th century was that widely affordable food was produced for a four-...
The challenges of securing future food security will require deployment of innovative technologies t...
Plant phenotyping enables noninvasive quantification of plant structure andfunction and interactions...
While genotype × environment interactions (G × E) impede progress in plant breeding, efforts have fo...
Crop growth models have excellent potential-for evaluating genetic improvement, for analyzing past g...
Selection processes in plant breeding depend critically on the quality of phenotype predictions. The...
Selection processes in plant breeding depend critically on the quality of phenotype predictions. The...
The knowledge of interactions among crop genotypes, soil types, and crop management is essential for...
Substantial genotype x environment interactions impede breeding progress for yield. Identifying gene...
Unsustainable agronomic practices and environmental change necessitate a revolution in agricultural ...
Agriculture is already facing in several regions of the globe a warmer, more prone to drought and mo...
Global agricultural production has to double by 2050 to meet the demands of an increasing population...
The diversity of growing conditions and the development of new outlets for agricultural products fav...
Efficient evaluation of crop phenotypes is a prerequisite for breeding, cultivar adoption, genomics ...
Inability to efficiently implement high-throughput field phenotyping is increas-ingly perceived as a...
The amazing achievement of the 20th century was that widely affordable food was produced for a four-...
The challenges of securing future food security will require deployment of innovative technologies t...
Plant phenotyping enables noninvasive quantification of plant structure andfunction and interactions...
While genotype × environment interactions (G × E) impede progress in plant breeding, efforts have fo...
Crop growth models have excellent potential-for evaluating genetic improvement, for analyzing past g...
Selection processes in plant breeding depend critically on the quality of phenotype predictions. The...
Selection processes in plant breeding depend critically on the quality of phenotype predictions. The...
The knowledge of interactions among crop genotypes, soil types, and crop management is essential for...
Substantial genotype x environment interactions impede breeding progress for yield. Identifying gene...