Autor: Kretzschmar, Tobias
- Genome-wide association and gene validation studies for early root vigour to improve direct seeding of rice
- Can natural variation in grain P concentrations be exploited in rice breeding to lower fertilizer requirements?
- The knowns and unknowns of phosphorus loading into grains, and implications for phosphorus efficiency in cropping systems
Autor: Rose, Terry
- Genome-wide association and gene validation studies for early root vigour to improve direct seeding of rice
- Can natural variation in grain P concentrations be exploited in rice breeding to lower fertilizer requirements?
- The knowns and unknowns of phosphorus loading into grains, and implications for phosphorus efficiency in cropping systems
Ejemplares similares: Genome-wide association and gene validation studies for early root vigour to improve direct seeding of rice
- The knowns and unknowns of phosphorus loading into grains, and implications for phosphorus efficiency in cropping systems
- Can natural variation in grain P concentrations be exploited in rice breeding to lower fertilizer requirements?
- Comparative transcriptomics and co-expression networks reveal tissue- and genotype-specific responses of qDTYs to reproductive-stage drought stress in rice (Oryza sativa L.)
- From promise to application: root traits for enhanced nutrient capture in rice breeding
- The frustration with utilization: why have improvements in internal phosphorus utilization efficiency in crops remained so elusive?
- Comparative sequence analyses of the major quantitative trait locus phosphorus uptake 1 (Pup1) reveal a complex genetic structure
Ejemplares similares: Can natural variation in grain P concentrations be exploited in rice breeding to lower fertilizer requirements?
- The knowns and unknowns of phosphorus loading into grains, and implications for phosphorus efficiency in cropping systems
- From promise to application: root traits for enhanced nutrient capture in rice breeding
- Phosphorus uptake, partitioning and redistribution during grain filling in rice
- Integration of P acquisition efficiency, P utilization efficiency and low grain P concentrations into P-efficient rice genotypes for specific target environments
- Prospects for genetic improvement in internal nitrogen use efficiency in rice
- Genotypic variation in grain P loading across diverse rice growing environments and implications for field P balances